Generated by All in One SEO Pro v4.9.7.2, this is an llms.txt file, used by LLMs to index the site. # Fluigent - Fluigent Smart Microfluidics ## Sitemaps - [XML Sitemap](https://www.fluigent.com/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [News](https://www.fluigent.com/company/news/) - [A Look Into Our Quality Process: Maintaining Fluigent Pressure Controllers ](https://www.fluigent.com/company/news/quality-process-pressure-controllers/) - Can you introduce yourself and tell us about your role at Fluigent? Aurélien Faitrop I've been working in the field of quality assurance for over 20 years. My various professional experiences have enabled me to practice quality control from different angles. I spent 15 years working in demanding industries with stringent requirements, including the automotive - [Collaboration with RAN Biotechnologies](https://www.fluigent.com/company/news/collaboration-with-ran-biotechnologies/) - The collaboration between Fluigent and RAN Biotechnologies supports the development of advanced droplet microfluidics solutions, with the integration of 008-FluoroSurfactant into the Fluigent catalog. RAN Biotechnologies is recognized for its expertise in droplet microfluidics reagents, widely validated across numerous peer-reviewed publications. Designed to ensure the formation of stable and monodisperse droplets, 008-FluoroSurfactant is suited for - [Droplet-based microfluidics](https://www.fluigent.com/company/news/droplet-based-microfluidics/) - In this expertise white paper, we provide a complete overview on #droplet #microfluidics, including definitions, the physics behind microfluidic droplet generation, the type of materials that can be produced, and related applications. Download the white paper - [micro-Gut Modeling With Omi in the July's issue of Lab on a Chip](https://www.fluigent.com/company/news/gut-modeling-with-omi/) - A recent paper by Dr. Delannoy from Institut Pasteur Lille, published in the July 2025 issue of Lab on a Chip, demonstrates the use of OMI in organ-on-a-chip research. The study models gut physiology, host–microbiome interactions, and the impact of dynamic cell culture. Access the Paper Read the Case Study - [Navigating Success: A Year in Review at Fluigent – Client Chronicles and Company Highlights](https://www.fluigent.com/company/news/a-year-in-review-at-fluigent-2023/) - Step into the dynamic world of Fluigent as we reflect on a remarkable year of achievements, collaborations, success, and growth. - [Let us celebrate the 9th anniversary of FLUIGENT Germany together!  ](https://www.fluigent.com/company/news/9th-anniversary-fluigent-germany/) - Detailed conditions of the Offer You get one Bonus item per order. Depending on the order above 3500€ or 8000€ you’ll receive one of those bonuses. You can choose among 5 available types of Bonus items. The exact item’s models may vary according to the availability. If conditions are met choosing of the Bonuses follows - [France Hamber interview about SLAS EUROPE 2023](https://www.fluigent.com/company/news/interview-ceo-slas-europe-2023/) - Discover the insights from our CEO's participation in SLAS EUROPE 2023. Learn about Fluigent's role as a leading flow control provider for microfluidics, the market trends and expectations for 2023, our innovative technologies, and the services we offer in the industry and research sectors. Don't miss our upcoming events like Organoids and Spheroids Europe 2023 - [Elevating Collaboration and Inspiration: Unforgettable Team Building Event with Breathtaking Paris Views](https://www.fluigent.com/company/news/team-building-2023/) - Fluigent is thrilled to share the success of our recent team building event that brought our employees together for an unforgettable experience. - [Meet Karolina Sobeczek, Fluigent Germany’s Business Development Manager for Eastern Europe](https://www.fluigent.com/company/news/karolina-sobeczek/) - Karolina has been working with us for 2 years while completing a PhD in Health Sciences. - [Alain's Experience at Medica](https://www.fluigent.com/company/news/medica-2023/) - Alain's experience at Medica 2023 - [Insights from Fluigent's Innovator in Microfluidics ](https://www.fluigent.com/company/news/interview-innovator-in-microfluidics/) - The range of LineUp™ products is amongst Fluigent’s best-sellers. Can you tell us more about how you developed this solution? - [Adam Meziane: 아시아 진](https://www.fluigent.com/ko/company/news/new-sales-manager-asia/) - 파리에 본사를 둔 Fluigent는 아시아 태평양 지역의 새로운 영업 관리자로 Adam Meziane을 임명하게 되어 매우 기쁩니다. - [Adam Meziane, 在亚洲事业取得进展](https://www.fluigent.com/zh-hans/company/news/new-perspective-for-asia/) - Fluigent庆祝Adam Meziane担任亚太地区销售经理 - [Analytica 2024 Rückblick: Mikrofluidik in München!](https://www.fluigent.com/de/company/news/analytica-2024/) - Veranstaltungsort: Halle A3 Stand 313B Das Fluigent-Team zusammen mit unserer CEO France Hamber, Alain Crampon, Rainer Knoch, Linn Mari Aune, Jiakun YANG und dem Team von Microfluidic ChipShop Paul Gaube und Elfi Töpfer waren vor Ort und beantworteten Fragen rund um die Mikrofluidik. Höhepunkte vor Ort: Umfassende Setups mit unseren Druckpumpen und anderen Produkten unserer - [Fluigent: Ambassador for 'Made in Val-de-Marne'](https://www.fluigent.com/company/news/fluigent-ambassador-for-made-in-val-de-marne/) - Fluigent becomes an ambassador for Made in Val de Marne - [Welcome Alain Crampon!](https://www.fluigent.com/company/news/welcome-alain-crampon/) - Fluigent is pleased to announce the appointment of Alain Crampon as Chief Sales Officer. - [Development of an in-vitro eye model with the Flow EZ](https://www.fluigent.com/company/news/in-vitro-eye-model/) - The article relies on the 𝗶𝗺𝗶𝘁𝗮𝘁𝗶𝗼𝗻 𝗼𝗳 𝗶𝗻-𝘃𝗶𝘃𝗼 𝗰𝗼𝗻𝗱𝗶𝘁𝗶𝗼𝗻𝘀 by reproducing several eye movements and perfusing the system at physiological flow-rates using 𝗙𝗹𝘂𝗶𝗴𝗲𝗻𝘁’𝘀 prducts - [Microfluidics & Organ-On-Chips Panel Discussion 2022](https://www.fluigent.com/company/news/microfluidics-organ-on-chips-panel-discussion/) - Fluigent's panel discussion was a successful event which took place at Chimie ParisTech - PSL. It gave all the participants an insight about the current and future development of microfluidics and the organ-on-chips field. You will be able to find the summary of the topics below. The Microfluidic Revolution Panel : Learn how microfluidics is - [Fluigent's new organ-on-chip platform, Omi](https://www.fluigent.com/company/news/fluigent-omi/) - We have officially launched our 𝗔𝘂𝘁𝗼𝗺𝗮𝘁𝗲𝗱 𝗢𝗿𝗴𝗮𝗻-𝗼𝗻-𝗰𝗵𝗶𝗽 𝗽𝗹𝗮𝘁𝗳𝗼𝗿𝗺, 𝗢𝗺𝗶!🎉This is the first-of-a-kind device for 𝗹𝗼𝗻𝗴-𝘁𝗲𝗿𝗺 𝗶𝗻-𝘃𝗶𝘁𝗿𝗼 𝗰𝗲𝗹𝗹 𝗰𝘂𝗹𝘁𝘂𝗿𝗲 under biologically relevant shear stresses.✅Automated flow injection & control: leave your flow running for a few days to a few weeks.✅Compact & portable: suitable for incubator, hood and under the microscope for real-time monitoring.✅No chip limitation: Use - [Journées du Patrimoine, 2022](https://www.fluigent.com/company/news/journees-du-patrimoine-2022/) - On the occasion of Journées du Patrimoine, we have been elated to have our flagship product, Flow EZ, in the Office of Roland Lescure, Minister in Charge of Industry. One year after being selected as a representative of the Made in France and being exhibited in the Elysée palace, It was an honour for us - [Thought Leader: France Hamber](https://www.fluigent.com/company/news/thought-leader-france-hamber/) - France Hamber has given an interview to News Medical - Life Sciences, an online press with the latest medical news and research from around the world. Our CEO have the opportunity to speak about our microfluidics solutions and how we are allowing scientists to focus more on the science than the setup. If you want - [FLUIGENT Germany celebrates 8 years!](https://www.fluigent.com/company/news/fluigent-germany-celebrates-8-years/) - Joy grows when shared. Let us celebrate this anniversary of Fluigent Germany together! Benefit from our Special Offer: This May, place your order with us for €8 000 or more and you can choose one of the following Bonuses to get for free: 1. Laptop Lenovo ThinkPad 15” with Intel Core i5. 2. TV Samsung - [Fluigent product ARIA highlighted in last issue of Nature Methods](https://www.fluigent.com/company/news/fluigent-product-aria-highlighted-in-last-issue-of-nature-methods/) - This month, Nature Methods published a special issue on multiplexed tissue imaging. It contains articles that provides tools and guidance for imaging protocols, and highlights recent results. The cover features modeled to resemble the rose window at the Cathedral at Chartres. Images were acquired through IBEX (iterative bleaching extends multiplexity) imaging, a method recently published - [New Application Notes : A human gut-on-chip model](https://www.fluigent.com/company/news/new-application-notes-a-human-gut-on-chip-model/) - You are interested in intestine physiology and/or physiopathology. You wish to assess the role of flow rate and shear stress on intestinal functions or to perform long-term perfusion experiments. Discover how to develop a human gut-on-chip model by combining BEOnChip microfluidic chip and our Fluigent pressure controllers. More information here - [Our CEO, one of the 20 Sup'Excellence laureates](https://www.fluigent.com/company/news/our-ceo-one-of-the-20-supexcellence-laureates/) - Fluigent is cheerful that its CEO, France Hamber, is one of the 20 laureates of the new edition of Sup’Excellence : le business program des entrepren’Her. We would like to thank the Chanbre de Commerce et d'Industrie du Val-de-Marne for its involvement for many years in women's entrepreneurship through numerous support programs. And also congratulations - [Fluigent introduces you the F-OEM Series](https://www.fluigent.com/company/news/fluigent-introduces-you-the-f-oem-series/) - Fluigent introduces you the 𝗙-𝗢𝗘𝗠 𝗦𝗲𝗿𝗶𝗲𝘀 - 𝗮 𝗺𝗼𝗱𝘂𝗹𝗮𝗿 𝗽𝗿𝗲𝘀𝘀𝘂𝗿𝗲 𝗯𝗮𝘀𝗲𝗱 𝗳𝗹𝗼𝘄 𝗰𝗼𝗻𝘁𝗿𝗼𝗹 𝗽𝗹𝗮𝘁𝗳𝗼𝗿𝗺 𝗳𝗼𝗿 𝗶𝗻𝗱𝘂𝘀𝘁𝗿𝗶𝗮𝗹 𝗮𝗽𝗽𝗹𝗶𝗰𝗮𝘁𝗶𝗼𝗻𝘀 The F-OEM offers our 𝗵𝗶𝗴𝗵𝗲𝘀𝘁 𝗽𝗲𝗿𝗳𝗼𝗿𝗺𝗮𝗻𝗰𝗲, 𝗲𝗳𝗳𝗶𝗰𝗶𝗲𝗻𝗰𝘆, 𝗮𝗻𝗱 𝘄𝗶𝗱𝗲𝘀𝘁 𝗽𝗿𝗲𝘀𝘀𝘂𝗿𝗲 𝗮𝗻𝗱 𝗳𝗹𝗼𝘄 𝗿𝗮𝘁𝗲 𝗿𝗮𝗻𝗴𝗲𝘀 to support the most demanding industrial applications, including microfluidic and nanofluidic applications. It is an all-in-one, modular platform that makes use of Fluigent latest - [Fluigent product ARIA highlighted in last issue of Nature Protocols](https://www.fluigent.com/company/news/aria-on-the-cover-of-nature-protocols/) - The February issue of Nature Protocols features a paper on the cover using the Fluigent Aria system for automating tissue imaging through Iterative Bleaching Extends Multiplexity (IBEX). This utilizes the sequential fluid delivery capabilities of the Aria for automated multiplexed imaging. See the paper - [Fluigent, a leader in the growing microfluidics market, is looking for passionate new collaborators](https://www.fluigent.com/company/news/fluigent-a-leader-in-the-growing-microfluidics-market-is-looking-for-passionate-new-collaborators/) - Our CEO France Hamber intervened yesterday in the BFM Business program to present the positions to be filled at Fluigent France and in our subsidiaries! She also highlights Fluigent’s mission and objectives in the rapidly expanding field of microfluidics.Are you looking for an opportunity? Discover our job offers.Joining FLUIGENT is:🚀 Embarking on a fast-growing field linked - [2022 Research and Industrial product catalog](https://www.fluigent.com/company/news/2022-research-and-industrial-product-catalog/) - We are pleased to announce that our 2022 product catalog is available !! - [New Software | OxyGEN](https://www.fluigent.com/company/news/new-software-oxygen/) - The new way to get full control of your microfluidic setup. OxyGEN is a single interface, with plug and play capabilities, available for all desktop OS, that allows you to control, monitor and automate all Fluigent’s products. It gathers at the same place all the functions and capabilities of our traditional software: A-i-O, MAT, ESS control and much more. Through its brand new intuitive dashboard, OxyGEN is our new reference tool for real-time control and - [New Pressure Based Flow Controller for Industry](https://www.fluigent.com/company/news/new-pressure-based-flow-controller-for-industry/) - FLUIGENT is well known for its high quality and innovative fluid delivery systems based on pressure actuation. Utilizing air pressure to drive liquid flow provides unmatched flow stability and fast response times to changes. Such systems also enable easy handling of disposable reservoirs of different sizes to adapt any requirement. Since our inception in 2006, - [Flow EZ™ : the future of microfluidics](https://www.fluigent.com/company/news/flow-ez-the-future-of-microfluidics/) - Are you tired with bad performance with your syringe pumps? Are you tired of waiting for your computer to launch to start your experiments? Are you tired of using a microfluidic controller that uses too much space on your lab bench? Forget long equilibration time, long procedures on your computer, optimizing your set-up to get - [Fluigent 15th year anniversary celebration](https://www.fluigent.com/company/news/fluigent-15th-year-anniversary-celebration/) - We took this opportunity to celebrate Microfluidics and the expansion of its applications and uses by organizing two scientific conferences with key opinion leaders. During two days, we hosted 6 conferences of eminent scientists in microfluidics? Séverine Le Gac, Charles Baroud, Raphaël Tomasi, David A. Weitz, Dimitrios Lamprou, Andrew deMello and Jean-Louis Viovy inspired more - [Proudly made in France](https://www.fluigent.com/company/news/proudly-made-in-france/) - We are pleased to announce that our Flow EZ microfluidic flow controller has been selected to be part of the new faces of #MadeInFrance 🇫🇷 during the Great Exhibition of Made in France, on July 3rd and 4th, at the #Élysée Palace!For 15 years, Fluigent as a world leader, has used its leadership and expertise - [Introducing Fluigent New 2-Switch](https://www.fluigent.com/company/news/introducing-fluigent-new-2-switch/) - The new 2-Switch™ is a compact and easy to use 3-port/2-way microfluidic valve. Using standard connectors it can be integrated to any microfluidic setup. Its unique design allows to stack multiple 2-Switches™ together to save space on your benchtop. Main applications:The 2-Switch™ is ideal for applications where fluid sorting, switching or periodic sampling is required. - [COVID-19 update](https://www.fluigent.com/company/news/covid-19-update/) - Dear Customers and Partners, We are all well aware of the sacrifices to our daily activities necessary to mitigate the spread and consequences of the virus. Being part of the research community we feel it is our responsibility to continue to provide the best service possible and support everyone the best way possible during this - [Ile-de-France exporter of the year](https://www.fluigent.com/company/news/ile-de-france-exporter-of-the-year/) - Fluigent is delighted to announce that it was selected as the Ile-de-France exporter of the year. 👏 Our CEO France Hamber yesterday received the prize given by Didier Kling, President of the CCIP IDF. The award is the fruit of the collective effort of the Fluigent team and we are very proud. 👍🏻 Visit the - [Microfluidic setup Flow Rate ad Pressure Calculator](https://www.fluigent.com/company/news/microfluidic-setup-flow-rate-ad-pressure-calculator/) - Choosing the right microfluidic controller is the first step in developing any microfluidic experiment, but it is not always an easy task. In a microfluidic set-up there are two kinds of flow resistances: external flow resistances (tubing and fittings) and internal flow resistances (microchip design). Both will determine the necessary pressure to achieve the desired - [Fluigent is growing!](https://www.fluigent.com/company/news/fluigent-is-growing/) - Thanks to our customers and growing business, Fluigent has moved to a new location with more than twice as much space! Our new address is: O’kabé Bureaux67, avenue de Fontainebleau94270 Le Kremlin-BicêtreFrance Our better-thought production space will help us improve our workflow for your products and our customer support. The R&D is now bigger to - [Fluigent provides automated fldic platfrom to BIOART-Lung 2020 project](https://www.fluigent.com/company/news/fluigent-provides-automated-fldic-platfrom-to-bioart-lung-2020-project/) - Fluigent is proud to be a part of the BIOART-LUNG 2020 project. Under the scientific coordination of Marie Lannelongue Hospital, this project is supported by a public grand overseen by the French National research Agency (ANR) as part of the second “Programme d’investissements d’Avenir” (reference : ANR-15-RHUS-0002)”. This interdisciplinary project gathers more than 10 different - [[FRENCH] La start-up qui réinvente l'analyse médicale](https://www.fluigent.com/company/news/french-la-start-up-qui-reinvente-lanalyse-medicale/) - Fondée en 2006, désormais dirigée par France Hamber, Fluigent vient de lever des fonds auprès d’Inventures, un fonds d’investissement belge orienté vers le développement durable. «Nous cherchons à nous inscrire dans un des dix-sept objectifs de développement durable fixés par les nations unies», précise France Hamber. Il pourrait s’agir de la thématique «Santé et bien-être» - [Smart Microfluidic has arrived](https://www.fluigent.com/company/news/smart-microfluidic-has-arrived/) - New LineUp™ Series : Forget about how microfluidic experiments used to work! Fluigent is proud to set the new standards in microfluidic combining ease of use and the best performance available. Composed of a stand-alone flow control module (or up to 8), a Link to communicate with external devices and software, the LineUp™ Series is - [Lunar New Year](https://www.fluigent.com/company/news/lunar-new-year/) - 新年快乐 ! We wish to all our team members, customers and business partners a wonderful lunar year! At Fluigent, we celebrated the Year Of The Ox by eating traditional snacks, playing Mahjong and we also received Red Enveloppes Thanks to our Chinese colleagues for sharing their culture and helping to organise this event. 2021 Lunar ## Pages - [Smart Microfluidics](https://www.fluigent.com/) - Fluigent is the first company to introduce an innovative technology: pressure pumps. Fluigent’s unique broad range of solutions for use in microfluidic. - [현대 신약 개발 및 테스트에서의 장기온칩 플랫폼 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/organ-on-chip-in-drug-development/) - 장기온칩 플랫폼이 신약 개발을 어떻게 혁신하는지 알아보세요. 본 가이드에서는 OOC 모델, MPS, 규제 변화 및 동물 실험 대비 장점을 소개합니다. - [现代药物开发与测试中的器官芯片平台 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/organ-on-chip-in-drug-development/) - 如何在药物开发中预测人体特异性毒性? 深入了解: ✅ 器官芯片如何通过动态流体改善药物测试 ✅ 类器官(Organoids)、微生理系统(MPS)与器官芯片(OOC)之间的区别 ✅ 包括《FDA现代化法案2.0》在内的监管政策如何加速其普及 - [使用微流控技术在微珠中进行前列腺类器官培养 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/microbead-prostate-organoid-culture/) - 了解微流控微珠如何实现可重复的 3D 前列腺类器官培养。提高转染效率、降低成本并扩大您的研究规模。 - [Fluigent's Distributors](https://www.fluigent.com/company/distributors/) - Find a Fluigent Distributor near you and get the best guidance for your microfluidic projects. - [Microfluidics in Life Science](https://www.fluigent.com/markets-applications/life-science/) - Microfluidics technologies accelerates the analysis of living cells in vitro to understanding basic biology, drug effects, and disease models. - [5 reasons to choose OEM pressure controllers over OEM syringe pumps for microfluidic applications](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controllers-vs-oem-syringe-pumps/) - Why you should consider moving from Industrial syringe pumps to OEM pressure controllers for microfluidic liquid handling? - [첨단 오가노이드 모델링에서 마이크로유체공학의 역할: 정적 환경에서 동적 환경으로 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/microfluidics-in-advanced-organoid-modeling/) - 마이크로유체 플랫폼이 오가노이드 생존율 향상, 조직 성숙 촉진 및 혈관형성 지원을 가능하게 하는 이유와 방법 - [技术在高级类器官模型中的作用:从静态到动态 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/microfluidics-in-advanced-organoid-modeling/) - 微流控平台如何以及为何能提高类器官的存活率、促进组织成熟并支持血管化。 - [Contact us](https://www.fluigent.com/contact-us/) - Support ServicesOther contact Customer Service At Fluigent, we understand that a non-functioning system means time lost in the lab. Fluigent’s customer support team is dedicated to performing timely, cost-effective repairs. Our support ranges from microfluidic advice to device repair to make sure you are back working on your experiments as soon as possible. If you - [微流控客户案例研究](https://www.fluigent.com/zh-hans/application-expertise/case-studies/) - 欢迎查阅以下微流控客户案例,聆听客户与我们合作的真实体验。 - [使用牺牲油壳法在海藻酸盐微珠中进行微流控细胞球包裹  ](https://www.fluigent.com/zh-hans/application-expertise/case-studies/spheroid-encapsulation/) - 在均质海藻酸盐微珠中形成的高存活率哺乳动物细胞球,非常适用于实验室3D细胞培养。 - [Resources and Support](https://www.fluigent.com/resources-support/) - A strong expertise on microfluidics Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created - [hiPSC 유래 혈관 장기 온 칩: 단방향 흐름을 통한 생리학적 정렬 달성 ](https://www.fluigent.com/ko/application-expertise/application-notes/hipscs-derived-vascular-organ-on-chip/) - Omi™ OoC 플랫폼이 hiPSC 유래 혈관 모델에 안정적인 단방향 흐름을 제공하여 내피 세포 정렬 및 생리학적 관련성을 어떻게 촉진하는지 알아보세요. - [hiPSC衍生血管器官芯片:通过单向流实现生理性细胞排列](https://www.fluigent.com/zh-hans/application-expertise/application-notes/hipscs-derived-vascular-organ-on-chip/) - 探索Omi™器官芯片(OOC)平台如何为hiPSC衍生的血管模型提供稳定的单向流,从而促进内皮细胞排列并提高模型的生理相关性。 - [Microfluidics for Pharmaceutical Applications](https://www.fluigent.com/markets-applications/pharmaceutics/) - Advances in microfluidics for drug delivery & other applications. Best solution for the formation of monodisperse and functionalized droplets. - [Microfluidics for Pharmaceutical Applications](https://www.fluigent.com/markets-applications/pharmaceutics/) - Advances in microfluidics for drug delivery & other applications. Best solution for the formation of monodisperse and functionalized droplets. - [Microfluidics in Life Science](https://www.fluigent.com/markets-applications/life-science/) - Microfluidics technologies accelerates the analysis of living cells in vitro to understanding basic biology, drug effects, and disease models. - [Microfluidics in Life Science](https://www.fluigent.com/markets-applications/life-science/) - Microfluidics technologies accelerates the analysis of living cells in vitro to understanding basic biology, drug effects, and disease models. - [微流控自动化:实时监测与反馈回路 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/automation-in-microfluidics/) - 了解微流控自动化如何通过实时监测与智能反馈控制,提升实验精度与可重复性。 - [用于进行精确流体控制的微流控解决方案 ](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-high-flow-control/microfluidic-solutions/) - 压力式微流控流量控制器 Fluigent是率先在微流控技术中引入压力式微流控流量控制器来处理流体的公司。压力驱动式流量控制系统的流体驱动方法包括对装有样本的储液瓶进行加压,并将其快速注入微流控设备中。 我们的控制器基于获得专利的FASTABTM技术,可确保流量稳定、无脉冲,从而提高实验的准确性和可再现性。使用压力驱动可以缩短响应时间并降低成本。 主要有两个产品系列:LineUpTM系列和MFCS系列,前者用于不断发展、紧凑且适配性强的操作,后者用于实现经过现场验证的定制化体验。 MFCS MFCS™(即微流控流量控制系统)是一种压力式微流控流量控制器。具有4或8个通道,有不同的压力范围,适用于微流控实验。MFCS™可产生恒定的压力驱动流速,支持进行可靠且可重复的实验。 MFCS的特点 独立通道:每个通道都可以独立控制,并提供特定量的压力或真空来处理流体。可用压力范围为-800 mbar(用于抽真空)到7 bar(用于加压)。 快速获得出色结果:快速达到压力目标并立即开始实验。利用经过现场验证的技术,您可以快速获得可靠、出色的实验结果。 结果可靠且可再现:MFCS™可避免交叉污染,因为仪器和试剂之间没有直接接触。我们的压力驱动技术可实现无脉冲的精确控制,这对于在许多应用中获得可重复的结果至关重要。 完全可定制:MFCS™的设计取决于您的需求。您可以选择设备中的通道数量(4或8),每个通道的压力范围为-800 mbar到7 bar,您甚至可以选择在仪器内部集成压力源或真空源。 LineUP 我们的LineUp™产品系列是下一代微流控系统: 借助Flow EZ™或Push-Pull模块,用户可以精确调节和控制压力和真空,LINK和LINK COM模块用于与计算机或任何使用TTL端口、USB电缆或串行端口通信的外部仪器通信。 Adapt用于连接具有不同压力范围的Flow EZ™模块,无需附加压力源。P-SWITCH支持成倍增加系统的出口,而SWITCH EZ可控制微流控阀。整个系统可以在没有电脑的情况下通过本地控制进行控制,也可以通过Fluigent软件进行监控,以扩展其功能并充分利用自动化。 选择您需要的模块并将其组合在一起。 Flow EZ Datasheet 使用Flow EZ和MFCS的应用示例: 来自北京中国人民解放军军事科学院生物信息中心的Hongjuan Wei等人成功开发出通用集成平台和相应的控制系统,可用于简化和按需制备mRNA产品。基于交错人字形微混合芯片的mRNA封装模块已集成到此平台中,该模块使用了我们的压力驱动式控制器(Flow EZ)和流量传感器(FlowUnit)。[1] mRNA封装模块 微流控传感器 借助Fluigent微流控传感器组,用户可以直接控制和监控流速,或在设置中扩展压力/真空测量,从而提供适用于任何流体应用的流速测量和/或控制解决方案。我们的微流控传感器提供可调节的液体流量、最少的试剂和样本用量、快速分析能力、系统紧凑性与并行化能力,以及较少的废液产生量。 流量传感器 FLOW UNIT和FLOW UNIT+是双向微流控流量传感器,可独立使用,兼容Line Up™控制器或其他微流控控制系统(如使用Flowboard集线器的MFCS™系列)。 FLOW UNIT和FLOWUNIT+微流控流量传感器具有多种低流速范围 Flow Unit Datasheet FLOW UNIT的特点: 针对各种流体调节测量值:与FLOW UNIT组合使用时,可在处理流速传感器校准之外的液体时为您的测量添加一个比例因子。对于有机溶液,异丙醇的第二次校准内置在S、M+和L+型号的FLOW UNIT上。 流速测量:FLOW UNIT和FLOW UNIT+能够快速、准确地测量超低流体流速。 各种流速范围的精度:FLOW UNIT型号众多,流速选择范围广泛,可在7 - [Fluigent Newsletter](https://www.fluigent.com/company/fluigent-newsletter/) - [Fluigent Newsletter](https://www.fluigent.com/company/fluigent-newsletter/) - [Fluigent Newsletter](https://www.fluigent.com/company/fluigent-newsletter/) - [Fluigent Newsletter](https://www.fluigent.com/company/fluigent-newsletter/) - [用于液滴生成的微流控技术](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-droplet-generation/) - 什么是乳剂和液滴 乳剂是一种异质系统,至少由一种不相溶的液体以液滴形式分散在另一种液体中组成。如果不进行乳化,两种液体就会分离,密度较小的相浮于密度较大的相之上。沙拉酱就是常见的乳剂。在由水相(醋)和油相(橄榄油)组成的油醋汁中,如果不进行乳化,这两种相就会分离。通过摇晃油醋汁瓶,醋会分散到油性连续相中,从而形成乳剂。在乳剂中,一种液体(称为分散相)分散在另一种液体(称为连续相)中。 油包水滴液 乳剂的常见应用有哪些? 聚合物中的生物分子封装[1] 药剂学:乳剂用于多种医药产品,包括静脉注射、肌肉注射、眼用或口服产品。乳剂也可用作聚合物微粒、脂质纳米粒或微胶囊的模板。例如,后者可以用于药物输送,乳剂本身就是活性药物成分(API),或可作为联合给药的佐剂。 食品工业:作为热力学上稳定的分散剂,乳剂可产生不同大小的液滴,这种独特性质使其适用于食品工业中的多种应用。 纳米封装作为一种有前景的方法,用于维生素靶向递送和控制释放。[2] 利用微流控技术开发的化妆品产品。 化妆品:化妆品中的乳剂类产品质地细腻、触感光滑,并且能够缓慢且持续地释放活性物质,还可以改善不溶性物质的溶解或增溶。最近,市场上出现了“豪流控”设备,可以生成肉眼可见的乳剂,从而可以开发极具视觉吸引力的独特产品。 为什么要使用液滴微流控技术? 1)传统液滴生成方法的局限性 液滴产生的标准方法包括使用高速搅拌机、高压阀均质机、胶体磨等机械设备。液滴破裂通常通过手动/机械搅拌产生的剪切或冲击应力来实现。在这种情况下,整个系统产生的应力通常并不均匀。因此,生成的乳剂大小不一。这在许多应用中可能是一个严重的限制,因为乳剂的稳定性取决于尺寸。 使用a)批量法和b)微流控法生成微乳剂 2)用于控制乳剂的微流控设备 使用微流控系统进行的液滴生产已用于单分散性非常重要的应用。通过微米级大小的通道一次生成一个液滴,从而可以产生出单一分散的液滴。凭借这样的控制水平,以前不可能实现的应用也成为可能,例如数字PCR和液滴内单细胞封装。此外,这种方法产生的浪费较少,对于使用昂贵API(活性药物成分)的应用来说也十分理想。在典型的微流控系统中,微流控芯片通过连接一个或多个流量控制器,以注入其中的流体。液滴尺寸主要取决于微流控通道尺寸、流体特性(粘度)和所使用的流速。 基于微流控的液滴生成和控制支持: 高度单分散(尺寸变化 100 µm,生成频率< 1 kHz)。通过将两个圆形毛细管插入方形外部毛细管(c,d)中可以简化居中操作,但相关制造方法限制了大规模生产,并且基于毛细管的高通量液滴生产尚未实现。新的配置提供了一种可行的替代方案,将提取管放置在注射管的前方,并且不采取任何周围的限制措施(e)。然而,该系统仅在射流状态下工作,不能保证液滴单分散性与滴落状态有关。 基于毛细管的可用轴对称液滴生成器设计。 Raydrop:一种非嵌入式共流聚焦微流控液滴发生器 Fluigent和Secoya合作开发了一款新系统,基于前面提到的设计,但有所创新,其中通过使用直径小于提取毛细管的注射毛细管来强制实现滴落状态。这种方法结合了尖端加工和3D打印技术。这种非嵌入式设计展现了共流和流动聚焦的特征,并称之为“非嵌入式共流聚焦”设计。这种配置填补了微流控液滴生成器设计领域中的空白。 a) Raydrop分解图和(b)组装图。(c) Raydrop带有注射和提取玻璃毛细管。(d) 通过顶部窗口放大观察两个毛细管在填充连续相的室内对准的情景。(e) 放大观察基于毛细管的液滴生成区域。 PLGA 微珠示例 Raydrop是一款商用微流控芯片,操作简单,能够生成非凡单分散性的液滴。 Raydrop®能够生产简单乳剂(水包油和油包水)以及双乳剂(油包水包油或水包油包水),无需涂层处理。 与单一乳剂相比,双乳剂优势众多。双乳剂通常更稳定且不易聚合,并且更易于处理和分析。由于双乳剂能够轻易分散在水连续相中(在生命科学领域的单一乳剂中较少见),因此可以通过自动化细胞分选,例如荧光激活细胞分选(FACS),进行表征和分类。此外,双乳剂是通过固化外壳来生产微胶囊的绝佳模板。 PLGA(左)和壳聚糖(右)微胶囊示例 流速在液滴生成中起什么作用? 流速稳定性对于获得可重复的反应器体积和可再现的结果至关重要。在微流控实验中,注射泵通常用于产生液滴。根据使用的型号,注射泵的流量控制有限。因此,液滴尺寸(与流速成比例)会受到影响。实际流速无法通过这种设备进行监控。设备上显示的是流速值,但没有给出达到设定流速所需的时间信息。(流量平衡的时间可能会随着微流控的设置而变化,而流速也会随着仪器的不同而波动)。注射泵的替代品是Flow EZ压力式流量控制器。这些表明高精度流量控制、快速反应时间和流量监控可能实现。与注射泵相比,流量更稳定且可重复。 进一步探索我们的液滴相关产品和解决方案 References Iqbal, M., Zafar, N., Fessi, H., & Elaissari, - [微流控流体控制技术:为可靠结果选择合适的泵 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/flow-control-technologies-comparison/) - 蠕动泵、注射泵与压力泵在微流控应用中的比较,以及如何选择合适的微流控泵 - [미세유체에서의 흐름 제어 기술: 신뢰할 수 있는 결과를 위한 적절한 펌프 선택 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/flow-control-technologies-comparison/) - 미세유체 응용 분야에서 peristaltic 펌프, 실린지 펌프 및 압력 펌프의 비교 및 적절한 미세유체 펌프 선택 방법 - [10 条实现可靠液滴生成的技巧 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/10-tips-for-droplet-generation/) - 微流控液滴技术可在药物发现、诊断及材料研究中实现对液体的精确控制。遵循这 10 条建议,助你掌握稳定性、流动与包封。 - [신뢰성 있는 드롭렛 생성을 위한 10가지 팁](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/10-tips-for-droplet-generation/) - 드롭렛 마이크로유체 기술은 약물 개발, 진단, 신소재 분야에서 정밀한 액체 제어를 가능하게 합니다. 안정성, 유속, 캡슐화를 완벽히 다루기 위한 다음 10가지 팁을 따르세요. - [Careers](https://www.fluigent.com/company/careers/) - EN subtitles Fluigent, a leader in the growing microfluidics market, is looking for passionate new collaborators This Tuesday, February 15, 2022, our CEO France Hamber intervened yesterday in the BFM Business program to present the positions to be filled at Fluigent France and in our subsidiaries! She also highlights Fluigent’s mission and objectives in the - [Careers](https://www.fluigent.com/company/careers/) - EN subtitles Fluigent, a leader in the growing microfluidics market, is looking for passionate new collaborators This Tuesday, February 15, 2022, our CEO France Hamber intervened yesterday in the BFM Business program to present the positions to be filled at Fluigent France and in our subsidiaries! She also highlights Fluigent’s mission and objectives in the - [Careers](https://www.fluigent.com/company/careers/) - EN subtitles Fluigent, a leader in the growing microfluidics market, is looking for passionate new collaborators This Tuesday, February 15, 2022, our CEO France Hamber intervened yesterday in the BFM Business program to present the positions to be filled at Fluigent France and in our subsidiaries! She also highlights Fluigent’s mission and objectives in the - [Careers](https://www.fluigent.com/company/careers/) - EN subtitles Fluigent, a leader in the growing microfluidics market, is looking for passionate new collaborators This Tuesday, February 15, 2022, our CEO France Hamber intervened yesterday in the BFM Business program to present the positions to be filled at Fluigent France and in our subsidiaries! She also highlights Fluigent’s mission and objectives in the - [미세유체 관류 최적화: 모범 사례와 혁신 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/optimising-microfluidic-perfusion/) - 장기칩, 생세포 이미징, 약물 검사 및 고급 유량 제어 시스템을 위한 미세유체 관류의 모범 사례를 살펴보세요. - [优化微流控灌流:最佳实践与新进展 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/optimising-microfluidic-perfusion/) - 探索器官芯片、活细胞成像与药物测试中的微流控灌流最佳实践,以及先进流控系统的应用 - [문의하기](https://www.fluigent.com/contact-us/) - 판매 지원기타 연락처 고객 서비스 Fluigent에서는 작동하지 않는 시스템이 연구실의 시간 손실을 의미한다는 것을 알고 있습니다. Fluigent의 고객 지원 팀은 시의적절하고 비용 효율적인 수리를 수행하기 위해 최선을 다하고 있습니다. 고객이 가능한 한 빨리 실험을 재개할 수 있도록 미세유체 조언에서 장치의 수리에 이르기까지 다양한 지원을 제공합니다. FAQ에서 답변을 찾지 못한 경우 전담 팀에 문의해 주십시오. 24시간 - [Kontakt](https://www.fluigent.com/contact-us/) - Wenn Sie einen Ansprechpartner benötigen oder eine spezielle Anfrage haben, kontaktieren Sie uns direkt über die Kontaktliste. - [联系我们](https://www.fluigent.com/contact-us/) - 客户服务 / 销售支持 其他联系方式 客户服务 在Fluigent,我们很清楚不好用的系统意味着在实验室浪费时间。Fluigent的客户支持团队致力于提供及时、经济高效的维修。我们提供的支持服务涉及微流控建议及设备维修,从而可确保您尽快重新专注于实验工作。 如果您没有在常见问题FAQ)中找到答案,请联系我们的专门团队。我们保证在24小时内做出响应,必要时可通过远程会议或现场访问进行诊断 欧洲及世界其他地区 Maya Ballet contact@fluigent.com电话号码 : +33 6 37 67 56 79电话:+33(0)1 7701 8268 北美 James Lazich fluigentinc@fluigent.com电话号码: +1 978-926-3307电话: +1 978-268-0347 销售支持 您对我们的技术感兴趣吗? 你需要关于设置的建议吗?你是否想要使用微流控技术?请给我们留言!期待收到您的留言。 欧洲及世界其他地区 Alain Crampon contact@fluigent.com电话号码: +33(0)6 08641242电话: +33(0)1 82 39 43 81 北美 Fernando Ferreira fluigentinc@fluigent.com电话号码: +1 781-796-7920电话: +1 978-306-6988 其他联系方式 客户服务 FLUIGENT contact@fluigent.com电话: +33(0)1 - [오간온어칩 연구에서의 압력 제어 마이크로유체 기술](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/pressure-controlled-microfluidics-in-ooac/) - 오간온어칩(OOC) 실험을 위한 다양한 압력 제어 기술의 핵심 정의, 장점 및 단점 - [在器官芯片研究中的为流体压力控制](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/pressure-controlled-microfluidics-in-ooac/) - 器官芯片应用中各类压力控制技术的关键定义、优势与局限的权威梳理。 - [장기온칩응용분야를위한미세유체기술](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-organ-on-chip-applications/) - 장기온칩이란무엇인가요? 장기 온칩(OOC) 기술(그림 1)은 미세유체 칩 내에서 세포(2D 또는 3D) 또는 조직 부분을 사용하여 인간 장기 수준의 기능이나 질병을 복제하는 것을 포함합니다. 미세유체 기술은 세포 환경을 정밀하게 제어하여, 세포에게 더욱 정확한 기계적 및 생화학적 신호를 제공합니다(1). 소량의 유체를 조작함으로써 이러한 모델들이 확장 가능하고 역동적인 세포 상호작용을 용이하게 합니다. 미세유체 기술과 OOC 기술을 결합함으로써 인간 - [장기 온칩 연구를 위한 첨단 솔루션  ](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-organ-on-chip-applications/solutions-for-organ-on-a-chip/) - Flow-EZ 압력 유량 컨트롤러 Flow EZ는 정밀 유체 처리 분야에서 혁신적인 솔루션을 제시합니다. 원활한 통합과 정밀한 제어를 위해 설계된 이 압력 구동식 유량 컨트롤러는 다양한 애플리케이션, 특히 세포 배양 및 장기 온칩 응용분야를 위한 유체 관리에서 비교할 수 없는 다용도성과 신뢰성을 제공합니다. 사용자 친화적인 인터페이스와 컴팩트한 디자인을 갖춘 Flow EZ는 실험을 간소화하여 연구자가 탁월한 정확도로 - [适用于器官芯片研究的高级解决方案](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-organ-on-chip-applications/solutions-for-organ-on-a-chip/) - Flow-EZ压力流量控制器 Flow EZ是精密流体处理领域的创新解决方案。这款压力驱动式流量控制器专为实现无缝集成和精确控制而设计,可为各种应用(尤其是细胞培养和器官芯片应用)的流体管理提供出色的多功能性和可靠性。凭借其用户友好型界面和紧凑型设计,Flow EZ可简化实验操作,使研究人员能够轻松地以卓越的精度控制流速和压力。该仪器是实现精确流体控制的重要工具,便于进行细胞生物学和药物研究等领域的各种实验。 FlowEZ的特点 可扩展至最多12个模块:随着您的工作流程扩展,Flow EZ™系统可提供优异的可扩展性,支持无缝集成最多12个模块。每个微流控流量调节器都可以用作独立的专用压力通道,确保在实验中实现最佳控制和灵活性。 压力和真空控制:借助Flow EZ™系列模块,可轻松实现精确的压力和真空调节。可在-800 mbar到7 bar的压力范围内进行精确调节,确保您的实验在最佳条件下进行。 本地手动控制:无需连接电脑即可进行操控!Flow EZ™硬件接口支持本地控制,您能够通过模块直接操控设置。 流体输送精度:配备FLOW UNIT的系统能够实现对流速的高度控制和对体积的精确分配,并可根据实验需求提供动态范围。 高适配性储液瓶选件:Flow EZ™支持各种容量(2 mL至1 L)的实验室用储液瓶。流量长时间保持稳定,无需频繁补充,从而确保实验能够连续进行数天。 用FlowEZ的应用示例 麻省理工学院的Roger D. Kamm和他的团队(1)开发了一种用于模拟人体血脑屏障(BBB)的先进微流控模型,并集成了Fluigent Flow-EZ压力控制器。该装置支持对血管渗透性进行定量分析。他们的微流控装置是一种创新型人体BBB模型,Nature Protocols对其进行了重点报道。该模型可以模拟血管形态、相应的细胞组织、运送能力以及相关的基因/蛋白质表达谱,这些要素对于综合研究至关重要。 Nat Protoc 17, 95–128 (2022). https://doi.org/10.1038/s41596-021-00635-w 自动化器官芯片平台-Omi Omi是Fluigent的自动化器官芯片平台,该平台是器官芯片技术领域的最新成果。该平台可以帮助科学家和研究人员简化和改进研究过程。 Omi可提供对各种参数的自动控制,使研究人员能够准确模拟复杂的生理环境。凭借其用户友好型界面和精确的流体控制,该平台支持对细胞相互作用、疾病建模、药物测试等进行深入研究。 通过其模块化设计和高适配性,该平台支持轻松重建不同的器官芯片模型,具有灵活性和可扩展性。该平台旨在优化实验工作流程,确保高效生成可再现的结果。并支持长期进行流体再循环、注射和采样,从而简化了复杂器官芯片研究的方案创建。 Omi Datasheet 自动化器官芯片平台Omi的特点 多功能性:Omi提供可定制的方案,包括精确、轻松地进行灌注、再循环、注射和采样。Omi附带适配器,因此还适用于任何类型的微流控芯片。 紧凑便携:Omi适合放入培养箱内和显微镜下。它可以在培养箱、保护罩和显微镜之间轻松转移,同时保持流程持续运行。 远程控制:通过WIFI连接和iOS/Android Omi应用程序,可对方案进行设置和监控,具有出色的便利性和可控性。 自主性:电池续航时间为2小时,便于从培养箱平稳转移到成像系统,以实现不间断的实验和分析。 数据存储在云中,更易于访问。 高通量细胞灌注套件 Fluigent提供的器官芯片灌注套件适用于高通量研究,是生物医学研究领域的重大进步。该套件旨在通过多重分析和开发高通量实验推动器官芯片研究的进一步发展! 它可以同时对多个器官芯片模型进行灌注控制。 该套件具有用户友好型界面,可确保在多个实验中精确控制流速、压力和样本收集,从而最大限度地实现芯片灌注。 该套件配备Fluigent的MFCS-EX微流控流量控制器、双向流量单元传感器、BeOnChip微流控芯片以及与培养箱兼容的储液瓶支架系统。 通量细胞灌注套件的特点 稳定且复杂的流动模式:借助细胞灌注套件,我们能够实现卓越的响应能力,有效地复制复杂的流动模式,例如主动脉压力波动。这种精确的控制可保证一致且可再现的实验环境,显著降低了实验差异性。 方案自动化和用户友好型界面:优化参数后,自动化方案成为提高时间效率、减少污染并最大限度地减小差异性的关键步骤。Fluigent流量控制器可通过用户友好型软件(OxyGEN)实现方案的无缝组装和自动化,从而实现任何方案、阀门或压力设置的自动化。 多功能且可定制: 该装置适用于任何类型的微流控芯片和任意种类的应用。细胞灌注套件的模块化特性使研究人员能够根据其独特的研究问题设计实验。 - [适用于器官芯片应用的微流控技术](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-organ-on-chip-applications/) - 什么是器官芯片? 器官芯片(OOC)技术(图1)是指使用微流控芯片内的细胞(2D或3D形式)或组织切片来复制人体器官的功能或疾病。微流控技术可以精确控制细胞环境,为细胞提供更准确的机械和生化信号(1)。这些模型支持操控少量流体,从而有利于实现可扩展的动态细胞相互作用。通过将微流控技术与OOC技术相结合,可以重现人体器官功能,以研究人体生理机能和疾病。 微流控芯片设计的最新进展是利用几何形状和结构来模拟生理条件,如长度尺度、浓度梯度和流体产生的机械力。这些仿生平台克服了传统组织培养模型面临的许多限制。 图1:从活体器官到器官芯片(1)。 器官芯片技术的应用 疗法开发 器官芯片模型通过创新的工程方法和材料为药物筛选和开发提供了卓越的多功能性。研究领域出现了一个重要趋势,即利用人诱导性多能干细胞(hiPSC)创建个性化器官模型。这些模型通过使用多孔膜将培养板连接到微流控通道,有助于探索复杂的培养设置。这种配置是研究气液界面(ALI)培养、内皮/上皮屏障和细胞间通信的理想工具。 药物发现 体外器官芯片模型的进步有望预测人类对新型候选药物的反应。这些OOC模型为精确预测和详细研究潜在药物对人类造成的毒性创造了条件。此外,它们还有助于探索新的治疗策略来对抗观察到的毒性作用。在药物发现过程中,这些模型产生的见解有助于尽早识别、修改和优化先导化合物,从而促进更安全、在临床试验中成功的可能性更高的药物开发。 个性化医疗 器官芯片模型是进行精确预测和研究潜在药物相关人类毒性的宝贵资源。它们可以深入评估不同化学物质对患者特定人体组织的影响。此外,该模型还为探索新治疗途径奠定了基础,这些治疗途径可抵消观察到的与这些化合物相关的有害影响。在药物发现过程中,从这些模型中获得的见解不仅有助于尽早识别先导化合物,而且还能对其进行修改和优化。最终,这种方法可促进更安全药物的开发,提高这些药物在严格的临床试验中成功的可能性。 适用于器官芯片应用的精确流体处理 精确的流体处理是器官芯片应用的关键要素,旨在确保准确模拟生理条件并实现各种实验设置。要在OOC应用中实现精确的流体处理,需要采用微流控组件,例如微型泵、阀和微流控通道。这些系统使研究人员能够控制流速、梯度和流体成分的动态变化,为研究器官芯片和组织芯片提供更贴近生理条件的环境。 为什么精确的流体处理在OOC模型中至关重要? 模拟生理条件 器官芯片设备需要精确控制流体流动,以准确复制人体器官的动态微环境。这种控制可确保细胞承受的流体剪切应力和梯度与人体内的细胞相似。 细胞相互作用研究和组织工程 准确的流体处理支持研究细胞相互作用,例如内皮-上皮相互作用或血脑屏障,这对于了解疾病和药物反应必不可少。其对于在芯片内创建营养物质或信号分子的梯度、促进工程组织中的组织生长和成熟也至关重要。 药物测试与开发 正确的流体处理有助于以特定浓度和速率输送药物或化合物,从而实现精确的药物测试和功效及毒性筛选。 自动化和高通量筛选 精确的流体处理系统可以实现自动化,从而支持高通量实验及化合物或条件筛选。 OOC模型示例 肺芯片 - 首个OoC 创新的人类肺泡芯片(图2)通过复制生理和病理生理综合反应重新定义了器官芯片(OoC)技术,超越了以前主要关注细胞或组织功能的模型。这一开创性的器官模型具有两个平行微通道:一个布满人肺上皮细胞,另一个布满人内皮细胞,并由微孔膜隔开。 实现细胞汇合后,将空气引入上皮层,形成气液界面,从而模拟肺泡气腔内壁。这种分隔的微型设备设计支持独立于上皮和内皮精确控制流体流动、细胞输送和营养分配。 图2:受生物学启发的人肺呼吸芯片微型设备设计(2)。 肠道芯片 目前已针对小肠和大肠开发出几种创新的器官芯片(OoC)技术模型,其中利用的是带或不带底层内皮的肠上皮细胞。这些模型有两种用途:复制各种疾病并研究药物代谢和毒性。 在小肠芯片中,动态流体流动已被确定为促进绒毛形成和杯状细胞产生的关键因素,同时也促进了结肠芯片中保护性粘液层的构建。此外,模拟类似蠕动的机械运动对于实现最佳组织分化至关重要。例如,在结肠芯片模型中,循环机械拉伸和流体流动增强明显有利于细菌(以志贺氏杆菌为例)生长。 肿瘤芯片 肿瘤芯片模型正迅速成为肿瘤学研究的有力工具。这些创新系统可有效复制肿瘤微环境(TME)的关键要素,包括生化梯度、生态位因子、复杂的细胞相互作用以及由肿瘤细胞和基质细胞构成的复杂组织结构(3)。肿瘤芯片设计旨在重现组织-组织界面,并在复制癌浸润和转移过程中的复杂相互作用方面发挥关键作用。现已设计出众多模型来操控TME并探索肿瘤细胞行为,例如研究细胞对代谢梯度的反应。还有一个示例显示了使用TOC模型的意义,即用于了解肿瘤细胞在体内缺氧环境中的新陈代谢和耐药性。此创新平台有望揭示肿瘤行为的关键方面并制定克服相关挑战的策略。 Fluigent对OOC领域的贡献 Fluigent以促进科学进步为自身使命,特别是在充满活力的器官芯片技术领域。我们始终走在最前沿,不断寻求新的途径来推动研究向前发展,努力开拓创新解决方案,以重新定义科学探索的界限。 我们的承诺是推动器官芯片技术的进步,彻底改变这一领域的面貌。我们致力于寻找和提供创新解决方案,为研究人员提供支持,使他们能够更精确、更高效地探索生物系统。 了解我们器官芯片领域的产品 References Wu, Q.; Liu, J.; Wang, X.; Feng, L.; Wu, J.; Zhu, X.; Wen, W.; Gong, X. - [왜 세포 생물학에서 전단 응력을 제어해야 할까요?](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/why-control-shear-stress/) - 체외에서 제어된 전단응력을 재현하는 것이 왜 생체 내 조건을 보다 정확하게 모방하는 데 중요한지 알아보세요. - [为什么要在细胞生物学中控制剪切应力?](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/why-control-shear-stress/) - 了解为什么在体外重现可控剪切应力对于更好地模拟体内条件至关重要。 - [마이크로유체칩: 작동 원리 및 올바른 칩 선택 방법 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/choosing-a-microfluidic-chip/) - 마이크로유체칩을 선택하거나 제작할 때는 최종 용도를 고려하는 것이 매우 중요합니다. 올바른 마이크로유체칩을 선택하는 방법에 대한 전체 가이드를 확인해 보세요. - [微流控芯片:工作原理及选型指南 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/choosing-a-microfluidic-chip/) - 在选择或制造微流控芯片时,至关重要的是要考虑最终应用。阅读我们的完整指南,以选择合适的微流控芯片。 - [微流控在药物递送中的应用:精准医学新时代 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/microfluidics-drug-delivery/) - 在这篇综述中,我们将讨论微流控技术在给药领域如何推动脂质和聚合物载体的制造,以及它在微针系统中的应用,以实现高效、微创的给药。 - [약물 전달 분야의 마이크로플루이딕스: 정밀 의학의 새로운 시대](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/microfluidics-drug-delivery/) - 이 리뷰에서는 미세유체학이 약물 전달 분야에서 지질 및 폴리머 담체의 제조를 어떻게 발전시키고 있는지, 그리고 효율적이고 최소 침습적인 약물 전달을 위해 마이크로니들 시스템에 적용하는 방법에 대해 설명합니다. - [微流控技术概述:发展历程与定义 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/what-is-microfluidics/) - 在本节概述中,我们将带您领略这一变革性领域,帮助您深入理解精确流体处理的原理及其在科学探索中释放的无限可能。 - [마이크로유체역학 개요: 역사와 정의 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/what-is-microfluidics/) - 이 마이크로유체역학 개요에서는 정밀한 유체 처리와 과학적 탐구에서 무한한 가능성을 열어주는 이 혁명적인 분야를 이해하는 데 도움을 드립니다. - [세포 및 조직의 미세 피펫 흡인 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/micropipette-aspiration/) - 마이크로 피펫 흡인이 어떻게 세포 생물학 연구를 혁신하는지 알아보세요. 세포 강성 측정, 조직 긴장 매핑, 배아 생존 가능성 예측에 대한 응용을 학습하세요. 마이크로fluidics 및 생물물리학 연구자라면 반드시 읽어야 할 내용입니다! - [细胞与组织的微吸技术 ](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/micropipette-aspiration/) - 深入了解微吸技术如何推动细胞生物学的革新,掌握其在细胞刚度测量、组织张力图谱绘制以及胚胎活力预测中的关键应用。这是微流控与生物物理领域科研人员不可错过的必读资料! - [Center Partners](https://www.fluigent.com/company/microfluidics-academic-partners/center-partners/) - The Pierre-Gilles de Gennes Institute (IPGG) for Microfluidics, is a French research center dedicated to microfluidics and its applications at PSL University. - [微流控微滴生成方法](https://www.fluigent.com/zh-hans/application-expertise/微流体博客/微流控微滴生成方法/) - 在本节中,我们将介绍微流控通道中微滴的形成原理,以及不同的微滴生成模式及其优缺点。 - [체학 기술을 위한 고급 솔루션](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-omics-applications/solutions-for-omics/) - 다음은 체학 기반 실험을 향상시킬 수 있는 몇 가지 제품입니다. - [액적 생산을 위한 고급 솔루션](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-droplet-generation/solutions-for-droplet-production/) - 액적 플랫폼 FACS용 캡슐화 플랫폼 Secoya가 Fluigent의 유량 제어 장비 및 Secoya의 유화(Emulsion) 기술을 사용하여 개발 및 생산한 FACS(Fluorescence-Activated Cell Sorting)용 세포 캡슐화 플랫폼은 복잡하고 개별적인 세포를 일관성이 높은 이중 유화액에 고속으로 캡슐화하기 위한 완전한 시스템으로, 후속 분석을 위해 충분히 작은 액적( - [Microfluidic(미세유체) Droplet 생성 방법 ](https://www.fluigent.com/ko/application-expertise/마이크로유체-블로그/microfluidic미세유체-droplet-생성-방법/) - 본 섹션에서는 microfluidic 채널에서 droplet이 형성되는 원리, 다양한 생산 방식, 그리고 각 방식의 장단점에 대해 설명한다. - [Microfluidic recirculation system ](https://www.fluigent.com/microfluidic-oem/technologies/microfluidic-recirculation-system/) - Benefit from the best performance and Fluigent’s expertise for your project High performance: pressure-based flow control allows for highly responsive and stable pulseless flow Versatility: perform any protocol including injection, uni-directional recirculation, sampling, or perfusion Transportability: compactly packaged, the pressure source, pressure controllers, flow rate sensors, and fluidic paths – the entire unit can be - [Terms & Conditions of Sale](https://www.fluigent.com/legal-notices/) - FLUIGENT Okabé Bureau67 Avenue de Fontainebleau94270 LE KREMLIN BICETREFRANCE Phone: +33 (0)1 77 01 82 68Fax: +33 (0)1 77 01 82 70 Email : contact@fluigent.com 1/ Scope of the terms and conditions of sale These terms and conditions of sale (T&Cs) set forth the rights and obligations of Fluigent and Customer in connexion withthe purchase - [Non-Intrusive Flow Sensing Technology](https://www.fluigent.com/microfluidic-oem/technologies/non-intrusive-flow-sensing-technology/) - Fluigent has developed the first clibration-free and non-intrusive flow sensing technology dedicated to micro- and milli-fluidic applications. - [Non-Intrusive Flow Sensing Technology](https://www.fluigent.com/microfluidic-oem/technologies/non-intrusive-flow-sensing-technology/) - Fluigent has developed the first clibration-free and non-intrusive flow sensing technology dedicated to micro- and milli-fluidic applications. - [Non-Intrusive Flow Sensing Technology](https://www.fluigent.com/microfluidic-oem/technologies/non-intrusive-flow-sensing-technology/) - Fluigent has developed the first clibration-free and non-intrusive flow sensing technology dedicated to micro- and milli-fluidic applications. - [Brand Ambassadors](https://www.fluigent.com/company/microfluidics-academic-partners/fluigents-brand-ambassadors/) - Want to visit Fluigent’s products in your university? Contact Fluigent’s brand ambassador! - [Über uns](https://www.fluigent.com/company/about-us/) - Im schnell wachsenden Mikrofluidik-Sektor ist Fluigent ein weltweit führender Anbieter. Was ist Mikrofluidik? Mikrofluidik ist die Wissenschaft von der Manipulation und Kontrolle von Flüssigkeiten, in der Regel im Bereich von Mikrolitern (10-6) bis Pikolitern (10-12), in Netzwerken von Kanälen mit Abmessungen von zehn bis hundert Mikrometern. Diese Disziplin hat ihren Ursprung in den frühen 1990er - [회사 소개](https://www.fluigent.com/company/about-us/) - Fluigent, 빠르게 성장하는 미세유체 분야의 글로벌 리더 미세유체란? 미세유체는 수십에서 수백 마이크로미터 크기의 채널 네트워크에서 일반적으로 마이크로리터(10-6)에서 피코리터(10-12) 범위의 유체를 조작하고 제어하는 과학입니다. 미세유체 기술은 1990년대 초에 처음 등장한 이후로 기하급수적인 성장을 이루었습니다. 현재 이 기술은 생명 과학 연구와 생명 공학 분야에서 필수적인 도구로 자리잡고 있습니다. 학계 연구자와 산업계 전문가 모두에게 매우 매력적인 기술로 받아들여지고 - [关于我们](https://www.fluigent.com/company/about-us/) - Fluigent在快速增长的微流控领域处于全球领先地位 什么是微流控? 微流控是一门操纵和控制流体的科学,通常流体的量级在微升(10-6)到皮升(10-12)范围内,而流体流动通道的尺寸在几十到几百微米之间。这一学科起源于20世纪90年代初,并迅速发展。微流控技术被视为生命科学研究或更广泛意义上——生物技术领域中的一种重要工具。 对于学术研究人员和工业团体来说,这是一项非常有吸引力的技术,因为可以带来以下好处: 开发新的定制治疗方案 通过缩短时间和降低成本,加速新药和疫苗的发现 减少动物试验 对环境影响较小 在微观尺度上再现活体人体器官的机械特性 Fluigent独特的解决方案提供了更优的控制性、自动化、精确性、易用性。 我们的愿景 改善日常的现实问题,让世界变得更安全,让生命因加速发展的科学进步和探索而受益 我们的发展故事 Fluigent公司于2005年由巴黎居里研究所的研究人员创立。Fluigent是率先将压力驱动式流量控制设备引入微流控研究市场的公司,此设备与传统的注射泵和蠕动泵截然不同。 我们的价值观 创新 作为微流控领域的先驱,Fluigent已经设定了微流控的标准,并努力走在该学科的前沿。创新是公司业务的核心,无论是在产品还是过程方面,都是如此。 以客户为中心 除了产品性能,Fluigent还注重产品的易用性,并提供最高水平的技术支持以优化客户体验。我们的专门团队可以随时为您提供帮助,并且承诺在24小时内进行回复。 团队合作 我们来自不同的背景和文化,但作为一个团队共同成长。我们的团队充分利用工程和商业方面不同的观点,开发出符合客户需求的高质量和创新型产品。 Fluigent遍及世界各地 Fluigent在全球范围内设有办事处和分销商,其中包括欧洲、北美、亚洲和中东地区,公司70%的营业额通过出口实现。2021年,Fluigent在亚洲市场取得强劲增长,展示了其跨越国界发展的雄心抱负 - [工业应用](https://www.fluigent.com/microfluidic-oem/applications/) - 借助尖端技术,我们可以为您简化OEM集成过程。 探索液体处理自动化方面的OEM应用。 - [Unternehmen](https://www.fluigent.com/company/) - Über uns Die mikrofluidischen Labore und die Industrie stießen auf Herausforderungen bei der Durchführung ihrer Forschungen und der Entwicklung von Geräten, die das erforderliche Maß an Flusssteuerung und Präzision aufweisen. Fluigent war das Vorreiterunternehmen, das dieses Hindernis durch die Einführung einer innovativen Technologie löste: Druckpumpen. Fluigent bietet eine breite Reihe von Lösungen für den Einsatz in - [智能微流控技术](https://www.fluigent.com/) - 研究 & 工业 Fluigent独特的解决方案,可广泛应用于微流控和纳米流控中,从而提供更优的控制性、自动化、精确性、易用性。如果您正在寻求替代高精度注射泵或其他传统仪器的设备,我们提供的现代微流控系统和组件可助您提高生产力。 我们创新的压力微流控控制器与芯片实验室设备和多种微流控技术兼容,可助您专注科学而不是设置。 实现工业应用中流体处理自动化的方法。 根据压力和微流控知识和专业技能,我们可提供组件、集成和按需选择的工程服务。 研究 工业 合作优势 微流控实验室和业界正致力于研究和开发出达到流体控制水平和精度要求的设备。 Fluigent公司是第一家通过引入创新技术(压力泵)来解决这一问题的公司。Fluigent独特的解决方案,可广泛应用于微流控和纳米流控中,从而不仅可以更优的控制性、自动化、精确性、易用性来完全控制流速,还能将污染降到最低。 Fluigent已向全球数百家客户提供了数千套获得专利的压力流量控制器系统 关于我们 10 国籍 60 遍布全球的员工 20 专利 2 子公司 12 分销商 公司新闻 - [微流控OEM](https://www.fluigent.com/microfluidic-oem/) - Over the past 15 years, we’ve provided more than 3,000 microfluidic OEM modules and Fully integrated systems to businesses worldwide. - [미세유체OEM](https://www.fluigent.com/microfluidic-oem/) - Over the past 15 years, we’ve provided more than 3,000 microfluidic OEM modules and Fully integrated systems to businesses worldwide. - [公司](https://www.fluigent.com/company/) - 关于我们 微流控实验室和业界正致力于研究和开发出达到流体控制水平和精度要求的设备。Fluigent公司是第一家通过引入创新技术(压力泵)来解决这一问题的公司。Fluigent独特的解决方案,可广泛应用于微流控和纳米流控中,从而不仅可以更优的控制性、自动化、精确性、易用性来完全控制流速,还能将污染降到最低。 研究实验室可以将这些现成仪器广泛应用于流体控制至关重要的领域中。此外,工业公司还可以通过整合Fluigent的技术来增强和改进其产品。 了解更多 了解我们的团队 我们的团队成员来自世界各地,拥有不同的背景,每天都热衷于解决各种挑战。了解团队创建产品背后的精彩故事 了解更多 公司新闻 公司活动 Fluigent在微流控行业拥有强大的影响力。我们参加了各种重要会议,展示了各种最新的产品和应用。此外,我们还举办自己的微流体研讨会和网络研讨会。 随时向我通报即将举行的活动 - [회사](https://www.fluigent.com/company/) - 회사 소개 미세유체 연구실과 업계에서는 유체 제어 측면에서 요구되는 수준과 정밀도로 연구를 수행하고 장비를 개발하는 데 어려움을 겪고 있었습니다. 압력 펌프라는 혁신적인 기술을 도입하여 이 문제를 해결한 최초의 회사가 바로 Fluigent였습니다. 미세유체 및 나노유체 분야에 사용할 수 있는 Fluigent 고유의 광범위한 솔루션은 보다 뛰어난 제어, 자동화, 정밀도, 사용 편의성으로 유량을 완벽하게 제어하고 오염을 최소화합니다. 연구실에서는 - [스마트 미세유체](https://www.fluigent.com/) - 연구 & 산업 미세유체 및 나노유체 분야에 사용할 수 있는 Fluigent의 광범위한 솔루션은 보다 뛰어난 제어, 자동화, 정밀도와 사용 편의성을 제공합니다. 고정밀 시린지 펌프 또는 다른 기존 기기의 교체를 원하는 경우 생산성을 높여주는 최신 미세유체 시스템 및 구성요소를 제공합니다. 당사의 혁신적인 압력 기반 미세유체 제어기는 랩온어칩 장치 및 다양한 미세유체 기술과 호환되므로 설정이 아닌 과학에 - [OEM 응용분야 ](https://www.fluigent.com/microfluidic-oem/applications/) - Fluigent의 최첨단 기술을 통해 OEM 통합 프로세스를 간소화할 수 있습니다. 액체 취급 자동화를 위한 OEM 응용분야를 살펴보세요. - [OEM 기술​](https://www.fluigent.com/microfluidic-oem/technologies/) - 당사는 전자, 기계, 공압, 소프트웨어, 유체 분야의 지식을 결합하여 현재 시장의 요구에 대응하는 동급 최고의 솔루션을 제공합니다. - [OEM技术](https://www.fluigent.com/microfluidic-oem/technologies/) - 我们结合电子、机械、气动、软件和流体学方面的知识,以符合当前的市场需求,并提供一流的解决方案。 - [미세유체 연구 장비](https://www.fluigent.com/research/) - 어떤연구응용분야가가능한가요? 당사의 미세유체 연구 장비는 모든 연구 분야에서 최적화되고 유망한 결과를 도출할 수 있도록 해줍니다. 미세유체 분야에서 당사의 제품은 높은 재현성을 가진 실험을 수행할 수 있게 해줍니다. 미세유체 칩이나 장치와 같은 마이크로미터 채널 내부의 흐름의 물리학과 근본적인 거동을 분석하기 위해서는 정밀한 유체 제어가 중요합니다. Fluigent의 미세유체 기술 전문성에 대해 자세히 알아보기 Fluigent 미세유체 제품 제안에 - [微流控研究设备](https://www.fluigent.com/research/) - Fluigent develops, manufactures and supports the most advanced fluid control systems available for microfluidics. Discover our Microfluidic Research Equipment. - [Mikrofluidik für hohe Flusskontrolle](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-hohe-flusskontrolle/) - Wie funktioniert die Mikrofluidik? Die Mikrofluidik befasst sich mit der sehr präzisen Steuerung von Flüssigkeiten auf kleinstem Raum und Volumen. Mikrofluidik-Chips sind Geräte, die in mikrofluidischen Studien verwendet werden und in denen Mikrokanäle geformt oder gemustert wurden. Die Mikrokanäle sind so miteinander verbunden, dass Flüssigkeiten durch die verschiedenen Kanäle fließen und sich von einem Ort - [Mikrofluidik für die Tröpfchenerzeugung](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-die-troepfchenerzeugung/) - Was sind Emulsionen und Tröpfchen? Eine Emulsion ist ein heterogenes System, das aus mindestens einer nicht mischbaren Flüssigkeit besteht, die in einer anderen in Form von Tröpfchen dispergiert ist. Wenn nicht emulgiert wird, werden die beiden Flüssigkeiten getrennt, wobei die weniger dichte Phase auf der dichteren Phase liegt. Salatdressings sind gängige Beispiele für Emulsionen. In - [Mikrofluidik für Organ-on-Chip-Anwendungen](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-organ-on-chip-anwendungen/) - Was sind Organ-on-Chip? Bei der Organ-on-Chip (OOC)-Technologie (Abbildung 1) werden Funktionen oder Krankheiten auf der Ebene menschlicher Organe mit Hilfe von Zellen (in 2D oder 3D) oder Gewebeschnitten in einem mikrofluidischen Chip nachgebildet. Die Mikrofluidik ermöglicht eine präzise Kontrolle der zellulären Umgebung und bietet den Zellen genauere mechanische und biochemische Hinweise (1). Durch die Manipulation - [Mikrofluidik für Omics-Anwendungen](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-omics-anwendungen/) - Was sind Omics? "Omics" bezieht sich auf Disziplinen, die sich mit der umfassenden Analyse biologischer Makromoleküle in einer Zelle, einem Gewebe oder einem Organismus befassen. Diese Disziplinen beinhalten die Analyse verschiedener biologischer Komponenten in großem Maßstab, typischerweise auf molekularer Ebene, um ein umfassendes Verständnis biologischer Systeme zu erlangen. Diese umfassende Analyse erfordert den Einsatz spezifischer - [Mikrofluidische Forschungsgeräte](https://www.fluigent.com/research/) - Fluigent develops, manufactures and supports the most advanced fluid control systems available for microfluidics. Discover our Microfluidic Research Equipment. - [OEM Industrielle Anwendungen​](https://www.fluigent.com/microfluidic-oem/applications/) - [OEM Technologien](https://www.fluigent.com/microfluidic-oem/technologies/) - Mit unseren Spitzentechnologien erleichtern wir Ihnen den OEM-Integrationsprozess. Entdecken Sie die Technologien, die wir für unsere Kunden entwickelt haben. - [Nachrichten](https://www.fluigent.com/company/news/) - [About us](https://www.fluigent.com/company/about-us/) - In the rapidly growing microfluidic sector, Fluigent is a global leader What is microfluidics? Microfluidics is the science of manipulating and controlling fluids, usually in the range of microliters (10-6) to picoliters (10-12), in networks of channels with dimensions from tens to hundreds of micrometers. This discipline takes its origins in the early 1990’s and - [Mikrofluidik OEM](https://www.fluigent.com/microfluidic-oem/) - In den letzten 15 Jahren haben wir mehr als 3.000 mikrofluidische OEM-Module und vollständig integrierte Systeme für Unternehmen weltweit geliefert. - [최고의 유체 제어 시스템을 위한 미세유체 압력 컨트롤러 비교 ](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controller-comparison/) - 적합한 미세유체 흐름 제어 시스템 선택 방법 미세유체 기술은 학술 연구에서 생명 과학, 화학, 식품 분야의 다양한 응용 분야에서 널리 사용됩니다. 이 기술은 분석 장치 및 생물반응기 산업에서도 점점 더 인기를 끌고 있고, 새로운 수준의 분석을 제공하며 더 신뢰할 수 있는 결과를 도출하고 시약 소비를 최소화하는 등 여러 이점을 제공합니다. 오늘날 널리 사용되는 확장된 응용 - [미세유체 응용 분야에서 OEM 시린지 펌프보다 OEM 압력 컨트롤러를 선택해야 하는 5가지 이유 ](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controllers-vs-oem-syringe-pumps/) - 1. 비교할 수 없는 성능을 위한 압력 제어 안정적이고 정밀한 유량과 빠른 안정화 시간을 가진 것은 종종 액적 미세유체학, 약물 스크리닝, 세포 분석 또는 세포생물학 및 현미경 검사를 위한 동적 세포 배양과 같은 미세유체 및 밀리유체 응용 분야에서 필수적입니다. 향상된 안정성과 안정화 시간을 위한 압력 제어 안정적이고 정밀한 유량과 빠른 안정화 시간을 가진 것은 종종 - [Fortschrittliche Lösungen für die Organ-on-a-Chip-Forschung   ](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-organ-on-chip-anwendungen/losungen-organ-on-a-chip/) - Flow-EZ Druckflussregler Der Flow EZ stellt eine innovative Lösung für die präzise Handhabung von Flüssigkeiten dar. Dieser druckgesteuerte Durchflussregler wurde für eine nahtlose Integration und präzise Steuerung entwickelt und bietet eine unvergleichliche Vielseitigkeit und Zuverlässigkeit im Fluidmanagement für verschiedene Anwendungen, insbesondere für Zellkultur- und Organ-on-a-Chip-Anwendungen. Mit seiner benutzerfreundlichen Oberfläche und seinem kompakten Design vereinfacht der - [체학응용분야를위한미세유체](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-omics-applications/) - 체학이란무엇입니까? 체학(Omics)은 세포, 조직 또는 유기체 내의 생물학적 거대분자의 포괄적인 분석에 초점을 맞춘 학문을 의미합니다. 이러한 분야는 생물학적 시스템을 종합적으로 이해하기 위해 일반적으로 분자 수준에서 다양한 생물학적 구성 요소를 대규모로 분석하는 작업을 포함합니다. 이러한 포괄적인 분석을 위해서는 생물학적 실험과 생물정보학 접근법을 통한 데이터 분석을 위한 특정 도구를 사용해야 합니다. 다음은 몇 가지 주요 체학 - [액적생성을위한미세유체기술](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-droplet-generation/) - 유화액과 액적이란 무엇입니까? 유화액은적어도하나의비혼화성액체가다른액체에액적형태로분산된이질적인시스템입니다. 유화되지 않으면, 밀도가 낮고 상이 밀도가 높은 상 위에 위치하게 됩니다. 샐러드드레싱은유화액의흔한예시입니다. 수성상(식초)과 유성상(올리브 오일)으로 이루어진 비네그레트는 유화되지 않으면 두 상이 분리됩니다. 비네그레트 병을 흔들면 식초가 기름진 연속상으로 분산되어 유화액을 만들 수 있습니다. 유화액에서는한액체(분산상이라고함)가다른액체(연속상이라고함)로분산됩니다. 오일 액적 속의 물 유화액의 일반적인 응용 분야는 무엇입니까? 고분자 내 생체분자 캡슐화 [1] 제약: 유화액은 정맥 - [정밀 유체 제어를 위한 미세유체 솔루션 ](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-high-flow-control/microfluidic-solutions/) - 미세유체 압력 기반 유량 컨트롤러 Fluigent는 미세유체 내에서 유체를 처리하기 위한 미세유체 압력 기반 유량 컨트롤러를 도입한 최초의 회사입니다. 압력 구동식 유량 제어 시스템에 의한 유체 작동은 시료가 들어 있는 저장소를 가압하여 미세유체 장치에 빠르게 주입하는 것으로 구성됩니다. 특허받은 FASTABTM 기술을 기반으로 하는 당사의 컨트롤러는 안정적이고 흔들림 없는 유량을 보장하여 실험의 정확성과 재현성을 향상시킵니다. 압력을 - [고유량제어를위한미세유체](https://www.fluigent.com/ko/microfluidic-research-equipment/microfluidics-for-high-flow-control/) - 미세유체는어떻게작동하나요? 미세유체는 작은부피와공간을사용하여매우정밀한유체제어를 다룹니다. 미세유체 칩은 미세채널이 성형되거나 패턴화된 미세유체 연구에 사용되는 장치입니다. 마이크로채널은유체가서로다른채널을통과하여 한 위치에서 다른 위치로 이동할 수 있도록 연결됩니다. 이 네트워크는 입구 및 출구 포트를 통해 외부 환경과 연결됩니다. 액체또는가스는수동방식또는외부능동시스템(압력컨트롤러, 시린지펌프또는연동펌프)을사용하여미세유체칩에서주입, 관리또는제거됩니다. 채널은 일반적으로 5~500μm 범위의 다양한 내경을 가질 수 있으며, 해당 네트워크는 사용될 응용분야와 수행될 분석에 맞게 특별히 설계되어야 합니다. 따라서 - [先进的组学技术解决方案 ](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-omics-applications/solutions-for-omics-technology/) - 自动顺序注射系统:Aria Fluigent推出了Aria,这是我们专为实现精确细胞灌注或定时注射方案设计的自动顺序注射系统。借助Aria,用户可以按照个性化方案,将最多10种不同的溶液自动输送到腔室或微流控芯片中。 在对培养细胞进行长期成像时,保持受控的环境条件至关重要。Aria有助于实现培养基的连续流体流动注射,确保细胞获得最佳生理条件。持续供应的营养物质和受控的pH值可打造理想的环境,同时防止细胞碎片积聚。 我们的多功能流体注射系统可最大限度地减少细胞上的剪切应力,支持在多种流体之间进行无缝切换,并确保培养基在压力变化时仍能持续流动。附加组件(包括流量传感器)可保证精确控制流速并顺畅执行培养基切换。 Aria Datasheet Aria的特点 输送最多10种溶液:Aria功能多样,支持在较长周期内输送40 µL到数百mL不等的剂量。Aria的软件可为用户提供重要信息,包括每种溶液的精确输送时间。此外,它还会通知用户每个储液瓶无缝执行方案所需的最小剂量。 方案自动化:借助Aria的用户友好型软件,用户只需点击几下即可轻松设计方案。操作人员可以为注射方案的每个步骤定义培养时间、流速和滴定剂量等参数。可对方案进行记录,以方便用户之间共享。 减少差异性:使用移液管时,通常会观察到5.1%的操作人员内在差异性和8.1%的操作人员之间差异性,与这两个数字相比,Aria可大幅减少实验之间的差异性(达到0.5%左右),这是一项重大改进。 保持样本的完整性:样本无污染风险,在整个方案中均采用无接触处理方式,从而减少了手动处理造成污染的可能性。 成像研究的理想选择:Aria可通过TTL信号与不同的显微镜同步。凭借此功能,该设备能够发送和接收TTL信号,从而启动成像周期或在成像周期完成后恢复Aria注射方案。 Aria双开关与M开关 用户可以将Aria与各种开关阀组合使用,无论想要灌注一个通道还是多个通道,都能够实现。通过使用2个开关,可以灌注一个通道,通过使用M开关,可以灌注最多9个通道。流体流速范围为3.2 µL/min到1 mL/min,具体取决于所使用的流量单位。 Aria集手动移液优势和一体化系统功能于一体,专用于一种特定应用,还集成了显微镜、特定芯片类型和一套特定的解决方案。任何需要多种溶液输送的方案都可以实现自动化,与手动程序相比,这既节省了科学家的时间,又减少了实验之间的差异性。 使用Aria的应用示例 在该研究中,Radtke等人(1)展示了我们的自动顺序灌注系统ARIA的自动化功能。他们展示了该系统与宽场显微镜的顺畅同步,以实现自动化和多重抗体标记。ARIA通过发送和接收TTL信号展现了多功能性,启动图像采集周期,并在完成后恢复灌注方案。 这种强大的技术利用迭代染色和漂白方法来实现高分辨率成像,支持评估超过65个参数。这一方法被称为迭代漂白扩展多重性(IBEX)方案,提供了一种可靠且一致的方法,用于在复杂的组织(如健康器官、感染器官或肿瘤微环境)内进行全面的细胞分析和空间检查。 图2和图3显示了使用自动化IBEX方法在人体组织内获得的一些图像示例。 图2:人类空肠图像(六个周期,显示了24个参数中的16个)。标尺:200 µm(左)、50 µm(青色框)、25 µm(红色框)(1)。 图3:人体皮肤图像(五个周期,显示了19个参数中的15个)。标尺:200 µm(左)、25 µm(插图)。角蛋白10(K10)、角蛋白14(K14)(1)。 此外,ARIA的自动化还可扩展到各种应用,如DNA-paint、OligoSTORM、剂量/反应研究、自动多重免疫荧光实验或动态脉冲追踪实验,为各种实验场景提供自动化解决方案。 Aria Datasheet 细胞成像腔室:FCS2 FCS2是一种即用型多功能解决方案,专用于进行精确的微环境控制,具有与各种显微镜技术兼容的精确温度和流量调节功能。该系统集成了具有高N.A.兼容性、均匀温度控制的显微流动吸收池和可定制的样本区域,专为倒置显微镜而设计。 FCS2腔室的特点 成像兼容性:该系统与所有显微镜模式兼容,从而确保其在应用方面的多功能性,特别适合用于高分辨率成像,可实现最佳性能。 全面流量控制:确保光学腔内部的体积得到精确管理。该系统提供层流或可定制的流动模式。用户可根据自己的需求全权决定流道的剖面和剪切应力。 温度控制:温度控制保持在0.2度的窄幅范围内。这是唯一一个能够覆盖整个试样平面的均匀温度控制腔室。该系统具有高效快速的温度稳定能力。此外,它还提供高于和低于环境条件的温度调节功能。 细胞成像:该系统适用于贴壁细胞、组织或悬浮细胞,具有处理不同类型样本的多功能性。 使用Aria的应用示例 我们与Samy GOBAA(巴斯德研究所生物材料和微流控部门主任)和Heloïse Mary(BMcf研究工程师)合作,推出了一套新型自动免疫荧光(IF)方案,该方案集成了先进的自动顺序注射系统(ARIA)和Bioptechs FCS2成像腔室。 图 4:使用Aria和FCS2腔室的自动免疫荧光实验方案设置。 图5:用Phalloidin-AF488对人脐静脉内皮细胞(HUVEC)进行染色以实现F-肌动蛋白可视化,用UEA1-lectin-DyLight作为内皮细胞膜标记,用DAPI进行细胞核染色。 我们展示了采用ARIA和FCS2成像腔室进行自动免疫荧光程序的优势(图5)。我们的研究表明,这种方法大幅缩短了处理时间,仅需4小时30分钟即可完成该程序。与传统的手动移液方法(通常需要最长6小时)相比,这可节省大量时间。 自动化这一过程使研究人员能够同时处理多项任务,从而优化其时间和资源。此外,这种适应性强的方案适用于盖玻片上的细胞以及微流控芯片中的细胞或组织,成为推进细胞和分子生物学研究的宝贵工具。 References Radtke, A.J., Chu, C.J., - [面向组学应用的微流控技术](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-omics-applications/) - 什么是组学? “组学”是指专注于对细胞、组织或生物体内的生物大分子进行全方位分析的学科。 这些学科需要大规模分析各种生物组分(通常在分子水平),以获得对生物系统的全面了解。这种全方位分析需要使用特定的工具,以便通过生物信息学方法进行生物实验和数据分析。 下面是一些主要的组学学科: 基因组学:研究生物体的完整DNA组(基因组),以了解其结构、功能、变异以及基因之间的相互作用。 转录组学:研究细胞内的RNA分子,包括其类型、丰度和基因表达模式的变化。 蛋白质组学:研究细胞内的整个蛋白质组,分析其功能、结构、修饰、相互作用和丰度。 代谢组学:分析参与细胞代谢的完整小分子或代谢物组,深入了解代谢途径和生理变化。 表观基因组学:探索DNA序列之外的因素(如DNA甲基化和组蛋白修饰)引起的基因表达修饰和改变。 宏基因组学:专注于研究直接从环境样本中回收的遗传物质,深入了解微生物群落及其遗传多样性。 组学分析方法将从根本上改变生命科学领域的研究。这些方法能够评估单个细胞的基因组、转录组或蛋白质组,而不是评估细胞群内的平均状态,这标志着癌症生物学、神经科学、神经干细胞治疗等各个领域的重大飞跃。 图1:“组学革命”–一种综合性的“组学”方法,结合了基因组学、转录组学、蛋白质组学、代谢组学和代谢流组学,可促进系统科学以及人类疾病的诊断和治疗的进步(1)。 组学学科领域使用的主要技术 这些组学学科推动了先进技术和高通量技术的发展,以生成大规模数据集。通过整合和分析这些数据集,研究人员可以了解复杂的生物过程和疾病机制,识别生物标志物,并为个性化医疗和靶向治疗创造条件。 组学技术得到了广泛使用,并且因所探索的特定组学领域而异。 PCR(聚合酶链反应):用于基因组学,可成倍增加特定的DNA序列,从而对其进行分析和识别。 下一代测序(NGS):用于基因组学和转录组学,可对DNA和RNA进行测序,从而能够对基因组、基因表达、突变和变异进行大规模分析。 质谱(MS):用于蛋白质组学和代谢组学,可识别和量化样本中的蛋白质或代谢物,从而深入了解其结构、修饰、相互作用和浓度。 成像技术:应用于各个领域,用于可视化细胞或组织内的分子结构或分布,例如荧光显微镜、电子显微镜和成像质谱。 微阵列:用于基因组学和转录组学,可同时分析数千个基因或RNA的表达水平,从而实现基因表达模式的高通量筛选和比较。 色谱分析:用于代谢组学,可根据其化学性质分离和分析复杂的代谢物混合物,有助于其识别和定量分析。 生物信息学工具:对于处理、分析和解释组学技术生成的大量数据至关重要,涉及计算分析、统计建模和数据整合。 图2:微管相关蛋白2(绿色)和细胞核(蓝色)染色的神经元细胞免疫荧光。图像是在Nikon共焦显微镜上以10倍放大倍率拍摄的。 这些技术不断发展并与先进技术融合,有助于全面了解生物系统并推动生命科学领域的创新。 精确的流体处理和Fluigent对组学领域的贡献 组学领域的革命很大程度上归功于基于微流控的技术,这些技术通常需要将细胞分离成液滴、微通道或微孔,然后再进行首选的组学分析。 精确的流体处理是涉及DNA、RNA、蛋白质和代谢物的各种分析过程的基础。其对于样本制备等步骤至关重要,因为这些步骤需要准确移液、稀释和混合样本。如果将自动化和精确的流体处理相结合,则有利于实现基因组学、转录组学和蛋白质组学所使用的高通量筛选,从而能够有效地处理大量样本。 总体而言,确保样本制备、分离和分析的准确性和可重现性对于生成可靠的数据至关重要,这对在分子水平上理解生物系统做出了重大贡献。 在Fluigent,我们的核心使命是通过提供一系列致力于促进该领域进步的产品,推动科学前沿的发展,尤其是在充满活力的组学技术领域。 点击此处了解我们的产品。 References Nielsen J, Oliver S. The next wave in metabolome analysis. Trends Biotechnol. 2005;23:544-6. Medline:16154652 doi:10.1016/j. tibtech.2005.08.005 - [液滴生产的先进解决方案](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-droplet-generation/solutions-for-droplet-production/) - 液滴平台 FACS封装平台 Secoya采用Fluigent流量控制设备和Secoya乳剂技术开发和制造的FACS细胞封装平台(荧光激活细胞分选)是一个完整的系统,可在足够小( - [面向高流量控制的微流控技术](https://www.fluigent.com/zh-hans/microfluidic-research-equipment/microfluidics-for-high-flow-control/) - 微流控的工作原理是什么? 微流控需要非常精确的流体控制,同时使用较小的体积和空间。微流控芯片是微流控研究中所使用的设备,其中的微通道已经过模制或图案化设计。微通道相互连通,支持流体流经不同的通道,从一个位置流动到另一个位置。该网络通过进口和出口连接到外部环境。使用被动方式或外部主动系统(压力控制器、注射泵或蠕动泵)、管理或从微流控芯片中去除流体或气体。 通道可能具有不同的内径(通常范围为5到500 μm),并且其网络必须针对要进行的应用和分析进行专门设计。因此,微流控芯片支持在单个微型设备中集成多种功能,这些功能通常需要整个实验室才能实现。 微流控芯片示例 流体在微米尺度下会发生哪些变化? 在微米尺度下,流体的行为会发生变化并呈现多个优点:快速导热、增加表面体积比、层流和可能的扩散混合。此外,微流控可显著减少样本和试剂消耗、缩短实验时间并降低应用的总体成本。 得益于微电子学的发展和晶体管的微型化,这一概念被引入生物医学和化学领域,并推出了“芯片实验室”(LoC)原理和“微型全分析系统”(μTAS)。1979年,S.Terry等人开发出一种硅基芯片,实现了气相色谱仪功能的微型化,这是微流控芯片的早期示例。 自这一开创性产品问世以来,微流控技术经历了爆炸式的增长,成为学术研究人员和工业集团不可或缺的工具。 微流控技术的发展 微流控技术有哪些优点? 微流控技术的优点 [1] 微流控技术的关键概念是将通常需要整个实验室才能完成的操作整合到一个简单的微型系统中。目前,得益于设备的紧凑尺寸,微流控系统以复用技术取代了传统的放大技术,这显著缩短了从配方到生产所需的时间。因此,微流控技术不仅可用于分析目的,还可用于过程工业的大规模生产,特别是精细化工、食品、环境和制药业。近年来,微流控设备也作为分析工具广泛应用于生物化学和分子生物学应用领域。 微流控系统还提供卓越的数据质量和改进的参数控制,在保持性能的同时,实现过程自动化。该系统只需少量样本操作,即可对样本进行处理和分析。微流控芯片与流体处理系统的结合经过精心设计,并加入自动化技术,即使用户专业知识水平不高也能生成多步反应,,且具备多种功能。 例如,与传统方法相比,微流控技术提高了水分析的灵敏度,能够检测出较低浓度的污染物。分析时间大幅缩短,可以进行实时监测并提高效率,同时使用少量样本以防止水浪费。 此外,由于微流控技术能够满足高质量且受到严格监管的医疗产品的需求,因此预计该技术将在未来的纳米医药生产、治疗产品给药及诊断中发挥重要作用。 如何发挥微流控技术的这些优势。 在微流控技术中,若想成功执行微流控实验,掌握各种微米尺度的流量控制技术变得愈加重要。要生成可靠且可再现的数据,需要精确控制流量参数:例如,系统中应用的流速将定义产生的液滴尺寸,或对细胞产生特定的剪切应力,从而影响其生长、空间组织和蛋白分泌。应用于系统的流速误差会导致出现多分散液滴、系统不稳定、细胞受损,甚至造成实验失败。因此,全面可靠的流量控制对于任何微流控系统都至关重要。 微流控中用于输送流体的最常用系统是什么? 注射泵 注射泵适合小剂量注射,但其精度不如压力泵,特别是在非常低的流速下,精度更低。市面上的产品质量各异,价格不一。 在微流控流量控制装置中,注射泵基于由步进电机驱动的机械系统,该系统以精确的速率推动注射器,具有较宽的流速范围。但是,机械驱动会产生流量脉动,并且响应时间和沉淀时间较长,特别是在存在气泡、黏性流体和柔性管路的情况下。此外,系统内的实际流速不受监控,如果由于泄漏、堵塞或不正确的设置而未达到流速命令,则可能产生结果偏差。压力也不受控制,如果微系统堵塞,压力就会上升到会造成损坏的水平。文本建议用户定期检查堵塞情况,特别是在使用微粒时,并在自动化实验时了解该技术的潜在限制。 注射泵响应时间图 蠕动泵 蠕动泵送过程基于软管的压缩和放松。旋转滚轮沿着安装在泵内的管路滚动并压缩管路,在其中形成真空并吸取流体。 这种流体驱动方法可用于微流控实验室且相当经济实惠。 在微流控流量控制装置中,蠕动泵选件非常适合大流量和高流速,也适用于流体再循环。但是,压缩管道会引起流动脉冲,这不适合大多数微流控应用,这类应用的流量精度至关重要。 此外,应定期更换软管,防止软管损坏。 压力控制器解决方案 压力驱动式流量控制器的流体驱动方法包括对装有样本的储液瓶进行加压,然后将其快速注入微流控设备中。这种储液瓶的尺寸多种多样,选择范围涵盖1.5/2ml的Eppendorf管到15/50ml的Falcon小瓶,甚至有几百毫升的大瓶。 为了实现微流控流量控制,受控气体压力会推动流体,然后流体经储液瓶出口流出。由于气压控制器具有出色的调节功能,这些系统可以实现从亚纳升/分钟到几十毫升/分钟的高度稳定的流速。 了解我们的微流控产品和解决方案 Fluigent的MFCS和FLOW EZ压力控制器 Fluigent具有MFCS-EZ™和LineUp™压力驱动式控制器,其分辨率低至7×10-3 bar。例如,我们所有系列产品的稳定时间最低为100ms,分辨率为满量程(压力传感器分辨率)的0.03%,测量值的稳定性变异系数为0.1%。 如果流量传感器已与压力控制器连接,则用户可以直接控制流速。将通过强大的算法(例如Fluigent OxyGEN)对压力进行调节。此外,通过与压力控制器连接的阀可以实现流体再循环。 压力泵的另一个优点是用户只用一个压力通道即可对多个储液瓶加压。如果您想按顺序注射不同的溶液,这可以显著降低设置成本。凭借这些优点,我们的压力式流量控制器适用于对参数(尺寸、混合、流速等)的控制和精度要求较高的应用。并在与液滴生成、ddPCR、细胞培养和细胞灌注、器官芯片研究以及纳米粒、微胶囊和微珠合成相关的实验中提供了出色的结果。 了解我们的微流控产品和解决方案 Reference 1- Bahnemann, J.; Grünberge, A. Microfluidics in Biotechnology: Overview and Status Quo. Advances in - [比较微流控压力控制器,选择您最理想的终极流体控制系统 ](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controller-comparison/) - 如何选择正确的微流控系统 微流控技术在生命科学、化学和食品等领域的学术研究中得到了广泛应用,并逐渐在分析设备和生物反应器行业越来越受欢迎,因为该技术提供全新的分析水平,并带来了诸多好处,包括更可靠的结果以及减少试剂消耗。 目前流行的规模化应用包括用于细胞生物学、精细灌注和器官芯片研究的微流控技术,或用于生物封装(数字PCR、类器官)的液滴微流控技术。 工业流体控制的优势 在微流控领域,流量控制对于获得可靠结果至关重要。市场上有多种技术可供选择,包括注射泵、蠕动泵和压力控制器。 与注射泵相比,压力控制通常提供更高的性能和可靠性,因此是微流控领域的首选技术。然而,市场上所有可用的压力控制器并不相同,其中一些不适合微流控。 每种类型都有其自身的特性和功能,满足不同的预算限制和研究要求。根据用户需求,有的用户会优先考虑更高的性能和可靠性,这通常意味着更高的成本,而另一些用户则会在预算有限的情况下,选择性能有所降低的设备。 在众多的压力控制器和调节器中,哪一种是最适合微流控的压力控制器? 有哪些不同的压力控制器? 我们确定了市场上3种不同类型的压力控制器供用户选择,并从成本效益和质量方面对它们进行了比较。 经济型压力控制器是最基本、最实惠的选择,与中端和高端选项相比,其性能通常较低。 中端型压力控制器在价格和性能之间提供一种平衡。与经济型压力控制器相比,性能有所提升,但仍然发现 高端型压力控制器,顾名思义,兼具最高水平的准确度和稳定性。这些设备专为精度和可靠性极为重要的应用而设计,通常用于微流控领域中。这里使用的压力控制器是Fluigent Flow EZ和F-OEM 首先,我们在性能(准确性、稳定性、响应时间)方面比较了这 3 种压力控制器,接下来重点关注可用性和集成能力。我们最后讨论了每种设备能够实现的应用。 根据性能选择压力控制器 选择压力控制器时,常见做法是比较产品技术文档(如产品数据表或用户手册)上列出的规格。有几个重要参数需要考虑,如产品准确度、重复性或响应时间。 虽然这是筛选明显不符合规格产品的好方法,但过程复杂,因为一些生产商根据构成压力控制器的传感器或阀门给出规格,而其他生产商则倾向于提供基于实际测试的数据。 除了规格之外,压力控制器的总体性能还取决于其调节算法。事实上,基本的压力控制器仅提供基于电压的模拟通信,而有些高级控制器可以提供PID控制器,支持提供实时反馈回路并根据压力传感器反馈调整压力。这最终会影响压力稳定性、准确度、响应时间和压力转换。 我们在这里根据准确度、响应时间和压力转换经济型、中端型和高端型压力控制器(压力范围为0至1 bar)进行微流控压力控制器比较。 探讨您的压力控制器的精确度和稳定性 准确度是选择压力控制器时要考虑的关键因素。压力控制器的高准确度可确保达到所需的压力设定值。此外,压力稳定性是选择压力控制器时要考虑的一个关键因素,因为许多应用都依赖于稳定的加压过程。 我们通过设定750 mbar的压力,使用外部校准压力传感器进行测量,并保持设定的750 mbar压力超过10小时,来执行准确度和稳定性分析。 通过这种方法,我们能够了解设备在连续运行条件下的表现,并检测任何仅在长时间运行期间才会显现的漂移或稳定性问题。 图1:使用经济型、中端型和高端型压力控制器进行准确度和稳定性比较 图1显示了经济型、中端型和高端型压力控制器的压力准确度和稳定性。从平均值可以看出,经济型和中端型压力控制器相比于750 mbar的目标值,准确度偏差超过2 mbar。这可能与两种产品均不具备实时校准功能有关,导致与目标值相比发生偏移,最终产生噪声(见图2)。 高端系统增强长期稳定性和准确度 使用高端压力控制器,平均值为749.81 mbar,偏差为+/- 0.082 mbar。高端压力控制器是最准确的设备,与目标值相比偏差小于0.2 mbar,使其成为准确度最高的产品。 我们可以在此分析的另一个参数是稳定性。我们观察到,使用经济型系统时,实验开始压力即达到 750 mbar,但不到一小时就可以观察到施加的压力发生了变化,约30分钟后变为749 mbar,几小时后变为748 mbar。我们观察到中端压力控制器也有相似的压力漂移现象,但变化幅度更小(从747.5降至747 mbar)。 使用高端压力控制器时,约749.8 mbar的压力可保持稳定超过8小时,没有显示任何漂移。此外,我们观察到长期稳定性和准确度得到提高,因为它始终保持在所需的压力范围内,并且具有值得称赞的稳定性。 响应时间:您希望以多快的速度调节压力? 响应时间是选择压力控制器时要考虑的另一个重要因素。一个性能良好的压力控制器将能够快速应对压力变化并保持稳定。 由于微流控系统中过程的精确性和细致性,压力控制器的响应时间是微流控中的一个关键因素。具有快速和准确响应时间的压力控制器可确保设定值或外部条件发生变化时,系统能够快速适应并保持所需压力,将超调或振荡降至最低。这对于维护实验或过程的完整性至关重要,因为压力调整的延迟或不准确可能会导致数据受损、流体控制无效,并可能损坏敏感的微流控组件。 我们在这里进行2次响应时间测试:压力增加(400 mbar -> 500 - [为微流控应用选择OEM压力控制器而非OEM注射泵的五大理由 ](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controllers-vs-oem-syringe-pumps/) - 1. 压力控制实现超凡性能 在微流控和毫流控应用中,如液滴微流控、药物筛选、细胞分析或细胞生物学和显微镜下的动态细胞培养,稳定精确的流速,加上快速的沉淀时间,通常是先决条件。 压力控制提升稳定性并缩短沉淀时间 在生成微流控液滴的系统中,通常需要快速沉淀时间(即输出信号达到瞬时压力变化的特定百分比,例如95%,所需的时间)以直接达到目标流速,并进而达到所需的液滴尺寸。这可以最大限度地缩短瞬态阶段,减少其中生成的液滴(可能包含昂贵的试剂或细胞)无法被利用的情况,并最终减少微流控方案的浪费和成本。另一方面,稳定的流速可确保液滴尺寸均匀,从而确保实验方案长期可靠。 A. 沉淀时间:系统中的实际流速是多少? OEM注射泵和沉淀时间 工业注射泵由一个简单的线性运动源组成,该运动源由步进电机驱动,控制活塞的驱动速度。流速可以通过活塞速度和截面直接推导出来。沉淀时间不仅取决于注射泵的机械结构,还取决于微流控系统的流体阻力。当执行或修改预设流速时,流控系统中的内部压力会增加并使其变形,而不是推动液体流动。 根据系统的流体阻力和弹性不同,沉淀时间从百分之一毫秒到几分钟不等。在工业应用中使用注射泵执行流速时,注射泵会显示预设的流速值,但不提供有关实际流速或达到该设定流速所需时间的信息。微流控设备缺乏真实流速信息是实验和方案失败的主要原因之一。 OEM压力控制器的响应时间最快 压力控制器可以对装有液体的储液瓶或罐进行加压。当使用压力控制器时,压力几乎瞬间施加到储液瓶上。 例如,Fluigent仪器中使用的阀门通常响应时间低于30毫秒,低于注射泵中使用的电机。F-OEM及其FASTAB技术等反应系统具有快速的沉淀时间。下图显示了Fluigent F-OEM压力控制器与标准注射泵配合使用的响应时间。对于大多数流控系统来说,目标压力可以在不到几秒钟的时间内达到(主要取决于压力源和相关气体流速以及要加压的气动量)。 图1:压力式流量控制器之间的响应时间 B. 精细调节的压力带来超凡的稳定性 注射泵的流量稳定性取决于其电机提供的最小机械步进。因为活塞的增量与注射量相关,所以移动量最小导致注射量最小。步进电机将在低流速下引起脉冲或振荡,这与技术有关,而不是由于外部参数。因此,市场上大多数注射泵无法达到低于0.35%的稳定性,这个数值已经是使用小容量注射器(如直径较小的注射器和约10毫升的注射器)高端注射泵所能达到的稳定性,虽然可以提高稳定性,(但不可避免会影响可以注入的体积和能够达到的最大流速)。 当使用压力控制器对储液瓶或罐加压时,样品会顺利注入微流控系统中。该技术通常利用电磁阀,可以对施加的压力进行极其精细的调节。由于没有机械部件与流体接触,压力控制器可以建立无脉冲流量,即使是最精确的注射泵也无法获得这种流量。使用Fluigent控制器,可以获得变异系数< 0.1%的压力稳定性,并为新兴应用提供新的稳定性水平。 图2:压力式流量控制器的压力稳定性 C. 通过流量传感器实现更高的液体流速准确度和调节能力:压力驱动流量控制 内置流量传感器可实现快速准确的流速监控和调节 如果想直接监测流量,可以在系统中添加液体流量传感器。流量传感器还可用于确保流控方案的正常运行,允许流量/体积监控,或者方案失败识别和预防。流量传感器可以作为压力控制器的补充,因为它们可以通过施加算法开发“反馈循环”系统,通过压力来调节流速。Fluigent提供压力式流速调节技术,得益于其获得专利的“自学习”算法,可以在实验进行时调整流速,以控制分配的样品量和/或样品流速。下图比较了Fluigent压力式流量控制和标准OEM注射泵之间的流速稳定性。通过使用我们的调节算法结合流量传感器,可以实现< 5%的流速稳定性,而使用注射泵观察到的流速稳定性约为10%。 图3:OEM注射泵(灰色)与OEM压力式流量控制器(蓝色)之间的比较 需要在没有安装流量传感器的流控线上实现高性能压力驱动流量控制? 随着利用微流控的生物应用不断增长,对流控线上完全无菌和一次性环境的需求正在急剧增长。Fluigent是唯一一家提供专用于流控应用的非侵入式流量传感器公司。 Fluigent的标准OEM压力式流量控制解决方案由高精度压力控制器(Fluigent PX或F-OEM)和非侵入式流量传感器组成,无需流体路径上安装任何元件或进行流体校准即可实现出色的流速调节。NIFS可以实现非接触式实时流速监控和调节。 凭借这一独特的系统,Fluigent领先于其他微流控压力驱动流量控制提供商以及工业注射泵供应商。 图4:注射泵系统与Fluigent压力式流量控制系统 2.不再需要为了更大的注射量而牺牲稳定性。在实施注射和重新补液的过程中节省时间。 如上所述,注射器容量(更具体而言,截面)越大,流速稳定性越低。因此,注射泵用户需要在稳定性和最小注射量之间进行选择,这并不总是可行,具体取决于目标应用。此外,大多数专用于微流控工业应用的注射泵体积不超过60 mL,这对于任何需要缓冲液的应用来说可能是一个严重的限制。 当使用压力控制器时,可以使用更大的储液瓶。借助Fluigent压力系统,可以使用容量高达1 L的瓶子,而不会影响系统通过压力提供的出色流量稳定性。使用压力式系统,加液和重新补液过程非常简单。 3.为您的微流控系统提供经济高效的解决方案 乍一看,压力驱动流量控制系统可能比注射泵系统更昂贵,因为添加压力源和流量传感器(如果需要)会增加整个系统的成本。然而,压力控制器的一些优势和持续的技术改进最终会影响系统的最终成本,其中包括: 一条通道供应多个储液瓶 可以使用一个压力控制器对多个储液瓶加压,但这对于注射泵来说不太可行,因为流速不可能均匀分配。 更快的响应时间意味着更少的试剂消耗和浪费 如上所述,在流速不稳定的瞬态阶段,数据无法有效利用,并且该阶段使用的试剂也会浪费。最大限度地缩短这一瞬态阶段可以优化试剂消耗,从而降低实验成本。 压力源和控制一体化降低总体成本 Fluigent开发的最新技术:紧凑型一体式微流控微型泵,体积小,重量轻(L*l*H = 7*5*4 cm),提供集成压力供应和控制(正压和负压),这款设备不仅成本效益高,而且具有独特的紧凑设计,并且成本更低。 4.减少清洁问题和污染造成的危害 使用高精度注射泵需要非一次性玻璃、钢或陶瓷注射器,因为塑料注射器容易变形会影响稳定性。那些非一次性注射器通常没有经过消毒。 这对于许多生物应用来说是一个限制,因为流体路径上无菌是强制要求。此外,如果使用可重复使用的注射器,需要进行清洁,这不仅仅是一个繁琐的步骤,更重要的是增加了污染风险,这可能会导致实验失败。 使用压力控制器时,没有任何机械部件与液体接触。人们可以使用标准的一次性管或储液瓶,如果需要的话可以对其进行消毒。因此,与OEM注射泵相比,使用压力控制器可以降低污染风险。 5.使用压力控制器减少维护工作 - [Smart Microfluidics](https://www.fluigent.com/) - Unsere Expertise Unsere Lösungen haben sich in einem breiten Spektrum von Branchen bewährt: (Biowissenschaften, Wassermanagement, Kosmetik, Lebensmittel und Getränke...) Erfahren Sie mehr über diese zukunftsweisende Technologie in unserem Artikel Warum eine druckbasierte Lösung die beste Pumpmethode für Ihre Anwendung sein kann ? Forschung Industriell Forschung Industriell Warum mit uns arbeiten? Fluigent war das erste Unternehmen, - [Fortschrittliche Lösungen für die Omics-Technologie](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-omics-anwendungen/losungen-fur-die-omics-technologie/) - Hier sind einige Produkte, die helfen, Omics-basierte Experimente zu verbessern. - [Fortschrittliche Lösungen für die Tröpfchenproduktion  ](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-die-troepfchenerzeugung/mikrofluidische-losungen-tropfchenproduktion/) - Tröpfchen-Plattformen Verkapselungsplattform für FACS Secoyas Zellverkapselungsplattform für FACS nutzt Flusskontrollgeräte von Fluigent und Emulsionstechnologie von Secoya. Das System ermöglicht die Hochdurchsatzverkapselung komplexer und einzelner Zellen in hochmonodispersen Doppelemulsionströpfchen ( - [Mikrofluidische Lösungen für präzise Flusskontrolle](https://www.fluigent.com/de/mikrofluidische-forschungsgerate/mikrofluidik-fuer-hohe-flusskontrolle/mikrofluidische-losungen/) - Mikrofluidischer druckbasierter Flussregler Fluigent war das erste Unternehmen, das mikrofluidische druckbasierte Flussregler für die Handhabung von Fluiden in der Mikrofluidik eingeführt hat. Druckgesteuerte Flusssteuerungssysteme arbeiten, indem Behälter mit Proben unter Druck gesetzt und zügig in ein mikrofluidisches Gerät injiziert werden. Unsere Steuerungen, basierend auf der patentierten FASTABTM-Technologie, sichern einen stabilen und pulsationsfreien Fluss, was die - [Ein Vergleich von Mikrofluidik-Druckreglern für Ihr maßgeschneidertes System ](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controller-comparison/) - In diesem Artikel zum Vergleich von Fluidiksteuerungssystemen werden die Unterschiede zwischen 3 Kategorien von Druckreglern eingehend getestet und diskutiert. - [5 Gründe für die Wahl von OEM-Druckreglern anstelle von OEM-Spritzenpumpen für mikrofluidische Anwendungen](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controllers-vs-oem-syringe-pumps/) - Warum ein Wechsel von industriellen Spritzenpumpen zu OEM-Druckcontrollern für das mikrofluidische Liquid Handling in Betracht gezogen werden sollte. - [团队介绍 ](https://www.fluigent.com/company/team/) - 认识我们的团队 我们的团队成员来自全球各地,背景多元,每天面对挑战时都充满激情。Fluigent汇聚了来自不同文化、年龄、性别和学术背景的人才,形成了一个多元化的大家庭,由两位卓越女性领导。我们邀请您深入了解那些给我们的产品注入灵魂的人们的故事。在Fluigent,我们不断书写成功故事,众多实习生和学徒在合同结束后成功转为正式员工。通过与世界各地的博士生合作,我们Fluigent的技术始终站在微流控领域的最前沿。 我们在中国的合作伙伴 Micro-blox Technologies (Beijing) Co., Ltd (Micro-blox) 微信公众号 微纳立方科技(北京)有限公司专注于为客户提供全面的微流控实验(Lab-on-a-chip)解决方案。我们致力于把微流控技术转化为高效的试验系统和准确的数据,进而将这些系统转化为创新产品,广泛应用于实验室、企业、医院乃至家庭环境中。通过引入模块化设计理念,我们将微流控系统细分为进样、操控、芯片和分析四大模块,别称为立方块(Blox),这些模块进一步细化为微立方块(Micro-blox)和纳立方块(Nano-blox),借此实现了系统的简化、小型化和成本效益化。 我们团队由在微流控领域拥有超过十年工作和研发经验的资深成员组成,在微流控芯片设计与加工、化学合成、石油开采、细胞与器官培养、以及数字PCR应用等方面积累了深厚的理论和实践经验。 微纳立方还建立了一套完善的微流控实验室设施(Microblox_Lab),配备了先进的微流控综合实验台、单细胞操控及给药系统、细胞培养系统和微滴制备系统等多种实验平台。这些设施不仅支持我们的技术团队进行创新产品的研发,也为众多研究机构提供了执行各种微流控实验的能力。 Micro-blox 团队 - [Team](https://www.fluigent.com/company/team/) - Unternehmensnachrichten Mehr sehen - [팀](https://www.fluigent.com/company/team/) - Our Partner in Korea - SCINCO Co. Ltd. 팀 소개 우리 팀 구성원들은 전 세계에서 온 사람들로, 각기 다른 배경을 가지고 있으며 매일 흥미로운 도전을 해결하려는 열정을 가지고 있습니다. Fluigent는 문화, 연령, 성별 및 학문적 배경이 모두 다른 다양한 모자이크입니다. 저희의 경영진은 100% 여성으로 구성되어 있으며 두 명의 여성이 이끌고 있습니다! 제품만큼 흥미로운 사람들의 이야기를 소개합니다. - [Team](https://www.fluigent.com/company/team/) - Company news See the blog Work with us We are always on the lookout for talented people to join our team. Discover our job offers - [Company](https://www.fluigent.com/company/) - About us The microfluidic laboratories and industry were struggling to perform their research and develop equipment to the level and precision required in terms of fluid control. Fluigent was the first company to solve this problem by introducing an innovative technology: pressure pumps. Fluigent’s unique broad range of solutions for use in microfluidic and nanofluidics - [Microfluidic OEM Applications](https://www.fluigent.com/microfluidic-oem/applications/) - With our cutting-edge technologies, we ease the OEM integration process for you. Explore our OEM applications for Liquid Handling Automation. - [Microfluidic OEM Technologies](https://www.fluigent.com/microfluidic-oem/technologies/) - With our cutting-edge technologies, we ease the OEM integration process for you. Discover the technologies we have developed for our customers. - [Microfluidic OEM Technologies](https://www.fluigent.com/microfluidic-oem/technologies/) - With our cutting-edge technologies, we ease the OEM integration process for you. Discover the technologies we have developed for our customers. - [Fluigent's Academic Partners](https://www.fluigent.com/company/microfluidics-academic-partners/) - At Fluigent, we believe such scientific collaborations contribute to both parties’ breakthroughs. Let’s move forward together in the Microfluidics world! - [A Microfluidic Pressure Controller Comparison for Your Ultimate Fluid Control System](https://www.fluigent.com/microfluidic-oem/technologies/pressure-controller-comparison/) - Comparison of 3 different categories of pressure controllers for your ultimate fluid control system. - [Microfluidic OEM](https://www.fluigent.com/microfluidic-oem/) - Over the past 15 years, we’ve provided more than 3,000 microfluidic OEM modules and Fully integrated systems to businesses worldwide. - [Microfluidic Research Applications](https://www.fluigent.com/research/applications/) - Learn about the microfluidic research applications that are compatible with our product range and discover how Fluigent technology can help your research. - [Microfluidic Research Applications](https://www.fluigent.com/research/applications/) - Learn about the microfluidic research applications that are compatible with our product range and discover how Fluigent technology can help your research. - [Microfluidic Research Applications](https://www.fluigent.com/research/applications/) - Learn about the microfluidic research applications that are compatible with our product range and discover how Fluigent technology can help your research. - [Events & Webinars](https://www.fluigent.com/company/events/) - Find all the microfluidic webinars and microfluidic conferences, past or future. - [Events & Webinars](https://www.fluigent.com/company/events/) - Find all the microfluidic webinars and microfluidic conferences, past or future. - [Microfluidic Temperature Control module](https://www.fluigent.com/microfluidic-oem/technologies/microfluidic-temperature-control-module/) - Fluigent has developed a microfluidic temperature control module that can be integrated into a microfluidic setup and maintain fluid reservoirs at a desired temperature. - [Microfluidic Temperature Control module](https://www.fluigent.com/microfluidic-oem/technologies/microfluidic-temperature-control-module/) - Fluigent has developed a microfluidic temperature control module that can be integrated into a microfluidic setup and maintain fluid reservoirs at a desired temperature. - [Microfluidics in Water analysis](https://www.fluigent.com/markets-applications/water-treatment/) - Microfluidics are a game changer in water security and quality, allowing for fast and efficient analysis of water composition. - [Microfluidics in Cosmetics](https://www.fluigent.com/markets-applications/cosmetics/) - Microfluidics in cosmetics offers new insights for the development of innovative products through control and monitoring of emulsion production with droplet-based microfluidics. - [Microfluidic Research Equipment](https://www.fluigent.com/research/) - Fluigent develops, manufactures and supports the most advanced fluid control systems available for microfluidics. Discover our Microfluidic Research Equipment. - [Compact All-In-One Microfluidic Micropump](https://www.fluigent.com/microfluidic-oem/technologies/pressure-supply-pressure-flow-control/) - All-in-one, free standing, compact, integrated pressure-based flow control microfluidic micropump with an internal pressure supply technology. - [Compact All-In-One Microfluidic Micropump](https://www.fluigent.com/microfluidic-oem/technologies/pressure-supply-pressure-flow-control/) - All-in-one, free standing, compact, integrated pressure-based flow control microfluidic micropump with an internal pressure supply technology. - [Microfluidics in Food Industry: Food Testing & Agriculture](https://www.fluigent.com/markets-applications/food-testing-agriculture/) - What are the advantages of Microfluidics in Food Industry? Discover how microfluidic technologies can help to produce more functional and safer food. - [Microfluidic Markets & Applications](https://www.fluigent.com/markets-applications/) - From the life sciences to the food industry, many applications require the use of fluids driven at very low flow rates. What is the Microfluidic Markets? - [DFC, “Self-Learning” Microfluidic Flow Control Algorithm](https://www.fluigent.com/microfluidic-oem/technologies/direct-flow-control-algorithm/) - The DFC "self-learning" algorithm allows to monitor and ajust the flow rate while a microfluidic experiment is running for excellent stability and response time. - [DFC, “Self-Learning” Microfluidic Flow Control Algorithm](https://www.fluigent.com/microfluidic-oem/technologies/direct-flow-control-algorithm/) - The DFC "self-learning" algorithm allows to monitor and ajust the flow rate while a microfluidic experiment is running for excellent stability and response time. - [Liquid Stirring Solutions](https://www.fluigent.com/microfluidic-oem/technologies/liquid-stirring-solutions/) - Fluid agitation is a common step in many microfluidic applications. Fluigent provides a variety of solutions to meet your liquid stirring specifications. - [Liquid Stirring Solutions](https://www.fluigent.com/microfluidic-oem/technologies/liquid-stirring-solutions/) - Fluid agitation is a common step in many microfluidic applications. Fluigent provides a variety of solutions to meet your liquid stirring specifications. - [Resources and Support](https://www.fluigent.com/resources-support/) - A strong expertise on microfluidics Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created - [Resources and Support](https://www.fluigent.com/resources-support/) - A strong expertise on microfluidics Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created - [Resources and Support](https://www.fluigent.com/resources-support/) - A strong expertise on microfluidics Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created - [White paper: Organ on Chip](https://www.fluigent.com/white-paper-organ-on-chip/) - [뉴스](https://www.fluigent.com/company/news/) - [시장 및 응용분야](https://www.fluigent.com/markets-applications/) - 생명 과학 미세유체 장치는 높은 시공간 정밀도로 세포 미세 환경을 제어하고 생리학적으로 보다 적절한 맥락에서 세포에 기계적 신호와 생화학적 신호를 인가할 수 있는 기능을 제공합니다. 현미경 검사 및 세포 생물학: 유동 세포 또는 미세유체 칩을 유체 관류 시스템 및 현미경 검사법과 함께 사용하면 DNA 또는 RNA 부합법, 약물 병합 투여 및 장기 관류, 또는 면역염색법을 - [公司新闻](https://www.fluigent.com/company/news/) - [食品工业](https://www.fluigent.com/markets-applications/food-testing-agriculture/) - Microfluidics in Food Industry Emulsion production The unique nature of emulsions as thermodynamically stable dispersions, when generated with a size distribution of different sized droplets has made them suitable for a number of applications in food industries. Food analysis Food safety analysis is important to control food contamination and quality. It is needed to construct - [化妆品](https://www.fluigent.com/markets-applications/cosmetics/) - Microfluidics in Cosmetics Droplet-based microfluidics Droplet-based microfluidics offers many advantages for cosmetic products. As reagents are encapsulated within a droplet, active ingredients can be preserved up to the moment of application. Droplets do not burst until they are applied directly to the skin, providing a sensory experience and more efficient moisturization. High monodispersity Microfluidics offers - [水质分析](https://www.fluigent.com/markets-applications/water-treatment/) - Microfluidics in Water Treatment One great challenge Water security is recognized as one of the great challenges of the 21st century by many international organizations. Continuous monitoring of water resources such as freshwater, seawater, wastewater, and drinking water, for human and animal consumption, is essential. Standard methods Conventional water monitoring is mainly based on laboratory - [制药](https://www.fluigent.com/markets-applications/pharmaceutics/) - Microfluidics in Pharmaceutics Drug delivery Microparticles and emulsions are used for a wide variety of pharmaceutical products including intravenous, intramuscular, ocular, or orally delivered compounds. Emulsions are also used as templates for polymer microparticles, lipid nanoparticles, or microcapsules. These latter are used for drug delivery, with the emulsion being the active pharmaceutical ingredient (API) itself, - [生命科学](https://www.fluigent.com/markets-applications/life-science/) - Microfluidics in Life Science Microscopy and cell biology Using flow cells or microfluidic chips along with a fluid perfusion system and microscopy allows progress in several applications including DNA or RNA hybridization, drug combination and long-term perfusion, or immunostaining. Cell culture and Organ on a chip This technology presents an ideal microenvironment to study molecular - [Support & Tools](https://www.fluigent.com/resources-support/customer-tools/) - Microfluidic calculators Vivamus suscipit tortor eget felis porttitor volutpat. Donec sollicitudin molestie malesuada. Nulla quis lorem ut libero malesuada feugiat. Cras ultricies ligula sed magna dictum porta. Curabitur aliquet quam id dui posuere blandit. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Curabitur arcu erat, accumsan id imperdiet et, porttitor at sem. Discover Downloads Nulla - [Support & Tools](https://www.fluigent.com/resources-support/customer-tools/) - Microfluidic calculators Vivamus suscipit tortor eget felis porttitor volutpat. Donec sollicitudin molestie malesuada. Nulla quis lorem ut libero malesuada feugiat. Cras ultricies ligula sed magna dictum porta. Curabitur aliquet quam id dui posuere blandit. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Curabitur arcu erat, accumsan id imperdiet et, porttitor at sem. Discover Downloads Nulla ## Products - [Air-Liquid Interface and Co-Culture Chip](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-transflow/) - Explore the benefits of air liquid interface cell culture for advanced microfluidic research. Study cell behavior and physiology with enhanced physiological relevance. - [Air-Liquid Interface and Co-Culture Chip](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-transflow/) - Explore the benefits of air liquid interface cell culture for advanced microfluidic research. Study cell behavior and physiology with enhanced physiological relevance. - [Flow Gradient Chip for 3D Cell Culture](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-gradient/) - Experience enhanced performance with Be-gradient out flow gradient chip. Revolutionize fluid dynamics for your 3D cell culture with gradients. - [Flow Gradient Chip for 3D Cell Culture](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-gradient/) - Experience enhanced performance with Be-gradient out flow gradient chip. Revolutionize fluid dynamics for your 3D cell culture with gradients. - [Easy-to-Use Cell Culture Chip](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-flow/) - Be-Flow is Beonchip’s user-friendly chip for cell culture perfusion device. It can be used for long-term 2D or 3D culture in two independent channels. - [Airtight metal tube caps for microfluidics](https://www.fluigent.com/research/instruments/sample-reservoirs/p-cap-series/) - A complete set of easy-to-use and refillable microfluidic reservoirs for long-term experiments. Compatible with multiple pressure-based experiments in parallel. - [Airtight metal tube caps for microfluidics](https://www.fluigent.com/research/instruments/sample-reservoirs/p-cap-series/) - A complete set of easy-to-use and refillable microfluidic reservoirs for long-term experiments. Compatible with multiple pressure-based experiments in parallel. - [Airtight pressurized bottle caps](https://www.fluigent.com/research/instruments/sample-reservoirs/bottle-cap-series/) - The Bottle-CAP is an airtight microfluidic adapter that allows for pressurization of large volumes of liquid for your microfluidic applications. - [Airtight pressurized bottle caps](https://www.fluigent.com/research/instruments/sample-reservoirs/bottle-cap-series/) - The Bottle-CAP is an airtight microfluidic adapter that allows for pressurization of large volumes of liquid for your microfluidic applications. - [Microfluidic Pressurized Fluid Reservoirs](https://www.fluigent.com/research/instruments/sample-reservoirs/fluiwell-series/) - Our pressurized fluid reservoirs use specifically designed caps for pressurization in microfluidic experiments. - [Microfluidic In-Line Pressure Sensor](https://www.fluigent.com/research/instruments/sensors/pressure-unit/) - The PRESSURE UNIT is a stand-alone microfluidic in-line pressure sensor for continuous measurement and control of pressure in a fluidic path. - [Microfluidic In-Line Pressure Sensor](https://www.fluigent.com/research/instruments/sensors/pressure-unit/) - The PRESSURE UNIT is a stand-alone microfluidic in-line pressure sensor for continuous measurement and control of pressure in a fluidic path. - [Microfluidic Low Pressure Generator](https://www.fluigent.com/research/instruments/pressure-sources/flpg-plus/) - The FLPG+ is a lab bench-scale compressed air solution that can produce high-quality air with no maintenance for all types of microfluidic experiments. - [Microfluidic Low Pressure Generator](https://www.fluigent.com/research/instruments/pressure-sources/flpg-plus/) - The FLPG+ is a lab bench-scale compressed air solution that can produce high-quality air with no maintenance for all types of microfluidic experiments. - [Automated Multiplexed Imaging Platform](https://www.fluigent.com/research/instruments/packages/application-packages/multiplexed-imaging-platform/) - Complete solutions for high-quality automated multiplexed imaging. The system combines a precision flow cell with a high-performance perfusion instrument. - [Double Emulsion Generation Pack](https://www.fluigent.com/research/instruments/packages/application-packages/double-emulsion-production-station/) - Features of the double emulsion generation pack. Master double emulsion production. Related products, Accessories, Kits - [Bidirectional Microfluidic Flow Sensor](https://www.fluigent.com/research/instruments/sensors/flow-unit/) - Available in multiple low rate ranges, Fluigent's Microfluidic Flow rate Sensor allows for pressure regulation to monitor the system by flowrate instead of pressure. - [Encapsulation Platform for FACS](https://www.fluigent.com/research/instruments/packages/cell-encapsulation-platform/) - The encapsulation platform for FACS combines flow control and emulsion technology for high-throughput analysis of individual cells. - [UV-crosslinked microcapsule production platform ](https://www.fluigent.com/research/instruments/packages/uv-crosslinked-microcapsule-production-platform/) - An all-in-one system for the continuous generation of UV-cured core-shell microcapsules with control over size and structure. - [Microfluidic Single Emulsion Device](https://www.fluigent.com/research/instruments/microfluidic-chips/droplet-particle-generation/raydrop-single-emulsion/) - The Single Emulsion Device allows for multiple liquid type emulsification within the same device without any coating needed (single and complex emulsions). - [Microfluidic Double Emulsion Device](https://www.fluigent.com/research/instruments/microfluidic-chips/droplet-particle-generation/raydrop-double-emulsions/) - The double emulsion device allows for multiple liquid type emulsification within the same device with no coating needed single and complex emulsions). - [Microfluidic Complex Emulsion Production Platform](https://www.fluigent.com/research/instruments/packages/complex-emulsion-production-platform/) - Fast and easy screening system to perform monodispersed complex emulsions rapidly (SE & DE). Save time with an integrated, ready-to-use platform. - [Liposome Production Pack](https://www.fluigent.com/research/instruments/packages/application-packages/liposome-nanoparticle-production-station/) - This complete system contains all Fluigent instruments needed, including Flow conrollers and glass herringbone mixer, to produce monodisperse liposomes. - [PLGA Microparticle Production Pack (Automation Pack)](https://www.fluigent.com/research/instruments/packages/application-packages/plga-microparticle-production-station-automation-package/) - The PLGA microparticle production pack is a robust, high-performance solution to generate polymer microparticles in a homogenous and fully controlled manner. - [Alginate Bead Generation Pack](https://www.fluigent.com/research/instruments/packages/application-packages/alginate-microbeads-production-station/) - The Fluigent Alginate bead generation pack is a robust and complete system for producing Highly Monodispersed Alginates beads. - [PLGA Microparticle Production Standard Pack ](https://www.fluigent.com/research/instruments/packages/application-packages/plga-production-station/) - A robust, high-performance station for generating polymer microparticles in a homogenous and fully controlled manner. - [Microfluidic Droplet Pack](https://www.fluigent.com/research/instruments/packages/starter-packages/droplet-starter-package/) - A user-friendly solution for beginners in microfluidic droplet experimentation. It has everything you need to get started in droplet generation. - [Liposome tubing & fitting kit](https://www.fluigent.com/research/kits/liposome-tubing-fitting-kit/) - [Microfluidic Recirculation Pack](https://www.fluigent.com/research/instruments/packages/application-packages/recirculation_package/) - The Recirculation Pack allows continuous flow between two reservoirs while maintaining a unidirectional flow -rate in the cell culture chamber. - [High-Performance Surfactant for Droplet Microfluidics ](https://www.fluigent.com/research/instruments/accessories/fluorosurfactant-droplet-microfluidics/) - Best fluorinated surfactant suitable for production of highly monodispersed and stable microdroplets. - [Educational Pack](https://www.fluigent.com/research/instruments/packages/starter-packages/educational-packages/) - Our ready-to-teach package is particularly useful for professors and teachers to familiarize users with general microfluidic principles and systems. - [Highly stable fluorosurfactant for microdroplet generation](https://www.fluigent.com/research/instruments/accessories/surfactant/) - dSurf is a fluorinated surfactant suitable for production of highly monodispersed and stable microdroplets. - [Immunostaining Pack](https://www.fluigent.com/research/instruments/packages/application-packages/immunostaining_package/) - A ready-to-use pack for sequential injection of multiple fluids for cell or tissue staining (automated delivery of up to 10 different fluids). - [Immunostaining Pack](https://www.fluigent.com/research/instruments/packages/application-packages/immunostaining_package/) - A ready-to-use pack for sequential injection of multiple fluids for cell or tissue staining (automated delivery of up to 10 different fluids). - [Microfluidic Leakage Testing Pack](https://www.fluigent.com/research/instruments/packages/application-packages/microfluidic-leakage-testing-pack/) - This complete pack enables accurate monitoring and quantification of leakage rates down to nanoliter-per-minute resolution. - [Lab Integration Software](https://www.fluigent.com/research/software-solutions/software-development-kit/) - Streamline your lab operations with our SDK lab integration software. Connect, automate, and optimize workflows. Explore our custom integration solutions. - [Microfluidic Software Control ](https://www.fluigent.com/research/instruments/pressure-flow-controllers/lineup-series/link/) - The LineUp™ LINK enables connections between Fluigent systems and lab PCs using USB communication or serial port communication (RS232) - [Microfluidic Sampling Valve](https://www.fluigent.com/research/instruments/microfluidic-valves/2-switch/) - The 2-SWITCH™ is a compact 3-port/2-way microfluidic sampling valve that can be integrated into any microfluidic setup. - [Microfluidic Sampling Valve](https://www.fluigent.com/research/instruments/microfluidic-valves/2-switch/) - The 2-SWITCH™ is a compact 3-port/2-way microfluidic sampling valve that can be integrated into any microfluidic setup. - [Microfluidic OEM Pressure Controller](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/fluigent-px/) - The FLUIGENT PX is a single, miniaturized electronic OEM microfluidic pressure controller with an integrated and intelligent feedback loop for the highest performance. - [Microfluidic Flow Management Unit](https://www.fluigent.com/microfluidic-oem/industrial-products/customized-products/p-oem/) - Our OEM Flow Manager (pressure-based flow control) offers excellent response time and high stability for industrial applications compared to conventional pumps - [Modular OEM Microfluidic Flow Controller](https://www.fluigent.com/microfluidic-oem/industrial-products/customized-products/f-oem/) - The F-OEM Microfluidic Flow Controller offers our highest performance and widest pressure and flow rate ranges for industrial applications. - [Microfluidic Flow Control System](https://www.fluigent.com/research/instruments/pressure-flow-controllers/mfcs-series/) - The Microfluidic Flow Control System is a pressure-based microfluidic flow controller with 4 or 8 channels with different pressure ranges. - [Micropipette Aspiration Package](https://www.fluigent.com/research/instruments/packages/application-packages/micropipette-aspiration-package/) - The Fluigent micropipette aspiration package allows users to manipulate and characterize cells at the single-cell level. - [Microfluidic flow controller](https://www.fluigent.com/research/instruments/pressure-flow-controllers/flow-ez/) - Ten times faster than syringe pumps. The Flow EZ™ microfluidic flow controller is the most advanced system available for pressure-based flow control. - [Omi, an Automated Organ-On-A-Chip Platform](https://www.fluigent.com/research/instruments/automated-organ-on-chip-platform/) - Automate cell culture experiment with Omi ooac system. Master Precise Flow Control to Mimic Microphysiological Conditions in Organ-on-a-Chip Studies. - [Organ on Chip Perfusion Pack ](https://www.fluigent.com/research/instruments/packages/application-packages/cell_perfusion_package/) - With our Organ on Chip Perfusion pack, obtain stable medium perfusion through the controlled and stable flow of multiple solutions into the microfluidic chip. - [Drop-Seq Pack](https://www.fluigent.com/research/instruments/packages/application-packages/drop-seq-package/) - Full Drop-Seq experiment system: Low-cost, high-throughput platform for profiling thousands of cells in individual droplets. - [Microfluidic Size Cell Sorting Pack](https://www.fluigent.com/research/instruments/packages/application-packages/microfluidic-size-cell-sorting-package/) - Up to 10X faster sorting. High Speed Cell Sorting - Achieve Maximal Productivity with Fluigent's single cell sorting pack combine to pressure. - [High Throughput Cell Perfusion Pack](https://www.fluigent.com/research/instruments/packages/application-packages/organ-on-a-chip-perfusion-package-high-throughput/) - Simultaneously perfuse chips and grow multiple organ models with our cell perfusion system. - [Microfluidic Recirculation Pack](https://www.fluigent.com/research/instruments/packages/application-packages/recirculation_package/) - The Recirculation Pack allows continuous flow between two reservoirs while maintaining a unidirectional flow -rate in the cell culture chamber. - [Dual-Channel Microfluidic Cell Culture Chip](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/be-doubleflow/) - Enhance fluid manipulation with our Be-DoubleFlow double channel microfluidic chip. Achieve precise control in two separate channels for 2D and 3D cell cultures - [Aria, An Automated Perfusion System  ](https://www.fluigent.com/research/instruments/aria/) - With Aria, Automate delivery of up to 10 different solutions into microfluidic chip or a chamber following user-defined protocols for spatial omics applications. - [Bubble Trap](https://www.fluigent.com/research/instruments/accessories/bubble-trap/) - Why and how to use a microfluidic bubble remover in your Fluigent setup - [Fluid Degassing Device for Microfluidic System](https://www.fluigent.com/research/instruments/accessories/fluid-degassing-device/) - The fluid degassing chamber is an innovative solution for preventing the formation of air bubbles in microfluidic experiments. - [Compact Vacuum Pump](https://www.fluigent.com/research/instruments/pressure-sources/compact-vacuum-pump/) - Discover our Compact Vacuum Pump (vacuum source) It allows the aspiration and the supply of any negative pressure channel between 0 and –1000mbar - [Microfluidic Flow Rate Platform](https://www.fluigent.com/research/instruments/sensors/flow-rate-platform/) - Features Of the Platform Precise Flow Rate Measurement or control over a wide Range The multiple flow sensor platform enables , real time measurements and control of liquid over a wide range of flow rates - from 3.7 nL/min to 5 mL/min. Two versions available The FRP is designed for flexibility, allowing you to choose - [Electrical Impedance Spectroscopy Pack](https://www.fluigent.com/research/instruments/packages/application-packages/microfluidic-electrical-impedance-spectroscopy-package/) - Fluigent and Zurich Instruments drew on their expertise to propose the Electrical Impedance Spectroscopy Pack, a complete solution for microfluidic EIS. - [完全定制的微流控设备](https://www.fluigent.com/microfluidic-oem/industrial-products/full-customization/) - 我们结合自身的专业知识和经验,设计和制造最高品质的定制微流控设备。 - [Microfluidic Recirculation Valve](https://www.fluigent.com/research/instruments/microfluidic-valves/l-switch/) - The L-SWITCH™ is a 6-port/2-position bidirectional microfluidic recirculation valve used to handle liquids through different valve ports. - [Microfluidic Injection Valve](https://www.fluigent.com/research/instruments/microfluidic-valves/l-switch-microfluidic-injection-valve/) - The L-SWITCH™ is a 6-port/2-position bidirectional microfluidic injection valve used to handle liquids through different valve ports. - [Individuell angefertigtes Mikrofluidikgerät ](https://www.fluigent.com/microfluidic-oem/industrial-products/full-customization/) - Ob Sie ein Start-up oder ein größeres Unternehmen sind, Fluigent kann Ihr Mikrofluidik-Projekt von der Konzeption bis zum Design und zur Herstellung begleiten. - [OEM Mikrofluidik Komponenten  ](https://www.fluigent.com/de/industrie/industrie-produkte/oem-mikrofluidik-komponenten/) - Dank unserer OEM-Mikrofluidik-Komponenten können wir das Flüssigkeitsmanagement in komplexen Mikrofluidik-Systemen automatisieren und überwachen. - [Druckregler für Flüssigkeiten ](https://www.fluigent.com/de/industrie/industrie-produkte/druckregler-fuer-fluessigkeiten/) - Wählen Sie einen für Ihre Anwendung passenden Druckbereich (-800 mbar bis +7 bar) und wir erstellen das passende Angebot für Sie. - [Microfluidic valve controller for flow redirection](https://www.fluigent.com/research/instruments/pressure-flow-controllers/lineup-series/switch-ez/) - Our microfluidic valve controller allows users to control fluid sequences during an experiment, enabling automation of valve actuation timing. - [Microfluidic Push Pull controller](https://www.fluigent.com/research/instruments/pressure-flow-controllers/push-pull/) - LineUp Push-Pull, a 2 in 1 pressure-based controller delivering finely regulated negative and positive pressure through a single outlet ( -800 to +1000 mbar). - [M-SWITCH™ Microfluidic bidirectional valve ](https://www.fluigent.com/research/instruments/microfluidic-valves/m-switch/) - The M-SWITCH™ is an 11-port/10-position microfluidic bidirectional valve for injection or selection of up to 10 different fluids or chips. - [Pressure Reducer for Mixed Pressure Range Modules](https://www.fluigent.com/research/instruments/pressure-flow-controllers/lineup-series/adapt/) - Our compact pressure reducer lets you build a system with many different pressure channel ranges by reducing and providing pressure supplies. - [Pneumatic Valve Controller](https://www.fluigent.com/research/instruments/pressure-flow-controllers/lineup-series/p-switch/) - Our microlfuidic valve can be controlled manually, locally and remotely and can be used to multiply the channel output number in the LineUp™ system or any other pressure system - [완전 맞춤형 미세유체 장치 ](https://www.fluigent.com/microfluidic-oem/industrial-products/full-customization/) - 당사는 전문성과 지식을 결합하여 최고 품질의 맞춤형 미세유체 장치를 설계하고 제조합니다 - [OEM微流控组件 ](https://www.fluigent.com/zh-hans/industrial-zh-hans/industrial-products/oem-microfluidic-components/) - Fluigent产品系列包含OEM微流控组件,以便客户能够构建完整的微流控系统。 - [流体压力控制器](https://www.fluigent.com/zh-hans/industrial-zh-hans/industrial-products/pressure-controllers-for-liquids/) - 了解我们的OEM压力式流量控制器。压力范围为-800 mbar到+7 bar,您可以根据自己的应用选择合适的解决方案,我们将为您量身定制。 - [OEM 미세유체 구성 요소 ](https://www.fluigent.com/ko/industrial-ko/industrial-products-ko/oem-microfluidic-components/) - Fluigent M-X [IVMSW1] 산업용 회전식 다중 포트 미세유체 밸브 컴팩트 : 시스템 및 기계에 쉽게 장착 가능 빠름 : 작동 및 반응 시간 정확성 : 낮은 내부 부피 자동화 : 사내 소프트웨어 또는 SDK 라이브러리를 통한 완전 자동화 OEM Fluigent MX는 최대 10가지 유체를 주입하거나 선택할 수 있는 양방향 11포트/10방향 전기 회전식 밸브입니다. 유체는 회전식 밸브에서 양방향으로 흐릅니다. 이 - [액체용 압력 컨트롤러 ](https://www.fluigent.com/ko/industrial-ko/industrial-products-ko/pressure-controllers-for-liquids/) - OEM 압력 기반 유량 컨트롤러에 대해 알아보세요. -800mbar에서 +7bar까지 다양한 범위에서 고객의 응용분야에 적합한 솔루션을 선택할 수 있습니다. - [OEM Microfluidic Pressure Source](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/fluigent-rx/) - The RX OEM Microfluidic Pressure Source is designed to be seamlessly integrated into industrial systems or used as a standalone pressure source. - [3-port/2-way bidirectional valve for industry](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/microfluidic-valves-2/fluigent-2-x/) - Specifications 2-X References Technical downloads 2-X product featuresRelated applicationsExamples of useFAQSoftwares Fluigent 2-X valves features Fluid switching and sampling The 2-X can be used for fluid switching or sampling depending on the direction of flow. When 2 liquids are coming into the valve, select which to deliver to your device. Alternately, one liquid can be - [Real-Time Control & Lab Automation Software ](https://www.fluigent.com/research/software-solutions/oxygen/) - Enhance your lab efficiency with powerful lab automation software. Streamline processes, increase productivity, and improve data accuracy with Oxygen software designed for lab automation - [Sample injection and recirculation microfluidic valve for industry](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/microfluidic-valves-2/fluigent-l-x/) - Specifications L-X References Technical downloads OEM 6 port 2 position valve features Related applicationsComparing with peristaltic pumpExamples of useFAQSoftwares Fluigent L-X valve features Precise fluid injection Several sample loops are available, from 5 µL to 100 µL. Fluigent software for automation The L-X microfluidic valve can be controlled by Fluigent software for long-term experiments. Create a time-based - [Microfluidic OEM Flow Sensor](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/fs-series/) - Microfluidic OEM flow sensor for industrial integration. It enables precise and accurate measurements of dynamic bi-directional liquid flow rates. - [Rotary multi-port microfluidic valve for industry](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/microfluidic-valves-2/fluigent-mx/) - Specifications M-X References Technical downloads OEM M-X electric rotary valve featuresRelated applicationsCase studiesExamples of useFAQSoftwares Fluigent M-X rotary valve features 11-port/10-position The Fluigent M-X is an 11-port / 10-position electric rotary valve. Any of the peripheral ports (numbered from 1 to 10) can be connected to the central channel, and the fluidic path created is - [Connection Box](https://www.fluigent.com/research/instruments/accessories/connectic-box/) - A starter connection kit for all your microfluidic experiments Features of the Connection Box Ideal for beginners The Connection Box contains all the tubing, connectors, and accessories you need to get started in microfluidics. The box will help beginners create their first microfluidic set-ups, based on Fluigent pressure-based flow controller technologies. Versatile As it contains different models of tubing and connectors, as well as - [Compact Pressure Source ](https://www.fluigent.com/research/instruments/pressure-sources/compact-pressure-source/) - The RX Compact Pressure Source is an air compressor designed to deliver high-quality air for microfluidic applications. - [Digital High-speed Microscope](https://www.fluigent.com/research/instruments/accessories/digital-high-speed-camera/) - Visualize generated microfluidics droplets and fast-moving particles with our digital high-speed microscope. - [Fully Custom Microfluidic Device](https://www.fluigent.com/microfluidic-oem/industrial-products/full-customization/) - We cover all stages of the development of a new custom OEM microfluidic device, from conception through prototyping &software development to market launch. - [LineUp P-SWITCH tubing & fitting kit](https://www.fluigent.com/research/kits/lineup-p-switch-tubing-fitting-kit/) - [Alginate tubing & fitting kit](https://www.fluigent.com/research/kits/alginate-tubing-fitting-kit/) - [PLGA station tubing & fitting kit](https://www.fluigent.com/research/kits/plga-station-tubing-fitting-kit/) - [RayDrop Single Emulsion tubing & fitting kit](https://www.fluigent.com/research/kits/raydrop-tubing-fitting-kit/) - [Bottle-CAP Kit](https://www.fluigent.com/research/kits/bottle-cap-2-port-tubing-fitting-kit/) - [PDMS Drop-seq chip for Drop-seq experiments](https://www.fluigent.com/research/instruments/microfluidic-chips/droplet-particle-generation/drop-seq-chip/) - The Drop-seq method is one of the most used systems for Single-cell RNA-sequencing. Drop-Seq is a low-cost, high-throughput platform to profile thousands of cells by encapsulating them into individual droplets. - [Bubble trap kit](https://www.fluigent.com/research/kits/bubble-trap-kit/) - Our Bubble Remover is a device designed for aqueous stream flows, meticulously engineered to prevent the ingress of air bubbles into a microfluidic system. - [Easy droplet generation chip](https://www.fluigent.com/research/instruments/microfluidic-chips/droplet-particle-generation/ez-drop/) - An easy-to-use kit with PDMS Droplet Generator for droplet production. - [Mechanical Stimulation Pack](https://www.fluigent.com/research/instruments/packages/application-packages/mechanical_stimulation_package/) - Our Pack is designed to provide precise and accurate mechanical stimulation to your microfluidic experiments while using your own microfluidic chip. - [Microfluidic Flow Sensor Hub](https://www.fluigent.com/research/instruments/sensors/flowboard/) - The Flowboard is a flow sensor hub that powers and communicates between Fluigent Software and up to eight FLOW UNITs - [2-SWITCH tubing & fitting kit](https://www.fluigent.com/research/kits/2-switch-tubing-fitting-kit/) - [Aria single output tubing & fitting kit](https://www.fluigent.com/research/kits/aria-single-output-tubing-fitting-kit/) - [Aria replacement tubing kit](https://www.fluigent.com/research/kits/aria-replacement-tubing-kit/) - [FLOW UNIT XS tubing & fitting kit](https://www.fluigent.com/research/kits/flow-unit-xs-tubing-fitting-kit/) - [Disposable membranes for FLOW UNIT XS](https://www.fluigent.com/research/kits/disposable-membranes-for-flow-unit-xs/) - [Double emulsion tubing & fitting kit](https://www.fluigent.com/research/kits/double-emulsion-tubing-fitting-kit/) - [Drop-Seq tubing & fitting kit](https://www.fluigent.com/research/kits/drop-seq-tubing-fitting-kit/) - [Droplet kit (chips, tubing and fittings)](https://www.fluigent.com/research/kits/droplet-kit-chips-tubing-and-fittings/) - [FLOW UNIT L tubing and fitting kit](https://www.fluigent.com/research/kits/flow-unit-l-tubing-and-fitting-kit/) - [FLOW UNIT S | M tubing & fitting kit (for 1/16 OD)](https://www.fluigent.com/research/kits/flow-unit-s-m-tubing-fitting-kit-for-1-16-od/) - [FLOW UNIT XL tubing & fitting kit](https://www.fluigent.com/research/kits/flow-unit-xl-tubing-fitting-kit/) - [Fluiwell-1C 15 mL tubing & fitting kit](https://www.fluigent.com/research/kits/fluiwell-1c-15-ml-tubing-fitting-kit/) - [Fluiwell 1-C 50 mL tubing & fitting kit](https://www.fluigent.com/research/kits/fluiwell-1-c-50-ml-tubing-fitting-kit/) - [Fluiwell 4-C tubing & fitting kit](https://www.fluigent.com/research/kits/fluiwell-4-c-tubing-fitting-kit/) - [L-SWITCH tubing & fitting kit](https://www.fluigent.com/research/kits/l-switch-tubing-fitting-kit/) - [LineUp supply kit](https://www.fluigent.com/research/kits/lineup-supply-kit/) - [M-SWITCH tubing & fitting kit](https://www.fluigent.com/research/kits/m-switch-tubing-fitting-kit/) - [MFCS series high pressure kit](https://www.fluigent.com/research/kits/mfcs-series-high-pressure-kit/) - [MFCS series low pressure tubing & fitting kit](https://www.fluigent.com/research/kits/mfcs-series-low-pressure-tubing-fitting-kit/) - [P-CAP 2 mL tubing & fitting kit](https://www.fluigent.com/research/kits/p-cap-2-ml-tubing-fitting-kit/) - [P-CAP 15 mL tubing & fitting kit](https://www.fluigent.com/research/kits/p-cap-15-ml-tubing-fitting-kit/) - [P-CAP 50 mL tubing & fitting kit](https://www.fluigent.com/research/kits/p-cap-50-ml-tubing-fitting-kit/) - [PRESSURE UNIT tubing & fitting kit](https://www.fluigent.com/research/kits/pressure-unit-tubing-fitting-kit/) - [FLOW UNIT S | M tubing & fitting kit (1/32 OD)](https://www.fluigent.com/research/kits/flow-unit-s-m-tubing-fitting-kit-1-32-od/) - [Bottle-CAP Kit](https://www.fluigent.com/research/kits/bottle-cap-2-port-tubing-fitting-kit/) - [(Patent pending) compact all-in-one pressure supply & pressure/flow control](https://www.fluigent.com/microfluidic-oem/fluigent-technologies/pressure-supply-pressure-flow-control/) ## Research Applications - [Microfluidics for Cell Biology](https://www.fluigent.com/mikrofluidische-forschungsgerate/applications/cell-biology-microscopy/) - The Advantages of Flow Control for Cell biology and Microscopy - [Microfluidics for Cell Biology](https://www.fluigent.com/research/applications/cell-biology-microscopy/) - The Advantages of Flow Control for Cell biology and Microscopy - [Microfluidics for Organ-on-chip Cell culture](https://www.fluigent.com/research/applications/cell-culture-organ-on-a-chip/) - Advantages of microfluidics for organ-on-chip cell culture in drug screening and development through the use of engineering techniques and materials. - [Microfluidics for Cell Analysis](https://www.fluigent.com/research/applications/cell-analysis/) - The use of flow control in microfluidics for cell analysis is useful for improving Next Generation Sequencing efficiency ... - [Microfluidics for Droplet Generation](https://www.fluigent.com/research/applications/droplet-particle-generation/) - The science of flow control for emulsion and droplet generation. Main Applications of Droplet Generation. ## Industrial Applications - [Valve Automation with the F-OEM for Microfluidic Applications](https://www.fluigent.com/microfluidic-oem/applications/pressure-controller-valve-automation/) - Pressure Controller with Control of Liquid Valves to Fully Automate Complex Workflows for Sample Preparation, Multiplexing, and Sorting Applications - [Contamination-free Liquid Handling System](https://www.fluigent.com/microfluidic-oem/applications/contamination-free-liquid-handling/) - Contamination-free liquid handling system based on pressure-driven flow to provide stable flow rates in microfluidic environments for your industrial applications. - [Combining Microfluidics and Spectroscopy](https://www.fluigent.com/microfluidic-oem/applications/microfluidics-and-spectroscopy/) - Fluigent offers OEM solutions and custom systems for integrating flow control into spectrometers, automating sample preparation and analysis. - [Lokalisierungsmikroskopie und Flussratenkontrolle für Multiplexing   ](https://www.fluigent.com/mikrofluidik-oem/oem-microfluidic-applications/localization-microscopy/) - Unsere Lösung für Fluidikmanagement für Ihre Lokalisierungsmikroskopie-Anwendung Die softwaregesteuerte, automatisierte und vollständig integrierte Lösung von Fluigent ist das einzige kommerzielle System, das sequenzielle Injektionen für Multiplex-Lokalisierungsmikroskopie bietet. Darüber hinaus bieten wir mit unserem Standardgerät für sequenzielle Injektionen, Aria, einen Anpassungsservice an, um Ihren Anforderungen zu entsprechen (Hardware, Software, Branding, usw.). Zudem bieten unsere Lösungen für - [用于复用的定位显微技术和流量控制](https://www.fluigent.com/weiliukong-oem/applications/localization-microscopy/) - 专用于您定位显微应用的完美流量管理解决方案 Fluigent的软件控制、自动化和完全集成的解决方案是市场上唯一一套商业系统,为复用定位显微功能提供顺序注射。我们还根据标准顺序注射设备Aria提供定制服务,以完美满足您的多种要求(硬件、软件、品牌等)。 此外,我们的顺序注射解决方案还具备以下额外优势: 流控序列自动化和灵活配置 可通过我们的软件和SDK轻松集成 可通过Fluigent压力驱动技术实现最佳性能 查看我们的报价 什么是单分子定位显微镜? 单分子定位显微镜(通常称为SMLM)是一组强大的成像技术,与标准显微镜技术相比,该技术可显著提高空间分辨率,并能捕获到分子尺度的生物结构图像。1​ 在单分子定位显微成像技术中,单个荧光分子通过计算进行定位,这些定位用于生成超分辨率图像。子应用包括多种研究领域,如寡核苷酸和随机光学重建显微镜(STORM)、基于DNA的纳米级定位成像点积累(DNA PAINT)、复用抗体标记、细胞生物学、神经科学研究等。 为什么微流控被用于SMLM? 典型的单分子定位显微技术工作流程包括固定细胞和活细胞中的荧光标记、样品制备和图像采集。 1- 增加标记目标 定位显微技术的应用正在不断发展,其中成像目标数量远远超过可以进行色谱分离的探针数量。使用微流控进行连续标记可以处理更多目标。 2- 减少方案失败并确保重现性 除了极其耗时之外,手动注射或标准移液还可能损害此类应用中的生物样品: 注射量不同会增加变异性(对于10 µL移液,个体内不精确度为5.7%,个体间不精确度为8.1%) 湍流可能会损坏样品 接触容器侧面可能会导致污染 倾斜移液、未预湿管头端以及擦拭管头端会增加输送不足和样品损失的可能性。 利用微流控,用户可以克服上述限制,因为该技术支持以全自动方式输送高度控制的微升流速(低至几nL/min,测量准确度误差< 5%)。 Fluigent如何增强定位显微技术的应用 构建用于顺序标记的微流控复用系统需要微流控管理、电子和软件方面的专业知识,这些都需要专门的工程资源、时间和资金投入。例如,对于顺序注射,在评估流量控制的物理原理后,用户必须收集流体输送组件、微流控阀、电子设备和其他设备。此外,还需要软件来自动控制显微镜的流量。 1- Fluigent已经开发了定制、按需复用系统和OEM自动化工作流程,专门用于定位显微镜和活细胞成像。 下文描述了与我们开发相关的不同功能。这些功能可以在定制项目中重复使用,或与其他模块结合使用。了解客户为何选择Fluigent来自动化其顺序标记工作流程。 了解有关项目定制的更多信息 2- 通过Fluigent获得的专利技术——压力驱动流量管理来提高流量性能 稳定性强,保证样品活性 我们的设备采用Fluigent压力式流量控制技术。使用压力驱动的流量控制,样品可平稳注入微流控系统中。由于没有机械部件与流体接触,压力控制器可以建立无脉冲流量,即使是蠕动泵,或者最精确的注射泵也无法获得这种流量。使用Fluigent控制器,可以获得变异系数< 0.1%的压力稳定性,并为新兴应用提供新的稳定性水平。 下图展示了Fluigent控制器与蠕动泵和注射泵之间的灌注比较。 用户可以独立选择每种溶液的流速、体积和输送时间。然后,系统自主执行方案,并可在长期过程中保持稳定。 专用于显微镜应用的流速特性 设备中添加的开关阀可确保当用户命令执行成像时停止流动。如相邻图表所示,使用切流技术时,一旦注入所需体积,流速会立即停止,从而有效防止回流。 在培养步骤期间防止回流,可让微流控顺序注射系统能够在注射和培养步骤之间快速切换,这对于显微镜研究而言非常有利。在芯片或培养室之前的输出口设有另一个阀门,该阀门可以控制流体方向,使其朝向阀门或流向废液处理区,以在两次连续注射之间冲洗管道。该阀门也用于自动校准和预充。 3- 通过内部微流控阀门集成与自动化实现高复用能力 为了向显微镜用户提供复用功能,我们开发了基于多种微流控阀(如十位十一通旋转阀、两位三通阀)集成和自动化的自动顺序注射系统。该系统配备定制的电子设备,可简化连接和维护以及机械集成,可最大限度地降低气泡形成等风险并改善人体工程学。该系统全部由我们的算法控制,确保与流量控制组件协同工作,达到最高的效率和性能,并集成到一个设置中以实现完全自动化。 借助该系统,可以在实验过程中更换多个缓冲液储液瓶,从而能够在一个实验中对多个标记进行复用。这对于定位显微镜应用来说是最佳选择。 4- SDK和软件可节省时间、易于使用并与OEM无缝集成 Fluigent开发了一套专用于复用应用的软件功能,用户能够完全自动化显微镜使用的液体处理序列。该灌注设备可以自动执行任何灌注方案,具有以下优点: - [멀티플렉싱을 위한 국소화 현미경 검사 및 유량 제어  ](https://www.fluigent.com/miseyucheoem/applications/localization-microscopy/) - 국소화 현미경 검사 응용분야를 위한 완벽한 유량 관리 솔루션 소프트웨어로 제어되고 자동화되며 완전히 통합된 Fluigent의 솔루션은 다중화된 국소화 현미경 검사 기능을 위한 순차 주입을 제공하는 유일한 상용 시스템입니다. 또한 표준 순차 주입 장치인 Aria를 기반으로 고객의 요구 사항(하드웨어, 소프트웨어, 브랜딩 등)에 완벽하게 부합하는 맞춤형 서비스를 제공합니다. 또한 당사의 순차 사출 솔루션은 다음과 같은 추가적인 이점을 - [미세유체 응용을 위한 F-OEM 밸브 자동화 ](https://www.fluigent.com/miseyucheoem/applications/pressure-controller-valve-automation/) - 산업 공정에서 유체 밸브 자동화의 이점 미세유체 밸브는 소량의 유체 흐름을 제어하는 데 도움을 줍니다. 이러한 제어를 통해 미세유체 장치는 응용분야의 필요에 따라 더 높은 수준의 자동화를 통해 더욱 복잡해질 수 있습니다. 예를 들어, 분석 및 진단 장치에서 이 밸브들은 혈액, 화학물질, 완충제와 같은 중성 및 강력한 유체의 흐름을 조절합니다. F-OEM으로 유체 자동화 및 밸브 - [使用F-OEM打造适用于微流控应用的阀自动化 ](https://www.fluigent.com/weiliukong-oem/applications/pressure-controller-valve-automation/) - 流控阀自动化在工业生产过程中的优势 微流控阀有助于控制少量流体的流动。借助这种控制技术,微流控设备可以设计得更加复杂,并具有更高的自动化程度,具体取决于应用的需求。例如,在分析和诊断设备中,这些阀控制中性和腐蚀性流体(例如血液、化学品和缓冲液)的流动。 使用F-OEM启动流体自动化和阀管理 下面的视频演示了不同染色溶液流体的快速、自动顺序注射,此操作可使用F-OEM实现。图2显示了随时间变化测得的流速和施加的压力。 所有的切换事件也会显示出来并与流控管路上的峰值相对应。在切换事件期间,所施加的压力会自动调节,以在整个方案期间使流体流速保持在500 µL/min。阀切换过程中的固有峰值取决于各自的内部体积。 目标流速500 µL/min在整个方案期间保持不变,峰值< 5 秒,这是流控系统的固有峰值并与各个流控开关相对应。在没有峰值的区域,预估流速平均值、标准偏差和相关精度分别为500.5 µL/min、+/- 1.5 µL/min和0.3%。通过集成到F-OEM中的Fluigent压力控制器,可以实现快速加压和减压。 从样本制备到细胞分选 电动旋转阀用于顺序注射流体或将流体分流到多个路径中。 这些阀可用于高精度荧光显微镜,将有大量的标签在其中进行处理。另一个示例是基于微流控的分析设备,包括光谱仪、光度测定仪、分离器和反应器。这些应用通常需要精确的样本制备,并且能够自动从分析样本切换到缓冲液,同时最大限度地减少试剂的使用量。 两位两通阀或两位三通阀用于进行流体分离。这两种阀在细胞分选应用中非常有用,在这类应用中,可将包含检测到的细胞或目标分析物的样本从主流动路径中分离出来以进行进一步研究。这种方法还广泛用于分析设备的清洁和废液处理。 图3:使用流控阀自动化的应用示例。细胞分选(上)和样本制备(下)。 如何高效集成微流控模块? 组件集成和上市时间 开发流控系统和集成阀自动化需要流体处理组件(压力控制器、注射泵等)、流控阀以及用于通信和自动化的相关电子设备和软件。为了确保流控系统的正常运行和应用的成功实现,需要所有流控组件之间的无缝配合。接口的自动化和创建可能成本高昂、耗时且依赖于资源,这最终会影响上市时间和最终系统的可靠性。 F-OEM:适用于高效原型设计和集成的交钥匙解决方案 Fluigent开发并提供交钥匙流体管理系统,包括压力源、压力式流量控制器和微流控专用的流控电子阀。如果使用Fluigent系统,用户将获得以下优势: 由于我们的阀包含与其他Fluigent组件通信所需的电子设备,因此可以缩短开发时间并获得可靠性 通过Fluigent的OxyGEN软件和SDK,可以体验快速的原型设计和集成 由于我们的阀模块已集成到F-OEM压力控制器中,因此可提高紧凑性 下面使用的系统包含以下组件: F-OEM及其子组件(集成板、OEM压力控制器、阀模块) Fluigent M-X:旋转多端口OEM微流控阀 Fluigent 2-X:两位三通双向OEM微流控阀 FS系列流控OEM流量传感器 下面是典型的流体处理装置,可用于样本制备、多重分析、移液和分选等应用。一个压力控制器用于对装有特定溶液的3个储液瓶加压,将顺序注射这些溶液并使用M-X和2-X阀进行分选。 图 4:Fluigent的微流控OEM系统专门用于流控阀自动化,包含F-OEM压力控制器以及2-X和M-X阀 用于实现完全自动化的Fluigent软件 使用OxyGEN软件进行快速测试 为了立即开始原型测试,Fluigent的OxyGEN软件可用于流体管理。所有组件都可以使用“实时控制”选项卡进行驱动,并且可以在“方案”选项卡上计算更加复杂的方案以启动流体自动化(图5)。 对于典型的阀自动化,在样本制备、分选或清洁等方案中,将顺序注射多种流体,同时可以切换主流控管路以收集样本或管理废液。 在下图中,我们注射来自3个独立储液瓶的3种染色溶液,从而模拟典型的顺序流体注射方案。 图5显示了在OxyGEN上实现的方案。整个实验期间实现的流速为500 µL/min。我们执行了以下顺序: 图5显示了在OxyGEN上实现的方案。整个实验期间实现的流速为500 µL/min。我们执行了以下顺序: 重置所有压力 流速为500 µL/min 将2-X设置在位置1(确保方案启动时定位正确) 将M-X设置在位置1,等待30秒 将M-X设置在位置2,等待30秒 将M-X设置在位置 3,等待30秒 将2-X设置在位置2 将2-X设置在位置1 将M-X设置在位置1,等待30秒 将压力设置为0 mbar 视频显示方案正在运行。可以在整个过程中监控方案。OxyGEN软件的“实时控制”选项卡上提供有关流速、压力和阀位置的实时信息。 - [Ventilautomatisierung mit dem F-OEM für mikrofluidische Anwendungen](https://www.fluigent.com/mikrofluidik-oem/oem-microfluidic-applications/pressure-controller-valve-automation/) - Vorteile der Automatisierung von Fluidikventilen in industriellen Prozessen Mikrofluidikventile helfen dabei, den Durchfluss von kleinen Flüssigkeitsmengen zu steuern. Durch diese Steuerung können mikrofluidische Setups komplexer werden und je nach Bedarf der Anwendung einen höheren Automatisierungsgrad aufweisen. In Analyse- und Diagnosegeräten beispielsweise regeln diese Ventile den Durchfluss von neutralen und aggressiven Flüssigkeiten wie Blut, Chemikalien und - [Droplet Digital PCR (ddPCR)](https://www.fluigent.com/microfluidic-oem/applications/digital-pcr/) - Advantage of ddPCR is the possibility to perform absolute quantitation of the number of target molecules. Discover the main applications using ddPCR technology. - [Microfluidic Drug Discovery ](https://www.fluigent.com/microfluidic-oem/applications/drug-discovery/) - Fluigent Solutions as an Alternative to Syringe Pumps for Better Performance and Automation Capabilities in Microfluidic Drug Discovery. - [Flow Expertise for Cell Encapsulation and Single-Cell Analysis](https://www.fluigent.com/microfluidic-oem/applications/encapsulation-single-cell-analysis/) - The ability to precisely control the flow rate allows to regulate the size of the droplet & their production frequency & the cell encapsulation efficiency. - [Localization microscopy and flow control for multiplexing ](https://www.fluigent.com/microfluidic-oem/applications/localization-microscopy/) - Learn about localization microscopy and how Fluigent’s microfluidic technology is used in the microscopy and imaging industry for high-performance multiplexing. ## Resources - [Breathing Lung-on-Chip Platform for Dynamic Anti-Fibrotic Testing ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/breathing-lung-on-chip-platform/) - Discover how a breathing lung-on-chip model replicates pulmonary fibrosis mechanics and improves anti-fibrotic drug testing through dynamic mechanical stimulation. - [Microfluidics and Analytical Techniques: Benefits, Applications and Integration Strategies ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidics-analytical-techniques/) - Discover how microfluidic analytical techniques improve precision, reproducibility, and automation in spectroscopy, chromatography, and mass spectrometry. - [Prostate Organoid Culture in Microbeads](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/organoid-culture-in-micro-beads/) - Discover the powerful technique of using Microbead for the generation of organoid cultures in 3D matrices to mimic the complex in-vivo cell environment. - [Prostate Organoid Culture in Microbeads](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/organoid-culture-in-micro-beads/) - Discover the powerful technique of using Microbead for the generation of organoid cultures in 3D matrices to mimic the complex in-vivo cell environment. - [Prostate Organoid Culture in Microbeads](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/organoid-culture-in-micro-beads/) - Discover the powerful technique of using Microbead for the generation of organoid cultures in 3D matrices to mimic the complex in-vivo cell environment. - [A Microfluidic Approach for High-Throughput Raman Spectroscopy of Whole Blood](https://www.fluigent.com/resources-support/expertise/customer-case-studies/high-throughput-raman-spectroscopy/) - Discover a microfluidic platform enabling high-throughput Raman spectroscopy of whole blood with rapid acquisition, low noise, and precise flow control. - [Single cell sorting of Fluorescent Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/microfluidic-platform-for-cell-and-particle-sorting-application/) - Perform single cell sorting of 15 and 7 micrometer diameter bead using a microfluidic platform. - [Single cell sorting of Fluorescent Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/microfluidic-platform-for-cell-and-particle-sorting-application/) - Perform single cell sorting of 15 and 7 micrometer diameter bead using a microfluidic platform. - [Single cell sorting of Fluorescent Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/microfluidic-platform-for-cell-and-particle-sorting-application/) - Perform single cell sorting of 15 and 7 micrometer diameter bead using a microfluidic platform. - [MYOCHIP | H2020 European project](https://www.fluigent.com/resources-support/expertise/expertise-reviews/funded-research-program-participation/myochip-h2020-european-project/) - Introduction Myochip: Building a 3D innervated and irrigated muscle on a chip The aim of the European Union’s Horizon H2020 project, Myochip (https://myochip.imm.medicina.ulisboa.pt) is to build a muscle on chip. Myochip gathers 4 partners from all around the world: The institute of molecular medicine (Portugal), The University of Edinburg (Scotland), and Institut Curie (France). Seeding - [Pressure-Controlled Microfluidics in Organ-On-A-Chip Research](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/microfluidic-pressure-control-for-ooac/) - [Comparison] Discover how pressure-controlled microfluidics enhances organ-on-chip systems with stable flow, physiological accuracy, and precise control. - [CEA/CNRS: A flow cell for nanoscopic imaging in liquid](https://www.fluigent.com/resources-support/expertise/customer-case-studies/cea-cnrs-a-flow-cell-dedicated-to-imaging-in-liquid-at-the-nanoscale/) - Development of a flow cell for nanoscopic imaging to analyze inorganic particles in water using nanoscope imaging technology. - [CEA/CNRS: A flow cell for nanoscopic imaging in liquid](https://www.fluigent.com/resources-support/expertise/customer-case-studies/cea-cnrs-a-flow-cell-dedicated-to-imaging-in-liquid-at-the-nanoscale/) - Development of a flow cell for nanoscopic imaging to analyze inorganic particles in water using nanoscope imaging technology. - [CEA/CNRS: A flow cell for nanoscopic imaging in liquid](https://www.fluigent.com/resources-support/expertise/customer-case-studies/cea-cnrs-a-flow-cell-dedicated-to-imaging-in-liquid-at-the-nanoscale/) - Development of a flow cell for nanoscopic imaging to analyze inorganic particles in water using nanoscope imaging technology. - [High-throughput cell DNA screening using digital PCR ](https://www.fluigent.com/resources-support/expertise/application-notes/high-throughput-cell-dna-screening-using-digital-pcr/) - In this app note, we use Fluigent products to perform DNA screenings using digital PCR by isolating individual DNA molecules and analyzing the enzymes resulting from their expression. - [High-throughput cell DNA screening using digital PCR ](https://www.fluigent.com/resources-support/expertise/application-notes/high-throughput-cell-dna-screening-using-digital-pcr/) - In this app note, we use Fluigent products to perform DNA screenings using digital PCR by isolating individual DNA molecules and analyzing the enzymes resulting from their expression. - [High-throughput cell DNA screening using digital PCR ](https://www.fluigent.com/resources-support/expertise/application-notes/high-throughput-cell-dna-screening-using-digital-pcr/) - In this app note, we use Fluigent products to perform DNA screenings using digital PCR by isolating individual DNA molecules and analyzing the enzymes resulting from their expression. - [Microfluidics overview: History and Definition](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidics-definitions-and-advantages/) - Learn all about microfluidics: discover what microfluidics is, the advantages of microfluidics, and a brief historical review of microfluidics. - [Microfluidics overview: History and Definition](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidics-definitions-and-advantages/) - Learn all about microfluidics: discover what microfluidics is, the advantages of microfluidics, and a brief historical review of microfluidics. - [Microfluidic Chitosan Microcapsules Production](https://www.fluigent.com/resources-support/expertise/application-notes/chitosan-microcapsules-production/) - Influence of the fluidic parameters on the size and the release from the oil across the shell are studied and presented for chitosan microcapsules generation. - [Microfluidic Chitosan Microcapsules Production](https://www.fluigent.com/resources-support/expertise/application-notes/chitosan-microcapsules-production/) - Influence of the fluidic parameters on the size and the release from the oil across the shell are studied and presented for chitosan microcapsules generation. - [Microfluidic Chitosan Microcapsules Production](https://www.fluigent.com/resources-support/expertise/application-notes/chitosan-microcapsules-production/) - Influence of the fluidic parameters on the size and the release from the oil across the shell are studied and presented for chitosan microcapsules generation. - [Encapsulation of Cells In Small Double Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/cell-encapsulation-in-small-double-emulsions/) - Method for encapsulation of cells (Human Adult Peripheral Blood Mononuclear Cells) in double emulsions of 50 µm size using the cell encapsulation Platform. - [Microfluidic Spheroid Encapsulation in Alginate Microbeads Using a Sacrificial Oil-Shell Method ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/mammalian-spheroid-encapsulation/) - High-viability mammalian spheroids formed in homogeneous alginate microbeads, practical for lab 3D cell culture. - [Cancer-on-Chip: Modeling the Tumor Microenvironment with Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/cancer-on-chip-models/) - Discover how cancer-on-chip models replicate the tumor microenvironment to study metastasis, improve drug testing, and enable personalized cancer therapies. - [Gut-on-Chip Model Development Using OOAC Platform, Omi](https://www.fluigent.com/resources-support/expertise/application-notes/gut-on-chip-model/) - Create gut-on-chip model with Caco-2 cells. The platform used enables precise control over the microenvironment, mimicking the complex physiological conditions of the human gut. - [Gut-on-Chip Modeling: From Chip Development to Perfusion ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/gut-on-chip-modeling/) - New paper published in the July 2025 issue of Lab on a Chip, demonstrates the use of OMI in organ-on-a-chip research for gut-on-chip modeling. - [Microfluidic Droplet Production Method](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/microfluidic-droplet-production-method/) - Fast and easy screening system to perform monodispersed complex emulsions rapidly (SE & DE). Save time with an integrated, ready-to-use platform. - [Alginate Microcapsule Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microcapsule-synthesis/) - Fast and easy screening system to perform monodispersed complex emulsions rapidly (SE & DE). Save time with an integrated, ready-to-use platform. - [Microfluidic calculators](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/) - DROPLET CALCULATOR FLOW RATE & PRESSURE CALCULATOR - [Precision Microfluidics for Magnetic Nanoparticle Encapsulation](https://www.fluigent.com/resources-support/expertise/application-notes/magnetic-nanoparticle-encapsulation/) - Discover how microfluidics enables stable, uniform encapsulation of magnetic nanoparticles, enhancing biomedical and technological applications. - [A quick and efficient double encapsulation method for FACS-based droplet sorting](https://www.fluigent.com/resources-support/expertise/application-notes/facs-based-droplet-sorting/) - Double emulsion generation for flow cytometry droplet sorting. In this app note, we associate the DE microfluidic platform with FACS technology for bacterial encapsulation. - [PLGA nanoparticle synthesis using 3D microfluidic hydrodynamic focusing](https://www.fluigent.com/resources-support/expertise/application-notes/plga-nanoparticle-synthesis/) - How to perform PLGA nanoparticle synthesis with high monodispersity and in a wide range of particle sizes by varying parameters related to our microfluidic system. - [PLGA nanoparticle synthesis using 3D microfluidic hydrodynamic focusing](https://www.fluigent.com/resources-support/expertise/application-notes/plga-nanoparticle-synthesis/) - How to perform PLGA nanoparticle synthesis with high monodispersity and in a wide range of particle sizes by varying parameters related to our microfluidic system. - [PLGA nanoparticle synthesis using 3D microfluidic hydrodynamic focusing](https://www.fluigent.com/resources-support/expertise/application-notes/plga-nanoparticle-synthesis/) - How to perform PLGA nanoparticle synthesis with high monodispersity and in a wide range of particle sizes by varying parameters related to our microfluidic system. - [1-10 microns PLGA microsphere production using the RayDrop](https://www.fluigent.com/resources-support/expertise/application-notes/plga-microsphere-production/) - We demonstrate the RayDrop Chip’s ability to produce PLGA microsphere in the range of 1 to 10 µm, for encapsulation and drug delivery. - [Cancer Cell Analysis Made Easy with Aria: cell Capture and Labeling](https://www.fluigent.com/resources-support/expertise/application-notes/capture-and-labeling-of-cancer-cells-using-aria/) - A complex microfluidic setup was used for optimal automated capture and labelling of breast cancer cells. - [Cancer Cell Analysis Made Easy with Aria: cell Capture and Labeling](https://www.fluigent.com/resources-support/expertise/application-notes/capture-and-labeling-of-cancer-cells-using-aria/) - A complex microfluidic setup was used for optimal automated capture and labelling of breast cancer cells. - [Cancer Cell Analysis Made Easy with Aria: cell Capture and Labeling](https://www.fluigent.com/resources-support/expertise/application-notes/capture-and-labeling-of-cancer-cells-using-aria/) - A complex microfluidic setup was used for optimal automated capture and labelling of breast cancer cells. - [Controlling Flow Rate and Shear Stress with Omi™ to Study Endothelial Cell Response](https://www.fluigent.com/resources-support/expertise/application-notes/endothelial-cell-culture-under-shear-stress/) - This application note details a workflow to study endothelial elongation and flow-induced responses in a microfluidic environment. Discover how to use Fluigent’s Omi™ platform to culture HUVECs under controlled shear stress. - [Alginate Microbeads Production](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microbeads-production/) - A droplet-based microfluidic method is used to precisely control the production of alginate microbeads without the drawbacks of large size distribution that present other methods. - [Alginate Microbeads Production](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microbeads-production/) - A droplet-based microfluidic method is used to precisely control the production of alginate microbeads without the drawbacks of large size distribution that present other methods. - [Alginate Microbeads Production](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microbeads-production/) - A droplet-based microfluidic method is used to precisely control the production of alginate microbeads without the drawbacks of large size distribution that present other methods. - [Microfluidic Droplet Production Method](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/microfluidic-droplet-production-method/) - Droplet microfluidics is a powerful tool which consists of generating and manipulating micron-sized monodispersed droplets. - [Double Emulsion Generation](https://www.fluigent.com/resources-support/expertise/application-notes/double-emulsion-production/) - In this application note we have demonstrated how we can perform different type of double emulsion generation with a single device. - [Double Emulsion Generation](https://www.fluigent.com/resources-support/expertise/application-notes/double-emulsion-production/) - In this application note we have demonstrated how we can perform different type of double emulsion generation with a single device. - [Double Emulsion Generation](https://www.fluigent.com/resources-support/expertise/application-notes/double-emulsion-production/) - In this application note we have demonstrated how we can perform different type of double emulsion generation with a single device. - [Impedance Measurement of Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/impedance-spectroscopy-for-characterization-and-counting/) - Determine the size of micrometer beads and measure the generation rate of water-in-oil droplets with an Electrical Impedance Spectroscopy Platform. - [Impedance Measurement of Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/impedance-spectroscopy-for-characterization-and-counting/) - Determine the size of micrometer beads and measure the generation rate of water-in-oil droplets with an Electrical Impedance Spectroscopy Platform. - [Impedance Measurement of Microbeads](https://www.fluigent.com/resources-support/expertise/application-notes/impedance-spectroscopy-for-characterization-and-counting/) - Determine the size of micrometer beads and measure the generation rate of water-in-oil droplets with an Electrical Impedance Spectroscopy Platform. - [What is the best method for Microencapsulation of Bacteria and Yeast in Small Double Emulsions?](https://www.fluigent.com/resources-support/expertise/application-notes/what-is-the-best-method-for-microencapsulation-of-bacteria-and-yeast-in-small-double-emulsions/) - This application was developed using dSurf, a discontinued Fluigent product. Discover the 008-Fluorosurfactant, engineered by RAN Biotechnologies, offering similar performance and enhanced usability. Related products - [Generating a water emulsion in an oil solution using a droplet generator chip](https://www.fluigent.com/resources-support/expertise/application-notes/production-of-water-in-oil-emulsions-using-a-droplet-generator-chip/) - Generate water emulsions in oil solutions using the Fluigent microfluidic system including pressure pumps, chemicals, tubing and a Droplet Generator PDMS Chip. - [Generating a water emulsion in an oil solution using a droplet generator chip](https://www.fluigent.com/resources-support/expertise/application-notes/production-of-water-in-oil-emulsions-using-a-droplet-generator-chip/) - Generate water emulsions in oil solutions using the Fluigent microfluidic system including pressure pumps, chemicals, tubing and a Droplet Generator PDMS Chip. - [Generating a water emulsion in an oil solution using a droplet generator chip](https://www.fluigent.com/resources-support/expertise/application-notes/production-of-water-in-oil-emulsions-using-a-droplet-generator-chip/) - Generate water emulsions in oil solutions using the Fluigent microfluidic system including pressure pumps, chemicals, tubing and a Droplet Generator PDMS Chip. - [Water in Fluorocarbon Oil Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/water-in-fluorocarbon-oil-emulsions/) - Achieve reproducible, high-quality water in fluorocarbon oil emulsions with cutting-edge microfluidic devices. Ideal for Drop-Seq and RNA-Seq studies. - [Water in Fluorocarbon Oil Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/water-in-fluorocarbon-oil-emulsions/) - Achieve reproducible, high-quality water in fluorocarbon oil emulsions with cutting-edge microfluidic devices. Ideal for Drop-Seq and RNA-Seq studies. - [Water in Fluorocarbon Oil Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/water-in-fluorocarbon-oil-emulsions/) - Achieve reproducible, high-quality water in fluorocarbon oil emulsions with cutting-edge microfluidic devices. Ideal for Drop-Seq and RNA-Seq studies. - [Users Testimonials - They trust Fluigent's Instruments](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/microfluidic-products-user-testimonials/) - These testimonials give an authentic insight into the life stories of the researchers who have harnessed the precision and innovation of Fluigent's technology. - [Liver–Kidney Organ-On-Chip Model using the Omi™ Dual Platform ](https://www.fluigent.com/resources-support/expertise/application-notes/liver-kidney-organ-on-chip-model/) - To better understand how the liver and kidney jointly process Tacrolimus , researchers developed a interlinked organ-on-chip (OOC) model using the Omi™ Dual Platform. - [The Role of Microfluidics in Advanced Organoid Modeling: from Static to Dynamic ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/microfluidics-in-advanced-organoid-modeling/) - Why and How microfluidic platforms enhance organoid viability, promote tissue maturation, and support vascularization. - [Automating Neuronal Cell Immunofluorescence in Microfluidic Chips](https://www.fluigent.com/resources-support/expertise/application-notes/neuronal-cell-immunofluorescence/) - Streamline immunolabeling of neuronal cells across as many as 4 microfluidic chips with an automated perfusion system. - [Biomechanics of Perfused Kidney-on-Chip Model: Effects of Shear Stress and Pressure ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/biomechanics-of-perfused-kidney-on-chip-model/) - Explore a kidney-on-chip model enabled by precise microfluidic shear stress control. Improve reproducibility and study mechanobiology in organ-on-chip systems. - [Microfluidic Cell Encapsulation for Directed Evolution of Cellulose-Producing Microorganisms](https://www.fluigent.com/resources-support/expertise/customer-case-studies/microfluidic-cell-encapsulation/) - Discover how pressure-driven microfluidics enable high-throughput cell encapsulation for directed evolution and screening of cellulose-producing microbes. - [Analysis of a commercial surfactant for digital PCR assay ](https://www.fluigent.com/resources-support/expertise/application-notes/analysis-of-a-commercial-surfactant-for-digital-pcr/) - In this application note we are investigating the usability of the commercially available surfactant dSurf for an exemplary digital PCR-assay. - [Analysis of a commercial surfactant for digital PCR assay ](https://www.fluigent.com/resources-support/expertise/application-notes/analysis-of-a-commercial-surfactant-for-digital-pcr/) - In this application note we are investigating the usability of the commercially available surfactant dSurf for an exemplary digital PCR-assay. - [Analysis of a commercial surfactant for digital PCR assay ](https://www.fluigent.com/resources-support/expertise/application-notes/analysis-of-a-commercial-surfactant-for-digital-pcr/) - In this application note we are investigating the usability of the commercially available surfactant dSurf for an exemplary digital PCR-assay. - [E. Coli Culture in Droplets Using dSURF Fluorosurfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/e-coli-culture-in-droplets-using-dsurf-fluorosurfactant/) - In collaboration with Oksana Shvydkiv : highlight the biocompatibility of the surfactant dSurf by performing an E. Coli culture in droplets. - [E. Coli Culture in Droplets Using dSURF Fluorosurfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/e-coli-culture-in-droplets-using-dsurf-fluorosurfactant/) - In collaboration with Oksana Shvydkiv : highlight the biocompatibility of the surfactant dSurf by performing an E. Coli culture in droplets. - [E. Coli Culture in Droplets Using dSURF Fluorosurfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/e-coli-culture-in-droplets-using-dsurf-fluorosurfactant/) - In collaboration with Oksana Shvydkiv : highlight the biocompatibility of the surfactant dSurf by performing an E. Coli culture in droplets. - [Microbiome culture in droplet using dsurf surfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/microbiome-culture-in-droplet-using-dsurf-surfactant/) - How to choose the optimal surfactant for long-term incubation while being biocompatible for a wide spectrum of bacterial species. - [Microbiome culture in droplet using dsurf surfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/microbiome-culture-in-droplet-using-dsurf-surfactant/) - How to choose the optimal surfactant for long-term incubation while being biocompatible for a wide spectrum of bacterial species. - [Microbiome culture in droplet using dsurf surfactant ](https://www.fluigent.com/resources-support/expertise/application-notes/microbiome-culture-in-droplet-using-dsurf-surfactant/) - How to choose the optimal surfactant for long-term incubation while being biocompatible for a wide spectrum of bacterial species. - [Using dSurf for High Throughput Laser-Induced Fluorescence Droplet Micro-Thermometry (LuMIn)](https://www.fluigent.com/resources-support/expertise/customer-case-studies/droplet-micro-thermometry-lumin/) - This paper assesses a new temperature measurement method at the micro-scale at high throughput. - [hiPSCs-derived Vascular Organ-on-Chip Model Under Unidirectional Controlled Flow](https://www.fluigent.com/resources-support/expertise/application-notes/hipscs-derived-vascular-organ-on-chip/) - Discover how unidirectional flow drives endothelial alignment and polarization in a hiPSC-derived vascular organ-on-chip using the Omi™ perfusion platform. - [Automated Microfluidic Electrochemistry for Sustainable Cyclohexanol Oxidation](https://www.fluigent.com/resources-support/expertise/customer-case-studies/automated-microfluidic-electrochemistry/) - Automated microfluidic electrochemistry platform for precise, reproducible cyclohexanol electrooxidation, boosting sustainable electrosynthesis and power-to-chemicals research. - [Organ-on-chip Platforms in Modern Drug Development and Testing](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/organ-on-chip-in-drug-development/) - Practical workflows, common organ models, and the evolving regulatory landscape. - [Fluigent Research & Industrial Microfluidic Devices Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/microfluidic-devices-catalog/) - Download our microfluidic catalog and find information on microfluidic equipment (pressure systems, valves, software, packages) and our OEM solutions. - [Fluigent Research & Industrial Microfluidic Devices Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/microfluidic-devices-catalog/) - Download our microfluidic catalog and find information on microfluidic equipment (pressure systems, valves, software, packages) and our OEM solutions. - [Fluigent Research & Industrial Microfluidic Devices Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/microfluidic-devices-catalog/) - Download our microfluidic catalog and find information on microfluidic equipment (pressure systems, valves, software, packages) and our OEM solutions. - [OxyGEN](https://www.fluigent.com/resources-support/support-tools/software/oxygen/) - Download * Required field. For developers, visit our GitHub Fluigent GitHub - [OxyGEN](https://www.fluigent.com/resources-support/support-tools/software/oxygen/) - Download * Required field. For developers, visit our GitHub Fluigent GitHub - [OxyGEN](https://www.fluigent.com/resources-support/support-tools/software/oxygen/) - Download * Required field. For developers, visit our GitHub Fluigent GitHub - [The Importance of Recirculation in Microfluidic Systems: Principles and Applications](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/importance-of-recirculation-in-microfluidic-systems/) - Microfluidic Recirculation in Life-Sciences: principle, advantages, key tips for your set up. How to choose the right flow controller for recirculation and more.. - [5 Key Tips for Starting Organ-on-Chip Models](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/5-tips-for-organ-on-chip-models/) - Discover how to successfully design and implement Organ-on-Chip models, from flow control to physiological design, avoid common pitfalls and boost reproducibility. - [Flow Control Technologies: Comparison between peristaltic, syringe and pressure pumps for microfluidic applications ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/flow-control-technologies/) - Comparison between peristaltic, syringe and pressure pumps for microfluidic applications and how to select the right microfluidic pump? - [Flow Control Technologies: Comparison between peristaltic, syringe and pressure pumps for microfluidic applications ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/flow-control-technologies/) - Comparison between peristaltic, syringe and pressure pumps for microfluidic applications and how to select the right microfluidic pump? - [A Rapid and Target-Specific Exosome Isolation Method Using Aptamer-Based Microfluidics](https://www.fluigent.com/resources-support/expertise/customer-case-studies/exosome-isolation-method/) - Discover a fast, high-purity exosome isolation method using aptamer-based microfluidics for selective EV capture and analysis. - [Pressure-driven flow controllers vs. Syringe pumps: A flow precision evaluation for optical blood imaging.](https://www.fluigent.com/resources-support/expertise/paper-highlights/pressure-driven-flow-controller-vs-syringe-pump/) - This paper highlight evaluates the flow uncertainty for Fluigent MSFC-EZ and syringe pumps and their impact on optical imaging. - [Key considerations for fluidic system integration ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/industrial-oem-expertise/integrating-fluidics-into-your-system/) - In this short blog, we review the most important aspects and reliability indicators to consider when selecting your fluid handling OEM components. - [Key considerations for fluidic system integration ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/industrial-oem-expertise/integrating-fluidics-into-your-system/) - In this short blog, we review the most important aspects and reliability indicators to consider when selecting your fluid handling OEM components. - [Automation in Microfluidics: Real-Time Monitoring and Feedback Loops](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/automation-in-microfluidics/) - Learn how automation in microfluidics enhances precision and reproducibility through real-time monitoring and intelligent feedback control. - [Micropipette Aspiration of Red Blood Cells Mechanosensitivity and Mechanics ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/micropipette-aspiration-of-red-blood-cells/) - Bimodal microscopy measures red blood cell mechanosensitive channel activation and mechanical properties during micropipette aspiration using Flow EZ. - [Addressing Air Bubble Issues in Microfluidic Systems](https://www.fluigent.com/resources-support/expertise/avoid-air-bubbles/) - Explore the impact of air bubbles on microfluidic experiments & discover crucial insights into causes, effects, and effective strategies for resolution. - [Encapsulation of multiple emulsions in a single droplet ](https://www.fluigent.com/resources-support/expertise/application-notes/multiple-emulsion-droplet-generation/) - In this application note, we describe the encapsulation of multiple aqueous “core” droplets inside a single oil droplet called a “shell”. - [Encapsulation of multiple emulsions in a single droplet ](https://www.fluigent.com/resources-support/expertise/application-notes/multiple-emulsion-droplet-generation/) - In this application note, we describe the encapsulation of multiple aqueous “core” droplets inside a single oil droplet called a “shell”. - [Droplet-based Microfluidics - A Complete Guide](https://www.fluigent.com/resources-support/expertise/white-papers/microfluidic-white-paper-droplet-based-microfluidics/) - Complete overview on droplet-based microfluidics, including definitions, the reasons for using droplets, the physics behind microfluidic droplet generation - [Droplet-based Microfluidics - A Complete Guide](https://www.fluigent.com/resources-support/expertise/white-papers/microfluidic-white-paper-droplet-based-microfluidics/) - Complete overview on droplet-based microfluidics, including definitions, the reasons for using droplets, the physics behind microfluidic droplet generation - [Double emulsion for the generation of microcapsules - a Review​](https://www.fluigent.com/resources-support/expertise/white-papers/generation-of-microcapsules/) - In this white paper, we synthetized the generation of microcapsules of various materials ranging between 40µm and 250µm. - [Mastering Microfluidic Chips: An In-Depth Definition](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/what-is-a-microfluidic-chip/) - Get a clear understanding of microfluidic chips with our comprehensive definition. Explore how these devices revolutionize fluid manipulation and analysis - [Mastering Microfluidic Chips: An In-Depth Definition](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/what-is-a-microfluidic-chip/) - Get a clear understanding of microfluidic chips with our comprehensive definition. Explore how these devices revolutionize fluid manipulation and analysis - [Application of microfluidic chip technology ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/microfluidic-chips-key-applications/) - Unlock the endless possibilities with the application of microfluidic chip technology. Explore its diverse uses in research, diagnostics, and biomedical fields - [Application of microfluidic chip technology ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/microfluidic-chips-key-applications/) - Unlock the endless possibilities with the application of microfluidic chip technology. Explore its diverse uses in research, diagnostics, and biomedical fields - [Microgel Crosslinking: Materials, Methods, and Emerging Applications](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/microgel-crosslinking-materials-methods/) - Explore microgel crosslinking methods, key biomaterials, and their advanced applications in tissue engineering, drug delivery, and cell encapsulation. - [Mimicking in-vivo environments: biochemical and biomechanical stimulation ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/biochemical-environment/) - Biochemical and biomechanical stimulation play important roles in regulating cell behavior, phenotypes, metabolic activity and function. - [Mimicking in-vivo environments: biochemical and biomechanical stimulation ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/biochemical-environment/) - Biochemical and biomechanical stimulation play important roles in regulating cell behavior, phenotypes, metabolic activity and function. - [Mimicking in-vivo environments: biochemical and biomechanical stimulation ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/biochemical-environment/) - Biochemical and biomechanical stimulation play important roles in regulating cell behavior, phenotypes, metabolic activity and function. - [Multi-parametric Functional Assays of Cardiac Organ-on-a-Chip using Live-cell Microscopy and Fluigent, Aria](https://www.fluigent.com/resources-support/expertise/customer-case-studies/calcium-transient-imaging-with-aria/) - Perform calcium signaling assays on cardiac OoaC using Aria. Learn how calcium transients and electrophysiology in hiPSC-derived microtissues is analyzed. - [Automating calcium imaging in neural cells with Fluigent’s Aria](https://www.fluigent.com/resources-support/expertise/application-notes/automating-calcium-imaging/) - Explore automated calcium imaging with Fluigent's Aria, enhancing precision and efficiency in neuronal activity analysis. Discover our streamlined protocol. - [Automated immunolabeling to perform highly multiplexed tissue imaging with ARIA](https://www.fluigent.com/resources-support/expertise/customer-case-studies/automated-immunolabeling/) - Automated immunolabeling has been applied to obtain a versatile multiplex optical imaging approach for deep phenotyping and spatial analysis of cells in complex tissues. - [Automated immunolabeling to perform highly multiplexed tissue imaging with ARIA](https://www.fluigent.com/resources-support/expertise/customer-case-studies/automated-immunolabeling/) - Automated immunolabeling has been applied to obtain a versatile multiplex optical imaging approach for deep phenotyping and spatial analysis of cells in complex tissues. - [Automated immunolabeling to perform highly multiplexed tissue imaging with ARIA](https://www.fluigent.com/resources-support/expertise/customer-case-studies/automated-immunolabeling/) - Automated immunolabeling has been applied to obtain a versatile multiplex optical imaging approach for deep phenotyping and spatial analysis of cells in complex tissues. - [Microfluidic Flow Sensing Technologies, A Review](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-flow-sensing-technologies/) - In this review, the different existing microfluidic flow sensing solutions for low-flow liquids are described, with their advantages and current limits. - [Microfluidic Flow Sensing Technologies, A Review](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-flow-sensing-technologies/) - In this review, the different existing microfluidic flow sensing solutions for low-flow liquids are described, with their advantages and current limits. - [Alginate Microcapsule Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microcapsule-synthesis/) - The complex emulsion production platform generated highly monodispersed alginate microcapsules with a size between 212 and 245 µm - [Alginate Microcapsule Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/alginate-microcapsule-synthesis/) - The complex emulsion production platform generated highly monodispersed alginate microcapsules with a size between 212 and 245 µm - [Optimizing Microfluidic Perfusion: Best Practices and Innovations​](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/microfluidic-perfusion-innovation/) - Explore best practices in microfluidic perfusion for organ-on-a-chip, live-cell imaging, drug testing, and advanced flow control systems. - [Microfluidics-Interfaced Capillary Electrophoresis for Continuous Analysis of Nanoparticle–Bioentity Interactions ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/microfluidics-interfaced-capillary-electrophoresis/) - Discover microfluidic interfaced capillary electrophoresis for automated, precise analysis and monitoring of biomolecular interactions and drug delivery. - [PLGA microcapsules synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/plga-microcapsule-synthesis/) - PLGA microcapsules are of great interest for life science applications. This application note focus on microfluidic PLGA microcapsules generation methods. - [PLGA microcapsules synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/plga-microcapsule-synthesis/) - PLGA microcapsules are of great interest for life science applications. This application note focus on microfluidic PLGA microcapsules generation methods. - [PLGA microcapsules synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/plga-microcapsule-synthesis/) - PLGA microcapsules are of great interest for life science applications. This application note focus on microfluidic PLGA microcapsules generation methods. - [Microfluidic Control of Complex Emulsions for Chemical Sensing](https://www.fluigent.com/resources-support/expertise/customer-case-studies/complex-emulsions/) - This case study highlights Rakesh et al.’s successful application of complex emulsions to advance real-time flow sensing technology. - [A review of Organ on Chip Technology - A White Paper](https://www.fluigent.com/resources-support/expertise/white-papers/review-a-guide-to-organs-on-chips/) - In this expert white paper, we provide a comprehensive review of Organ on Chip technology. - [A review of Organ on Chip Technology - A White Paper](https://www.fluigent.com/resources-support/expertise/white-papers/review-a-guide-to-organs-on-chips/) - In this expert white paper, we provide a comprehensive review of Organ on Chip technology. - [A review of Organ on Chip Technology - A White Paper](https://www.fluigent.com/resources-support/expertise/white-papers/review-a-guide-to-organs-on-chips/) - In this expert white paper, we provide a comprehensive review of Organ on Chip technology. - [The Importance of Flow Control Stability in Microfluidics ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/microfluidic-instrument-stability/) - This review compares different flow control systems (syringe pumps, peristaltic pumps, pressure-based controllers) focusing on their performance in terms of stability and response times. - [The Importance of Flow Control Stability in Microfluidics ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/microfluidic-instrument-stability/) - This review compares different flow control systems (syringe pumps, peristaltic pumps, pressure-based controllers) focusing on their performance in terms of stability and response times. - [Discontinued software](https://www.fluigent.com/resources-support/support-tools/software/discontinued-software/) - MAESFLO Content : MAESFLO software and user manual ESS Control software and ESS-related user manuals ESS TTL Configurator software and user manual Flow-Rate Platform (FRP) software and FRP user manuals Script Module and user manual Software Development Kits MFCS™ Series user manuals MAESFLO user manual FLPG user manual Contact us Installation procedure Download and unzip - [Discontinued software](https://www.fluigent.com/resources-support/support-tools/software/discontinued-software/) - MAESFLO Content : MAESFLO software and user manual ESS Control software and ESS-related user manuals ESS TTL Configurator software and user manual Flow-Rate Platform (FRP) software and FRP user manuals Script Module and user manual Software Development Kits MFCS™ Series user manuals MAESFLO user manual FLPG user manual Contact us Installation procedure Download and unzip - [An exploration of Microfluidic technology and fluid handling ](https://www.fluigent.com/resources-support/expertise/white-papers/microfluidic-white-paper/) - Download the white paper. What is microfluidics? What are the main concepts of microfluidics? What are the different microfluidic flow controllers? - [An exploration of Microfluidic technology and fluid handling ](https://www.fluigent.com/resources-support/expertise/white-papers/microfluidic-white-paper/) - Download the white paper. What is microfluidics? What are the main concepts of microfluidics? What are the different microfluidic flow controllers? - [Why Control Shear Stress in Cell Biology?](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/controling-shear-stress/) - Our Shear Stress Calculator helps determine experimental parameters, by predicting the shear stress level induced by a set-up and an application. - [Shear Stress Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/shear-stress-calculator/) - Our Shear Stress Calculator helps determine experimental parameters, by predicting the shear stress level induced by a set-up and an application. - [Shear Stress Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/shear-stress-calculator/) - Our Shear Stress Calculator helps determine experimental parameters, by predicting the shear stress level induced by a set-up and an application. - [Shear Stress Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/shear-stress-calculator/) - Our Shear Stress Calculator helps determine experimental parameters, by predicting the shear stress level induced by a set-up and an application. - [Programmable Injections of Sweeteners with the Fluigent Flow-EZ for Tongue-on-a-chip Receptomics Taste Assay ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/tongue-on-chip-receptomics-taste-assay/) - The microfluidic receptomics-based tongue-on-a-chip platform assesses how taste receptor live cells respond to different sweeteners. - [Human Blood Brain Barrier (BBB) permeability -on-chip assessment ](https://www.fluigent.com/resources-support/expertise/paper-highlights/a-human-bbb-blood-brain-barrier-on-chip-to-assess-vascular-permeability/) - Gain insights into blood-brain barrier bbb permeability and learn more about our accurate bbb model-on-chip developed in partnership with MIT Roger D. Kamm’s group - [Human Blood Brain Barrier (BBB) permeability -on-chip assessment ](https://www.fluigent.com/resources-support/expertise/paper-highlights/a-human-bbb-blood-brain-barrier-on-chip-to-assess-vascular-permeability/) - Gain insights into blood-brain barrier bbb permeability and learn more about our accurate bbb model-on-chip developed in partnership with MIT Roger D. Kamm’s group - [Human Blood Brain Barrier (BBB) permeability -on-chip assessment ](https://www.fluigent.com/resources-support/expertise/paper-highlights/a-human-bbb-blood-brain-barrier-on-chip-to-assess-vascular-permeability/) - Gain insights into blood-brain barrier bbb permeability and learn more about our accurate bbb model-on-chip developed in partnership with MIT Roger D. Kamm’s group - [A mRNA encapsulation platform  integrating Fluigent’s FlowEZ](https://www.fluigent.com/resources-support/expertise/paper-highlights/mrna-encapsulation-platform/) - This paper highlight evaluates a “DNA template-in, mRNA vaccines out” platform for the streamlined and on-demand preparation of mRNA products. - [Solid lipid nanoparticles for biologics and drug encapsulation](https://www.fluigent.com/resources-support/expertise/paper-highlights/solid-lipid-nanoparticles/) - This paper highlight presents a microfluidic approach to create small solid lipid nanoparticles with high encapsulation rates for biologics and drugs with a flow controller. - [Microfluidics in Drug Delivery: A New Era of Precision Medicine](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/microfluidics-in-drug-delivery/) - Explore how microfluidics revolutionizes drug delivery with precise nanoparticle synthesis, microneedles, and organ-on-chip technologies. - [Agarose Microcapsules Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/agarose-microcapsules-synthesis/) - Best method for the production of double agarose microcapsules with precise control of particle, core and shell size. - [Agarose Microcapsules Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/agarose-microcapsules-synthesis/) - Best method for the production of double agarose microcapsules with precise control of particle, core and shell size. - [Agarose Microcapsules Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/agarose-microcapsules-synthesis/) - Best method for the production of double agarose microcapsules with precise control of particle, core and shell size. - [Microfluidic 3D Printing for High-Resolution Multimaterial Fabrication](https://www.fluigent.com/resources-support/expertise/customer-case-studies/microfluidic-3d-printing/) - Microfluidic 3D printing combines flow control and laser lithography to create high-resolution multimaterial structures, enabling advanced cell culture and bioprinting. - [Degasser Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/degasser-datasheet/) - MINI DEGASSING CHAMBER - [Degasser User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/degasser/) - [Flow-EZ and SliceChip for Pancreas on a Chip Study ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/pancreas-on-a-chip-study/) - Explore how the Flow-EZ and SliceChip microfluidic platform optimize pancreas on chip studies by improving oxygenation, waste removal, and real-time imaging for advanced research. - [Compact Vacuum Pump - Technical Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/compact-vacuum-pump/) - [10 Tips for Reliable Droplet Generation](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/10-tips-reliable-droplet-generation/) - Droplet microfluidics enables precise liquid control for drug discovery, diagnostics, and materials. Follow these 10 tips to master stability, flow, and encapsulation. - [Controlled Flow System for Altering Cardiac Mechanical Load in Zebrafish Model](https://www.fluigent.com/resources-support/expertise/customer-case-studies/zebrafish-heart-model/) - A precise flow control system and micro-cannula injection method were developed to regulate atrial preload and assess cardiac function in zebrafish larvae model. - [Microfluidic Transistor for Precise Fluid Control](https://www.fluigent.com/resources-support/expertise/customer-case-studies/microfluidic-transistor-precise-fluid-control/) - This study introduces a microfluidic transistor, mimicking electronic behavior, enabling precise fluid control in lab-on-a-chip systems. - [Why Control Shear Stress in Cell Biology?](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/controling-shear-stress/) - Reproducing a shear-stress in-vitro is critical to better mimic the physiological conditions. - [Why Control Shear Stress in Cell Biology?](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/controling-shear-stress/) - Reproducing a shear-stress in-vitro is critical to better mimic the physiological conditions. - [Cleaning Procedure Flow Units](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/cleaning-procedure-flow-units/) - The following document describes the steps to perform the cleaning of the FLOW UNIT, depending on your application. - [Ensuring Quality Control in Micro-Scale Devices by Innovative Leak Detection Method](https://www.fluigent.com/resources-support/expertise/application-notes/method-for-leak-detection/) - This application note discusses the importance of leak detection on a micro scale and various methodologies to perform it. - [Pressure & Flow Rate Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/flow-rate-pressure-calculator/) - Our Flow Rate & Pressure Calculator helps users to determine the pressure range and flow rate they need to achieve the best results. - [Pressure & Flow Rate Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/flow-rate-pressure-calculator/) - Our Flow Rate & Pressure Calculator helps users to determine the pressure range and flow rate they need to achieve the best results. - [Pressure & Flow Rate Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/flow-rate-pressure-calculator/) - Our Flow Rate & Pressure Calculator helps users to determine the pressure range and flow rate they need to achieve the best results. - [Droplet Sequencing: Drop-Seq method](https://www.fluigent.com/resources-support/expertise/application-notes/drop-seq-method/) - The Drop-Seq method enable you to analyze RNA expression genome-wide in thousands of individual cells at once. - [Droplet Sequencing: Drop-Seq method](https://www.fluigent.com/resources-support/expertise/application-notes/drop-seq-method/) - The Drop-Seq method enable you to analyze RNA expression genome-wide in thousands of individual cells at once. - [Droplet Sequencing: Drop-Seq method](https://www.fluigent.com/resources-support/expertise/application-notes/drop-seq-method/) - The Drop-Seq method enable you to analyze RNA expression genome-wide in thousands of individual cells at once. - [Microfluidic technology for engineered nanoparticles in nanomedicine](https://www.fluigent.com/resources-support/expertise/paper-highlights/microfluidics-technology-for-the-design-and-formulation-of-nanoparticles/) - This article presents the promise of microfluidics in enhancing the characteristics of engineered nanoparticles compared to traditional bulk production methods. - [Emulating the chondrocyte microenvironment using multi-directional mechanical stimulation in a cartilage-on-chip](https://www.fluigent.com/resources-support/expertise/paper-highlights/mechanical-stimulation-in-a-cartilage-on-chip/) - Learn more about join modelling with this cartilage-on-Chip paper review of Paggi et al. published in lab-on-chip paper. - [An automated microfluidic platform for investigating mutation accumulation](https://www.fluigent.com/resources-support/expertise/paper-highlights/mutation-accumulation/) - A microfluidic platform that automates accumulation mutation with potential in mutagenic compound identification and disease modeling. - [FlowBoard and FLOW UNIT+ User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/flow-rate-platform-and-flow-unit-user-manual/) - [Microfluidics for Alginate Microbeads Production - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/microfluidics-for-alginate-microbeads-production-fluigent/) - [Microfluidic Valves : SMART CONTROL and AUTOMATION of your fluidic path - Fluigent](https://www.fluigent.com/resources-support/expertise/video/product-presentations/microfluidic-valves-smart-control-and-automation-of-your-fluidic-path-fluigent/) - [DROPLET STARTER package - Make DROPLETS within minutes!](https://www.fluigent.com/resources-support/expertise/video/product-presentations/droplet-starter-package-make-droplets-within-minutes/) - [DOUBLE EMULSION PRODUCTION: RayDrop Method - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/double-emulsion-production-raydrop-method-tutorial-fluigent/) - [2021 International Bicycle Day at Fluigent Microfluidics](https://www.fluigent.com/resources-support/expertise/video/company-news/2021-international-bicycle-day-at-fluigent-microfluidics/) - [(We are) RECRUITING for the EXPORT | FLUIGENT INTERVIEW (Le Moci web conference)](https://www.fluigent.com/resources-support/expertise/video/company-news/we-are-recruiting-for-the-export-fluigent-interview-le-moci-web-conference/) - [Meet OxyGEN : AUTOMATION and REAL TIME control software - Fluigent](https://www.fluigent.com/resources-support/expertise/video/product-presentations/meet-oxygen-automation-and-real-time-control-software-fluigent/) - [OxyGEN Automations Protocols: Container Blocks for Loops and Conditions](https://www.fluigent.com/resources-support/expertise/video/tutorials/oxygen-automations-protocols-container-blocks-for-loops-and-conditions-tutorial/) - [OxyGEN Automation Protocols: Creation and Editing](https://www.fluigent.com/resources-support/expertise/video/tutorials/oxygen-automation-protocols-creation-and-editing-tutorial/) - [OxyGEN: Advanced Live Control of a Microfluidic Set-Up](https://www.fluigent.com/resources-support/expertise/video/tutorials/oxygen-advanced-live-control-of-a-microfluidic-set-up-tutorial/) - [OxyGEN for Live Control of FLUIGENT Microlfuidic Devices: Getting Started](https://www.fluigent.com/resources-support/expertise/video/tutorials/oxygen-for-live-control-of-fluigent-microlfuidic-devices-getting-started-tutorial/) - [MICROFLUIDIC VALVE AUTOMATION: How to make it easy [SWITCH EZ] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/product-presentations/microfluidic-valve-automation-how-to-make-it-easy-switch-ez-fluigent/) - [Fluigent CELEBRATES its 10 years-old - A JOURNEY to INNOVATION](https://www.fluigent.com/resources-support/expertise/video/company-news/fluigent-celebrates-its-10-years-old-a-journey-to-innovation/) - [ARIA Tutorial Episode 7 : Software Presentation [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-7-software-presentation-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 5 : Perform A Calibration With ARIA [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-5-perform-a-calibration-with-aria-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 6 : Global Handling Of ARIA [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-6-global-handling-of-aria-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 4 : How To Use ARIA Manually [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-4-how-to-use-aria-manually-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 3 : How To Fill Up The Reservoirs [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-3-how-to-fill-up-the-reservoirs-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 2 : Connect To Set The Fluidic Path [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-2-connect-to-set-the-fluidic-path-automated-cell-perfusion-fluigent/) - [ARIA Tutorial Episode 1 : How To Plug An ARIA [automated cell perfusion] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/aria-tutorial-episode-1-how-to-plug-an-aria-automated-cell-perfusion-fluigent/) - [Flow EZ Tutorial Episode 2 : Insert in my setup - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorial-episode-2-insert-in-my-setup-fluigent/) - [Flow EZ Tutorial Episode 1 : Getting started - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorial-episode-1-getting-started-fluigent/) - [Flow EZ Tutorials Episode 3 : Add a Flow EZ - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-3-add-a-flow-ez-fluigent/) - [Flow EZ Tutorials Episode 4 : Apply a pressure order - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-4-apply-a-pressure-order-fluigent/) - [Flow EZ Tutorials Episode 5: Disconnect a Flow EZ - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-5-disconnect-a-flow-ez-fluigent/) - [Flow EZ Tutorials Episode 6: Add my FLOW UNIT - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-6-add-my-flow-unit-fluigent/) - [Flow EZ Tutorials Episode 7: Use the P=0 button - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-7-use-the-p0-button-fluigent/) - [Flow EZ Tutorials Episode 8: Switch it off - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/flow-ez-tutorials-episode-8-switch-it-off-fluigent/) - [MICROFLUIDICS in DROPLET DIGITAL PCR](https://www.fluigent.com/resources-support/expertise/video/fluigent-expertise/microfluidics-in-droplet-digital-pcr/) - [Modular pressure & flow control platform - unboxing & setup](https://www.fluigent.com/resources-support/expertise/video/modular-pressure-flow-control-platform-unboxing-setup/) - [OxyGEN SOFTWARE | The RESULT of 15 YEARS of EXPERIENCE in FLUID MANAGEMENT](https://www.fluigent.com/resources-support/expertise/video/product-presentations/oxygen-software-the-result-of-15-years-of-experience-in-fluid-management/) - [PNEUMATIC VALVE CONTROLLER: How to do multiple and parallel pressurization [P-SWITCH] - Fluigent](https://www.fluigent.com/resources-support/expertise/video/product-presentations/pneumatic-valve-controller-how-to-do-multiple-and-parallel-pressurization-p-switch-fluigent/) - [The NEW GENERATION of PRESSURE CONTROLLERS : LineUp series](https://www.fluigent.com/resources-support/expertise/video/product-presentations/the-new-generation-of-pressure-controllers-lineup-series/) - [TUBING and FITTINGS in MICROFLUIDICS - Fluigent](https://www.fluigent.com/resources-support/expertise/video/fluigent-expertise/tubing-and-fittings-in-microfluidics-fluigent/) - [RayDrop Tutorial episode 6: How To Change Nozzle ? - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-6-how-to-change-nozzle-fluigent/) - [RayDrop Tutorial episode 5: How To Clean the Chamber - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-5-how-to-clean-the-chamber-fluigent/) - [RayDrop Tutorial episode 4: How To Clean the Nozzle (3/3) - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-4-how-to-clean-the-nozzle-3-3-fluigent/) - [RayDrop Tutorial episode 3: How To Clean the Nozzle (2/3) - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-3-how-to-clean-the-nozzle-2-3-fluigent/) - [RayDrop Tutorial episode 2: How To Clean the Nozzle (1/3) ? - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-2-how-to-clean-the-nozzle-1-3-fluigent/) - [RayDrop Tutorial episode 1: How To Fill the Raydrop ? - Fluigent](https://www.fluigent.com/resources-support/expertise/video/tutorials/raydrop-tutorial-episode-1-how-to-fill-the-raydrop-fluigent/) - [Microfluidic Artificial Skin Platform for Sweat Study and Product Development](https://www.fluigent.com/resources-support/expertise/customer-case-studies/artificial-skin-platform/) - This article presents a microfluidics model to mimic skin for sudation research. Our Fluigent's flow controller permits a precise distribution of sweat in artificial skin. - [Drug-Loaded Liposome Preparation Using Microfluidics](https://www.fluigent.com/resources-support/expertise/customer-case-studies/drug-loaded-liposome-preparation/) - Liposome preparation using a complete microfluidic setup (pressure controller) to encapsulate amiodarone, a promising drug in ovarian cancer. - [Creating Microcapsules With PEGDA Hydrogel ](https://www.fluigent.com/resources-support/expertise/application-notes/pegda-hydrogel-microcapsules/) - Monodispersed PEGDA hydrogels microparticles and microcapsules for enhanced stability and controlled release. - [Creating kidney organoids‑vasculature interaction model using Fluigent’s Flow-EZ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/creating-kidney-organoids-vasculature-interaction-model/) - Creation of kidney organoids in vitro model with fully human-cell-derived vascularization with significant potential for developmental studies and drug testing. - [A multiplex microfluidic circuit for blood vessel-on-a-chip perfusion using Fluigent’s FlowEZ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/blood-vessel-on-a-chip/) - A perfusion platform to apply bi-modal mechanical stimulation wall shear stress (WSS) and circumferential strain to up to 12 blood vessel-on-a-chip simultaneously. - [Liposome Production Pack Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/liposome-nanoparticles-production-station-datasheet/) - [Liposome Production Pack User Guide](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/plga-nanoparticle-production-station-user-manual/) - [Real-Time Monitoring Platform for Ocular Drug Delivery, Integrating Fluigent’s Flow EZ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/monitoring-ocular-drug-delivery/) - This customer case study introduces an innovative platform, including Fluigent’s pressure controllers and valves, for ocular drug delivery real-time monitoring. - [Mimicking tumor microenvironment using a 3D microfluidic model to improve cancer investigations ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/mimicking-tumor-microenvironment/) - New 3D model for cancer investigations based on the mimicking of tumor microenvironment using pressure pump to recreate interstitial flow. - [Compact Vacuum Pump - User manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/compact-vacuum-pump/) - [Microfluidic volume definitions](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-volume-definitions/) - This review introduces the definitions of swept volume, internal volume and dead volume, and explains how to reduce these volumes. - [Microfluidic Resistance](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-resistance/) - In a microfluidic set-up, we can calculate two distinct kinds of hydraulic flow resistance, depending on the impact they have on the experiment - [Selecting Microfluidic Tubing ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-tubing/) - Here are general guidelines for choosing the right microfluidic tubing to optimize your experiments. - [Microfluidic Software Review ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/software-in-microfluidics/) - What is software in microfluidics? How is microfluidic software instrumentation typically structured? - [Liposome nanoparticles production station Protocol](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/liposome-nanoparticles-production-station-protocol/) - [UV-Crosslinking of Microparticles](https://www.fluigent.com/resources-support/expertise/application-notes/generation-of-microparticle-with-a-uv-crosslinked-polymer/) - Generation of microparticle with a UV-crosslinked polymer. Hoto obtain a highly reproducible and stable UV-crosslinking of microcapsules process. - [UV-Crosslinking of Microcapsules](https://www.fluigent.com/resources-support/expertise/application-notes/generation-of-microcapsules-with-a-uv-crosslinked-polymer/) - UV-Crosslinking of Microcapsules app note: formation of capsules by consolidating shell phase of the resulting double emulsions by uv-crosslinking of monomers and photoinitiator used as shell phase. - [PLGA Microparticles Synthesis](https://www.fluigent.com/resources-support/expertise/application-notes/plga-microparticle-synthesis/) - PLGA microparticles are of great interest for life science applications. This application note focus on microfluidic PLGA microparticles generation methods. - [Liposome Nanoparticle Synthesis ](https://www.fluigent.com/resources-support/expertise/application-notes/liposome-nanoparticles-synthesis/) - Liposome nanoparticles are specialized delivery vehicles that serve multiple roles in enhancing the capabilities of active pharmaceutical ingredients (APIs). - [Peristaltic Pump vs Pressure-Based Microfluidic Flow Control for Organ on Chip applications](https://www.fluigent.com/resources-support/expertise/application-notes/peristaltic-pump-vs-pressure-based-microfluidic-flow-control-systems-for-organ-on-chip-applications/) - The importance of flow stability in microfluidic systems is demonstrated by performing cell culture using peristaltic pumps or pressure-based flow controllers. - [Development of a human gut-on-chip to assess the effect of shear stress on intestinal functions](https://www.fluigent.com/resources-support/expertise/application-notes/development-of-a-human-gut-on-chip-to-assess-the-effect-of-shear-stress-on-intestinal-functions/) - Our gut-on-chip system offers a way to control the microenvironment of in vitro cultured intestinal epithelium that is closer to the physiological state. - [Microbubble formation using the RayDrop](https://www.fluigent.com/resources-support/expertise/application-notes/generation-of-bubbles-using-the-raydrop/) - We investigated how parameters, such as the geometry of the nozzle and the continuous-phase flow rate, affect the microbubble formation process. - [Automated Immunofluorescence using Aria](https://www.fluigent.com/resources-support/expertise/application-notes/automated-immunofluorescence/) - Discover a novel Automated Immunofluorescence (IF) approach provides researchers with accuracy and reproducibility in cellular and molecular biology imaging experiments - [Long-term fluid recirculation system for Organ-on-a-Chip applications](https://www.fluigent.com/resources-support/expertise/application-notes/recirculation-system-for-ooac-applications/) - Discover our new cutting-edge automated platform for the long-term recirculation of fluid for Organ-on-a-Chip studies, using an advanced microfluidic technology - [Pressure predictions for lab-on-chip operations using a microfluidic network solver and Fluigent PX ](https://www.fluigent.com/resources-support/expertise/application-notes/microfluidic-network-solver/) - The microfluidic network solver mfnSolver is a tool for easy and reliable lab-on-chip operations that offers fast and accurate operating pressure predictions at steady state. - [Protocol - UV crosslinked microcapsule production platform](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/protocol-uv-crosslinked-microcapsule-production-platform/) - [High-speed Microscope Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/digital-high-speed-camera-datasheet/) - [User Manual - UV Module](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/uv-module/) - [Datasheet - UV crosslinked microcapsule production platform](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/uv-crosslinked-microcapsule-production-platform/) - [UV-C and microfluidics for biofilm studies as a new experimentation method](https://www.fluigent.com/resources-support/expertise/customer-case-studies/uvc-microfluidics-for-biofilm-studies/) - Method for the microfluidic study of bacterial biofilms using pressure pump coupled with UV-C emission to target biofilm formation in an area of interest. - [Panel Discussion & Interviews - Microfluidics & Organ-On-Chips](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/microfluidics-panel-discussion-interviews-2022/) - A Microfluidics Panel Discussion & a serie of video interviews of researchers sharing their insights about their respective fields and the benefits of microfluidics. - [Interview with Benoit Scheid from Secoya](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/interview-with-benoit-scheidfrom-secoya/) - Start-up background Can you briefly introduce yourself ? What does your job involve? Benoit Scheid, Senior Researcher, FNRS (National Foundation for Scientific Research). Professor at the “Université Libre de Bruxelles”, teaching microfluidics to bioengineers and biomedical engineers. Research activities focusing on process-orientated microfluidics. Chairman of the Secoya board and scientific advisor. What made you decide - [Fluigent Anniversary, Replay of the lectures & Interviews](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/microfluidics-lectures-interviews/) - Here you can watch replay of the lectures of the most important actors in the field of microfluidics. - [Extended Capabilities of Pressure Driven Flow for Microfluidic Applications](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/extended-capabilities-of-pressure-driven-flow-for-microfluidics-applications/) - Pressure driven flow is crucial in many microfluidic applications as it allows for precise and efficient control of fluid movement at the microscopic scale. - [Microfluidics Video Interviews](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/microfluidics-interviews-video/) - How Fluigent's customers and KOL use microfluidics to achieve outstanding results in their technology experiments. - [A microfluidic Artery-on-a-Chip using Fluigent’s Microfluidic Flow Control System, the MFCS](https://www.fluigent.com/resources-support/expertise/customer-case-studies/artery-on-a-chip-model/) - Innovative Artery-on-a-Chip bridges cell culture and animals, advancing cardiovascular research for prevention, diagnostics, and therapy. - [Flow control for droplet generation using syringe pumps and pressure-based flow controllers ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/droplet-generation-using-syringe-pumps-and-pressure-based-flow-controllers/) - Comparison between syringe and pressure pumps for droplet generation & their impact on droplet diameter over time. - [The Raydrop | A new droplet generation device based on non-embedded co-flow-focusing](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/the-raydrop-a-new-droplet-generation-device-based-on-non-embedded-co-flow-focusing/) - Fluigent has developed a new system to overcome the limitations of common designs used in droplet generation chips. - [CNRS/UTC: study of a liver-on-a-chip model](https://www.fluigent.com/resources-support/expertise/customer-case-studies/liver-on-chip/) - Why develop a microfluidic model for liver tissue culture?Use of Fluigent products for characterizing the microfluidic culture of liver tissue. - [University of Cambridge: Microfluidic GUV production and testing   ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/university-of-cambridge-giant-unilamellar-vesicle-production-and-testing/) - Microfluidic GUV production using OLA method for antimicrobial efficacy and biomimetic vesicle membrane testing. (Keser Lab, Cambridge University). - [Pump Responsiveness in microfluidics ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/microfluidic-instrument-responsiveness/) - One syringe pumps drawback is the slow response time. But, achieving high responsiveness is crucial for the efficiency and reliability of microfluidic applications. - [Success story of SEED Biosciences: Single cell impedance analysis](https://www.fluigent.com/resources-support/expertise/customer-case-studies/success-story-of-seed-biosciences-single-cell-injection-and-impedance-analysis/) - Unlock cellular insights with single cell impedance analysis. Explore SEED Biosciences case story and their flow injection analysis single cell method development. - [Creating a Microfluidic Cancer-on-Chip Platform using Fluigent’s High Throughput Cell Perfusion Pack](https://www.fluigent.com/resources-support/expertise/customer-case-studies/cancer-on-chip-platform-erasmus-biond/) - This innovative and versatile Cancer on Chip platform is capable of sustaining cell viability, proliferation, and tissue structure in breast cancer patient. - [University of Maryland: Microfluidic System for Robotic that can Play Nintendo](https://www.fluigent.com/resources-support/expertise/customer-case-studies/this-is-a-customer-case-study/) - Discover the precision of our microfluidic system: soft robotic hand with integrated fluidic circuitry that can play Nintendo Mario Bros - [Microfabrication of Microfluidic Chips: Materials and Methods ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/microfluidic-chips-materials-and-production-methods/) - Silicone, hydrogel or polymer...We discuss the main materials used for microfluidic chips depending on the end application, and their related production methods. - [Micropipette aspiration of cells and tissues](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/micropipette-cell-and-tissue-aspiration/) - Uncover influences on cell shape, responses to stimuli, transitions from non-tumorigenic to tumorigenic states, and morphogenesis with micropipette aspiration. - [Assess Cell Proliferation Using Pressure as a Tool](https://www.fluigent.com/resources-support/expertise/application-notes/pressure-as-a-tool-to-evaluate-cell-growth/) - An alternative method for real-time cell growth monitoring, coupled with precise flow rate control within a microfluidic chip. Better accuracy and efficiency. - [Oil in Water Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/oil-in-water-emulsions/) - Generate high-quality, monodisperse Oil In Water Emulsions with control of particle size by adjusting the flow of the continuous & dispersed phases. - [Microfluidic calculators](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/) - Find the good parameters in your microfluidic setup using our flow rate & pressure calculator, shear stress calculator or droplet size calculator. - [The Hebrew University: Encapsulation and culture in 3D hydrogels for Single cell sequencing ](https://www.fluigent.com/resources-support/expertise/customer-case-studies/the-hebrew-university-epigenomics-ram-lab/) - CloneSeq: A highly sensitive single-cell analysis platform for the comprehensive characterization of cells from 3D culture. - [Giant Unilamellar Vesicles (GUVs) Production using Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/giant-unilamellar-vesicles-production/) - This review discusses challenges in producing Giant Unilamellar Vesicles (GUVs) and the potential of microfluidics as a promising solution. - [Water in Oil Emulsions](https://www.fluigent.com/resources-support/expertise/application-notes/water-in-oil-emulsions/) - How to generate high-quality, monodisperse Water in Oil Emulsions using pressure based flow controller units and microfluidic devices? - [High Throughput Single Cell Analysis](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/high-throughput-single-cell-analysis/) - Microfluidics has emerged as a powerful tool for high-throughput single cell analysis and manipulation. - [Droplet Size Calculator](https://www.fluigent.com/resources-support/support-tools/microfluidic-calculators/droplet-calculator/) - Estimate the size of your droplets with the Raydrop. Save time and use our calculator to find the set of parameters that best fit your needs! - [Key reliability indicators for OEM components to ensure long-term performance of your flow control system](https://www.fluigent.com/resources-support/expertise/expertise-reviews/industrial-oem-expertise/long-term-performance-oem-flow-control-components/) - Here are listed key performance indicators for OEM components to consider when selecting your fluid handling OEM components? - [STEP file POEM 8C](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-poem-8c/) - [Drawing FOEM Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-foem-assembly/) - [STEP file FOEM Extension Board](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-foem-extension-board/) - [Drawing FOEM Extension Board](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-foem-extension-board/) - [Drawing FOEM Integration Board RS232](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-foem-integration-board-rs232/) - [STEP file FOEM Integration Board RS232](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-foem-integration-board-rs232/) - [Drawing FOEM Integration Board](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-foem-integration-board/) - [STEP file FOEM Integration Board](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-foem-integration-board/) - [Drawing POEM 8C](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-poem-8c/) - [STEP file POEM 4C](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-poem-4c/) - [Drawing POEM 4C](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-poem-4c/) - [STEP file FOEM Pressure Module](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-foem-pressure-module/) - [Drawing FOEM Pressure Module](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-foem-pressure-module/) - [STEP file FOEM Switch Module](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-foem-switch-module/) - [STEP file OEM Flow Sensor](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-oem-flow-sensor/) - [Drawing OEM Flow Sensor Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-oem-flow-sensor-assembly/) - [Drawing OEM Flow Sensor](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-oem-flow-sensor/) - [Drawing RX Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-rx-assembly/) - [STEP file RX Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-rx-assembly/) - [Drawing PX Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/drawing-px-assembly/) - [STEP file PX Assembly](https://www.fluigent.com/resources-support/support-tools/downloads/cad/step-file-px-assembly/) - [Software Development Kit](https://www.fluigent.com/resources-support/support-tools/software/sdk/) - Product webpage Windows/MacOS/Linux version For developers, visit our GitHub Fluigent GitHub - [How to choose a microfluidic chip](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/how-to-choose-a-microfluidic-chip/) - Discover the Function and Importance of Microfluidic Chips. Explore their Connections and Significance in the Outside Environment - [TTP ventus disc pump Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/ttp-ventus-disc-pump-datasheet/) - [Evaluation Kit Fluigent x TTP ventus User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/evaluation-kit-fluigent-x-ttp-ventus-user-manual/) - [Choosing the Right Microfluidic Pressure Range](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidics-tips/choosing-the-right-pressure-range/) - Selecting the right micro-scale fluidic pressure range ensures proper regulation of the flow rate, which is essential to achieving optimal results. - [Raydrop double emulsions datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/raydrop-double-emulsions-datasheet/) - [Cartilage-on-a-chip, an example of complex mechanical stimulation using Fluigent’s technology    ](https://www.fluigent.com/resources-support/expertise/application-notes/cartilage-on-chip-using-fluigent-mfcs-pressure-controller/) - A new method for 3D chondrocyte culture using a microfluidic platform that allows researchers to create a relevant cartilage model, subject to complex mechanical stimulation. - [PX Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/px-specifications/) - [F-OEM Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/f-oem-datasheet/) - [Aria User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/aria-user-manual/) - [Aria SDK User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/aria-sdk-user-manual/) - [Aria datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/aria-datasheet/) - [FS Series User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/fs-series-user-manual/) - [Microfluidics for Transmission Electron Microscopy: Characterization of Copper Electrodeposition](https://www.fluigent.com/resources-support/expertise/application-notes/characterization-of-copper-electrodeposition-in-liquid-phase-electron-microscopy/) - In this application note, we demonstrate how to use a complete experimental setup to observe and characterize copper electrodeposition with liquid-phase TEM. - [University of Rochester: A tissue chip platform for real-time sensing of secreted inflammatory markers using ARIA](https://www.fluigent.com/resources-support/expertise/customer-case-studies/tissue-chip-platform/) - Case study - Development of a cutting-edge technology that utilizes a state-of-the-art microfluidic system in the context of a novel tissue chip platform. - [Passive and active mechanical stimulation in microfluidic systems ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/passive-mechanical-stimulation-induced-by-laminar-and-pulsatile-shear-stress/) - How organ-on-chip models make it possible to analyze multiple factors in a controlled manner – an option that was not available with existing in-vitro systems or animal models. - [Droplet and particle manipulation using electrophoretic flow control](https://www.fluigent.com/resources-support/expertise/application-notes/droplet-and-particle-manipulation-using-electrophoretic-flow-control/) - Most of the time, this implies complex microfabrication processes to build embedded electrodes inside the microfluidic chip. This can be avoided by the use of Fluigent’s Electrowell device, which combines pressurized fluid reservoirs with a choice of electrodes. These charged reservoirs can be simultaneously connected to an MFCS™-EZ pressure controller and a high voltage generator - [Microfluidics for vaccine development ](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidics-for-vaccines-research-and-development/) - New methods such as microfluidics for vaccine research can be used to improve development processes for efficient delivery of mRNA. - [F-OEM User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/f-oem-user-manual/) - [NIFS Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/nifs-specifications/) - [P-OEM Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/p-oem-specifications/) - [F-OEM Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/f-oem-specifications/) - [Fluigent PX Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/fluigent-px-datasheet/) - [Capillary electrophoresis using microfluidic, electrophoretic, and optic modules](https://www.fluigent.com/resources-support/expertise/application-notes/capillary-electrophoresis-using-microfluidic-electrophoretic-and-optic-modules/) - Here we present here the Lego CE system consisting of available ready-to-use electrophoretic and microfluidic modules, including pressure-based flow controllers. - [Reservoir Mixer User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/reservoir-mixer/) - MSV-3500 Multi Speed Vortex is designed for soft or intensive mixing of reagents in different size and type plastic tubes. - [Reservoir Mixer Technical Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/reservoir-mixer/) - Multi Speed VortexMSV-3500 is designed for soft or intensive mixing of reagents in different size and type plastic tubes (0.2to 50 ml). - [FS Series Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/fs-series-specifications/) - [M-X Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/m-x-valve-specifications/) - [L-X Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/l-x-valve-specifications/) - [RX Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/rx-specifications/) - [Aria Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/aria-specifications/) - [2-X Technical Specifications](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/2-x-specifications/) - [Omi Fluigent Technical Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/omi-fluigent-technical-datasheet/) - [Omi Fluigent User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/omi-fluigent-user-manual/) - [M-SWITCH™ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/m-switch-datasheet/) - [FLOW UNIT+ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/flow-unit-plus-datasheet/) - [Digital High-speed Camera User's Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/digital-high-speed-camera-users-manual/) - [NIFS - Non Invasive Flow Sensor Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/nifs-non-invasive-flow-sensor-datasheet/) - [NIFS - Non Invasive Flow Sensor User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/nifs-non-invasive-flow-sensor-user-manual/) - [Droplet starter package datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/droplet-starter-package-datasheet/) - [Droplet Starter Package User's Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/droplet-starter-package-users-manual/) - [OEM Case Study: Microfluidic Drug Screening](https://www.fluigent.com/resources-support/expertise/customer-case-studies/oem-microfluidic-drug-screening/) - How Fluigent helped a group to turn a lab bench microfluidic system into a commercial device for automated microfluidic drug screening - [PRESSURE UNIT User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/pressure-unit-user-manual/) - [Cell Encapsulation Platform User's Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/cell-encapsulation-platform-users-manual/) - [Cell encapsulation platform Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/cell-encapsulation-platform-datasheet/) - [PRESSURE UNIT Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/pressure-unit-datasheet/) - [Fluigent Flow-Rate Platform User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/fluigent-flow-rate-platform-user-manual/) - [Aria technical datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/aria-technical-datasheet/) - [PLGA Nanoparticle Production Station Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/plga-nanoparticle-production-station-datasheet/) - [LineUp™ series User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/lineup-series-user-manual/) - [Recirculation Package Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/recirculation-package-datasheet/) - [Immunostaining Package Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/immunostaining_package_datasheet/) - [PLGA Microparticle production station Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/plga-microparticle-production-station-datasheet/) - [Good practice guide PLGA station](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/good-practice-guide-plga-station/) - [Datasheet Pack Alginate](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/datasheet-pack-alginate/) - [Alginate user manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/alginate-user-manual/) - [FS series Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/fs-series-datasheet/) - [Safety Datasheet FS series](https://www.fluigent.com/resources-support/support-tools/downloads/safety-datasheet/safety-datasheet-fs-series/) - [Raydrop double emulsions protocol](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/raydrop-double-emulsions-protocol/) - [FLPG Plus User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/flpg-plus-user-manual/) - [Complex emulsion production platform datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/complex-emulsion-production-platform-datasheet/) - [OxyGEN User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/oxygen-user-manual/) - [MFCS™-EX Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/mfcs-ex-datasheet/) - [MFCS™-EZ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/mfcs-ez-datasheet/) - [datasheet dSurf](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/datasheet-dsurf/) - [FLOW UNIT Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/flow-unit-datasheet/) - [Educational Packages datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/educational-packages-datasheet/) - [Micropipette aspiration package datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/micropipette-aspiration-package-datasheet/) - [SWITCH EZ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/switch-ez-datasheet/) - [Push-Pull Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/push-pull-datasheet/) - [Flow EZ™ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/flow-ez-datasheet/) - [P-SWITCH Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/p-switch-datasheet/) - [Double emulsions station datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/double-emulsions-station-datasheet/) - [dSurf Safety datasheet 1](https://www.fluigent.com/resources-support/support-tools/downloads/safety-datasheet/dsurf-safety-datasheet-1/) - [Safety datasheet dSurf 2](https://www.fluigent.com/resources-support/support-tools/downloads/safety-datasheet/safety-datasheet-dsurf-2/) - [Safety datasheet dSurf 2](https://www.fluigent.com/resources-support/support-tools/downloads/safety-datasheet/safety-datasheet-dsurf-2-2/) - [Drop-seq protocol](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/drop-seq-protocol/) - [Macosko Drop-seq article](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/macosko-drop-seq-article/) - [McCarroll Drop-seq protocol](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/mccarroll-drop-seq-protocol/) - [FCS2 Chamber temperature instructions](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/fcs2-chamber-temperature-instructions/) - [FCS2 Chamber instructions](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/fcs2-chamber-instructions/) - [Compact Pressure Source User Manual & Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/compact-pressure-source-user-manual-datasheet/) - [Fluigent product icons & images](https://www.fluigent.com/resources-support/support-tools/downloads/fluigent-product-icons-images/fluigent-product-icons-images/) - Image package - [Raydrop single emulsion datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/raydrop-single-emulsion-datasheet/) - [RX Pressure Source Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/rx-pressure-source-datasheet/) - [P-OEM Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/p-oem-datasheet/) - [L-SWITCH™ Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/l-switch-datasheet/) - [FLPG Plus Datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/flpg-plus-datasheet/) - [Drop-seq package datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/drop-seq-package-datasheet/) - [BE-DoubleFlow Standard datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/be-doubleflow-standard-datasheet/) - [BE-flow datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/be-flow-datasheet/) - [BE-Transflow datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/be-transflow-datasheet/) - [BE-Gradient datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/be-gradient-datasheet/) - [EZ-drop datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/ez-drop-datasheet/) - [Drop-seq chip datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/drop-seq-chip-datasheet/) - [P-SWITCH User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/p-switch-user-manual/) - [SWITCH EZ User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/switch-ez-user-manual/) - [MFCS™ series User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/mfcs-series-user-manual/) - [Flow-Rate Platform User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/flow-rate-platform-user-manual/) - [Easy Switch Solutions User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/easy-switch-solutions-user-manual/) - [Software Development Kit User Manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/software-development-kit-user-manual/) - [Pressure predictions for lab-on-a-chip operations using a microfluidic network solver and Fluigent PX](https://www.fluigent.com/resources-support/expertise/application-notes/pressure-predictions-for-lab-on-a-chip-operations-using-a-microfluidic-network-solver-and-fluigent-px/) - [Fluigent product icons & images](https://www.fluigent.com/resources-support/support-tools/downloads/fluigent-product-icons-images/fluigent-product-icons-images/) - Image package - [INDEX | H2020 European project](https://www.fluigent.com/resources-support/expertise/expertise-reviews/funded-research-program-participation/index-h2020-european-project/) - Introduction INDEX: Integrated nanoparticle isolation and detection system for complete on-chip analysis of exosomes The aim of the European Union’s Horizon H2020 project, INDEX (http://www.indexproject.eu/) is to isolate and characterize exosomes available in body fluids through development and integration of novel technological breakthroughs. Index gathers 6 partners from all around the world: National research Council - [Funded research program participation](https://www.fluigent.com/resources-support/expertise/expertise-reviews/funded-research-program-participation/) - MIMLIVER ON CHIP MIMLIVER on CHIP project coordinated by the laboratory of Biomechanics and Bioengineering from UTC/CNRS aims at developing a functional liver-on-chip system to evaluate the toxicity of drugs. It is motivated by the established observation that 90% of potential drug candidates fail in clinical trials due to the lack of relevant models in - [Contact support](https://www.fluigent.com/resources-support/support-tools/contact-support/) - [Contact support](https://www.fluigent.com/resources-support/support-tools/contact-support/) - [The Micro/Nano Bioelectronics and Biosensors (MBIOS) from Tianjin University](https://www.fluigent.com/resources-support/expertise/customer-case-studies/success-story-micronano-bioelectronics-biosensors/) - ”The Fluigent gas pressure pump allowed us to inject our sample solutions under constant pressure which guarantees highly accurate resistive pulse sensing measurement.”Prof. Xuexin Duan – Tianjin University, Department of Precision Instrument Engineering Micro-and nanofluidics for biosensor applications Lab-On-a-Chip (LoC) devices are advantageous as they can offer a wide range of analysis tools from cells - [Double emulsions protocol](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/double-emulsions-protocol/) ## Events - [20 Years of Microfluidics. Your Work in the Spotlight](https://www.fluigent.com/company/events/20-years-of-microfluidics/) - The Fluigent Scientific Challenge has successfully concluded, celebrating innovative applications of microfluidics across research and industry. - [Webinar-Spheroid Encapsulation in Alginate Microbeads Using Microfluidics ](https://www.fluigent.com/company/events/webinar-spheroid/) - March 31 2026 - Our experts present a microfluidic method to generate highly monodisperse alginate microbeads. - [Webinar - Importance of Flow in Organ-on-a-Chip: focusing on Vessel-on-Chip Models](https://www.fluigent.com/company/events/webinar-importance-of-flow-in-organ-on-a-chip/) - Feb 19th, 2026. Join experts from Leiden University Medical Centre for an exclusive webinar on novel methodologies for developing reliable vessel-on-chip models. - [Webinar Complex Microfluidic Emulsions: How to Optimize Production, Flow Control & Monodispersity](https://www.fluigent.com/company/events/webinar-complex-emulsion-flow-control-and-monodispersity/) - May 22, 2025 - Get the best of Flow Control Technologies to perform highly monodispersed droplets. Learn everything you need in our exclusive webinar. - [Our Leading Microfluidics Events in 2026](https://www.fluigent.com/company/events/microfluidics-events-in-2026/) - We’ll be attending top conferences and industry events worldwide, showcasing our latest innovations in microfluidics. - [Our Leading Microfluidics Events in 2025](https://www.fluigent.com/company/events/microfluidics-conferences-2025/) - All the Microfluidics conferences and workshops, Fluigent will attend in 2025. - [Webinar: Importance of Flow in Organ-on-a-Chip, featuring the Gut-on-a-Chip Model](https://www.fluigent.com/company/events/webinar-flow-in-gut-on-chip/) - Featured Talk by Dr. Elise Delannoy from Institute Pasteur Lille, will showcase the Gut-on-Chip (GoC) model, supported by the Omi automated platform. - [Webinar - Liver–Kidney OOC Model to Investigate Drug Disposition](https://www.fluigent.com/company/events/webinar-liver-kidney-ooc-model/) - Join us for an online webinar exploring Tacrolimus Disposition in a Liver–Kidney OOC Model. NOV 25, 2025. Fluigent x University of Limoges. - [Webinar | Advancing Microfluidics through Automation](https://www.fluigent.com/company/events/webinar-microfluidics-through-automation/) - Explore advanced automated flow control solutions to enhance reproducibility and simplify complex microfluidic protocols in OOC, droplet generation, cell studies - [Fluigent at MicroTAS 2025](https://www.fluigent.com/company/events/microtas-2025/) - Find Fluigent at MicroTAS 2025! What is MicroTAS? Where to Find us? OAAC Talk and Microfluidic Workshop Demo... - [Webinar - Microfluidics in the manufacturing of sustainable nanomedicines ](https://www.fluigent.com/company/events/webinar-manufacturing-sustainable-nanomedicines/) - ✅ Explore the revolutionary impact of microfluidics in advancing drug delivery and therapy. - [WEBINAR - Master the production of Double Emulsions](https://www.fluigent.com/company/events/webinar-double-emulsion-production/) - Improve and gain performance in generating the right double emulsions for your needs in academia or industry in the field of cosmetic, food, pharma, or chemical process. - [WEBINAR: Encapsulation of fluorescent bacteria in double emulsions for FACS sorting ](https://www.fluigent.com/company/events/webinar-bacterial-encapsulation-facs/) - Do you want to optimize your FACS experiments by encapsulating single cells or bacteria inside 30µm double emulsions? This webinar is for you! - [Webinar: RBC Mechanics and Channel Activation by Micropipette Aspiration](https://www.fluigent.com/company/events/webinar-rbc-mechanics-by-micropipette-aspiration/) - Webinar Recording: Red Blood Cell Mechanics and Channel Activation by Cellular Micropipette Aspiration with Dr. Dan Cojoc (CNR). - [New Workshop - Microfluidics in Action: Droplets, Flow Control, and Interfaces](https://www.fluigent.com/company/events/workshop-microfluidics-wit-2025/) - 10/15/25: By Fluigent and Wentworth Institute of Technology (WIT) exploring emerging applications & techniques in microfluidics, droplet, and microscale technologies. - [Webinar - New Platform for complex emulsion generation](https://www.fluigent.com/company/events/webinar-complex-emulsion-generation/) - Webinar Replay - Solutions and methods to improve performance in generating the right droplet based emulsion type for your needs. - [WEBINAR - Automated IBEX multiplex immunohistochemistry using Fluigent’s ARIA ](https://www.fluigent.com/company/events/webinar-ibex-multiplex-immunohistochemistry/) - Replay of Dr. Colin Chu and Fluigent's webinar: "Automated IBEX multiplex immunohistochemistry using Fluigent’s perfusion system ARIA” - [Webinar: Microfluidics Innovations in Diagnostics and Cancer Care ](https://www.fluigent.com/company/events/webinar-microfluidics-innovations-in-diagnostics-cancer-care/) - Webinar with Dr. Mehmet Toner. Advanced cancer diagnostics and personalized medicine. Microfluidic transistor’s impact on fluid control & biomedical applications. - [Webinar - Double emulsion production made easy: a reliable device](https://www.fluigent.com/company/events/webinar-double-emulsion-production-device/) - Looking for solutions and methods to improve and gain performance in generating the right double-emulsion for your needs? This webinar may be of benefit to you. - [Webinar - Drug encapsulation in biocompatible microparticles for drug delivery](https://www.fluigent.com/company/events/webinar-drug-encapsulation/) - In this webinar, we discuss how microfluidics can allow API encapsulation into biocompatible and biodegradable microparticles for drug delivery. - [Webinar: Controlled UV-crosslinked microcapsule production using microfluidic technology](https://www.fluigent.com/company/events/webinar-uv-crosslinked-microcapsule-production/) - Latest advances in core-shell microcapsule technology. Microencapsulation as a versatile tool in drug delivery, encapsulation, crystallization, and more. - [MicroTAS 2024](https://www.fluigent.com/company/events/microtas-2024/) - 2024 marks Fluigent’s 14th year participating in MicroTAS! What is MicroTAS? Where to find Us? Industrial Talk and Workshop organized by expert. - [Webinar- Flow Control in Microfluidics ](https://www.fluigent.com/company/events/webinar-flow-control-in-microfluidics/) - Improve Reproducibility and Smooth Workflows As the field of microfluidics advances, flow rate control becomes increasingly important for the success of an experiment or product development. The choice of the right flow controller can contribute positively to this . This webinar, will provide insights from experts in the field on selecting the right flow controller - [Organ-on-a-Chip & Microfluidic Hands-On Workshop LUMC x Fluigent](https://www.fluigent.com/company/events/organ-on-a-chip-workshop-lumc-fluigent/) - Join the LUMC and Fluigent for an exclusive hands-on Organ On Chip workshop on flow control and microfluidic system setup on April 9th 2025. - [Webinar - Mastering Microphysiological Precision with Omi](https://www.fluigent.com/company/events/webinar-mastering-microphysiological-precision-omi/) - Case study: How to automate long-term recirculation of cell culture media with precise flow delivery and shear stress. 19 sept 2024 - [Organ-on-a-Chip Workshop: A LUMC & Fluigent Collaborative Innovation Event](https://www.fluigent.com/company/events/ooac-workshop-lumc-2024/) - When: May 6, 2024Where: Mirai House, Sylviusweg 62, 2333 BE Leiden Workshop Recap: Organ-On-a-Chip It has been a real pleasure teaming up with the LUMC at the 6th of May to create a workshop all around Organ-On-a-Chip. The event was organized in collaboration with Hanna Lammertse from LUMC and Linn Aune from FLUIGENT. There were - [WEBINAR - Concepts of microfluidics](https://www.fluigent.com/company/events/webinar-concepts-microfluidics/) - Understand the controlling principles of microfluidics and how to optimize them for your research field (life science, pharmaceutical, analytical chemistry …) - [COMPAMED 2022](https://www.fluigent.com/company/events/compamed-2022/) - Fluigent will be attending at COMPAMED 2022 in Düsseldorf, Germany on the 14th - 17th November 2022. COMPAMED optimally presents the products, services and solutions used in medical technology from new materials, components, semi-products, packaging and service to the most complex microsystems and nanotechnologies. As every year, COMPAMED is held in conjunction with MEDICA, the - [Microphysio20](https://www.fluigent.com/company/events/microphysio20/) - We are happy to announce you that Fluigent will be present at Microphysio20 in Cargèse, Corsia, France on the 11th - 15th April 2022. The 1st edition of the MicroPhysio conference on "Micro-physiological models: From organoids to organs-on-chip" will take place at the CNRS center in Cargèse. Do not hesitate to contact the person present at this - [Congrès Français de Mécanique 2022](https://www.fluigent.com/company/events/congres-francais-de-mecanique-2022/) - Fluigent will be attending the Congrès Français de Mécanique 2022 in Nantes, France on the 29th August - 02th September 2022 for the "Microfluidics and Nanofluidics" session. The French Mechanical Congress is organized by the French Mechanical Association (AFM) which takes place every 2 years. The 25th edition will take place in Nantes. CFM 2022 - [MicroTAS 2022](https://www.fluigent.com/company/events/microtas-2022/) - Fluigent will be attending at µTAS2022 in Hangzhou, China on the 23th – 27th October 2022. - [SLAS Europe 2022](https://www.fluigent.com/company/events/slas-europe-2022/) - Fluigent will be present at SLAS Europe 2022 in Dublin, Ireland the 24th - 27th May 2022. We are exiting to join the greater scientific and technology community for three days of programming combining scientific education, access to innovative technologies and networking and collaboration opportunities. The conference will deliver unmatched value for professionals and students looking - [24™ Microencapsulation Industrial Convention](https://www.fluigent.com/company/events/24-microencapsulation-industrial-convention/) - Fluigent will be present at the 24™ Microencapsulation Industrial Convention in Rotterdam, The Netherlands the 02 - 05 May 2022. The 24™ Microencapsulation Industrial Convention is a broad state-of-the-art showcase presenting R & D services, Equipment & Tools, Material & Chemicals, Established Techniques in the realm of microencapsulation. Meet your future suppliers of equipment, services - [Webinar - Robust technology for double emulsion production](https://www.fluigent.com/company/events/workshop-double-emulsion-production/) - Webinar recording - Robust technology for microcapsule or microparticle synthesis. Discover the complex emulsion platform. - [Webinar - Polymerization of microfluidics-produced liquid crystal double emulsions for making wavelength and polarization-selective retroreflectors](https://www.fluigent.com/company/events/polymerization-of-microfluidics-produced-liquid-crystal-double-emulsions-for-making-wavelength-and-polarization-selective-retroreflectors/) - Overview: By combining the exquisite control of microfluidic double emulsion production with the self-assembly of liquid crystals, spherical shells with peculiar optical properties can be produced at high throughput and excellent reproducibility. In this webinar by the Experimental Soft Matter Physics (ESMP) group at the University of Luxembourg in collaboration with Fluigent, we will demonstrate, - [Microphysiological Systems World Summit 2022](https://www.fluigent.com/company/events/microphysiological-systems-world-summit-2022/) - Fluigent at the Microphysiological Systems World Summit 2022! We are happy to announce that Fluigent will attend the Microphysiological Systems World Summit 2022 in New Orleans, Ireland from May, 30th to June, 03rd. The Microphysiological Systems (MPS) World Summit brings together a global audience, including institutions, the academic research community, environmental and human toxicity researchers, - [Webinar - Flow sensors in microfluidics: Challenges and new Fluigent sensor to address them](https://www.fluigent.com/company/events/flow-sensors-in-microfluidics-challenges-and-new-fluigent-sensor-to-address-them/) - Importance of flow rate monitoring and control - Main flow sensing technologies on the market and demonstration of flow sensors - [WEBINAR: An one-of-a-kind Organ-on-chip platform](https://www.fluigent.com/company/events/webinar-organ-on-chip-platform/) - Step up your Organ-on-chip game! Discover all the benefits and features about Omi, our Automated organ-on-chip platform. Webiner replay. - [WEBINAR: Single cell encapsulations compatible with FACS sorting, API encapsulations in biocompatible polymers, and more](https://www.fluigent.com/company/events/webinar-cell-encapsulations/) - September 20th 2023 - Single cell encapsulations compatible with FACS sorting, API encapsulations in biocompatible polymers, and more. Register now. - [MicroTAS 2023](https://www.fluigent.com/company/events/microtas-2023/) - Since 2010, Fluigent has the pleasure to participate at each session of the MicroTAS. Fluigent will attending the 27th edition of MicroTAS in Katowice, Poland. - [WEBINAR: Enhancing Microfluidic Cell immunolabeling with Aria Technology ](https://www.fluigent.com/company/events/microfluidic-cell-immunolabeling-webinar/) - Discuss approaches to automating the cellular immunolabeling process using microfluidic devices, thereby increasing efficiency and reproducibility. - [WEBINAR - Raydrop, a universal droplet generator based on a non-embedded co-flow-focusing](https://www.fluigent.com/company/events/webinar-droplet-generator/) - Webinar replay - Raydrop, a universal droplet generator based on a non embedded co flow focusing - features and performance of the Single Emulsion Device. - [WEBINAR – Automated fluid delivery for cell and tissue imaging](https://www.fluigent.com/company/events/webinar-automated-fluid-delivery/) - Gain time, precision and reproducibility with your immunofluorescence assay, or any other assay requiring injection of multiple solutions on your sample - [WEBINAR- How to turn your fluorescence microscope into a spatial omics platform](https://www.fluigent.com/company/events/webinar-spatial-omics-platform/) - In this webinar, I will share my facility experience on how to build spatial omics platforms. - [Webinar - Organ on a Chip Towards the Next Generation of Cell Culture Platforms](https://www.fluigent.com/company/events/webinar-organ-on-a-chip-and-cell-culture-platforms/) - Overview Fluigent and Beonchip are partnering to offer a complete solution for organ on-chip. - [Webinar - LineUp Series, the new generation of microfluidic controllers](https://www.fluigent.com/company/events/webinar-lineup-series/) - Introduction to microfluidic systems and pressure-based flow controller. - [Webinar - Fast Electrical Impedance Spectroscopy for Characterization and Counting](https://www.fluigent.com/company/events/webinar-fast-electrical-impedance-spectroscopy/) - Discover a new method for double emulsion production - [Webinar - Give a new breath to your microfluidic experiments with OxyGEN](https://www.fluigent.com/company/events/webinar-control-automation-software/) - Webinar replay - Give a new breath to your microfluidic experiments with OxyGEN ! - [Webinar - New micropipette aspiration package](https://www.fluigent.com/company/events/webinar-new-micropipette-aspiration/) - Discover with our webinar the new Fluigent micropipette aspiration package. The package allows one to manipulate and characterize cells at the single-cell level. - [Webinar - Automate Cellular Studies with Aria](https://www.fluigent.com/company/events/webinar-automate-cellular-studies/) - You want precise timed delivery of reagents, etc., discover our new system for automating cellular perfusion studies, Aria and minimize operator interaction. - [Bio Japan, 2022](https://www.fluigent.com/company/events/bio-japan-2022/) - Fluigent is happy to partner and shares the booth for Bio Japan with 株式会社ASICON, our official distributor in the Japanese market. We will be attending Asia's Premier Hybrid Partnering Event, Bio Japan conference at Pacifico Yokohama in Japan from Oct.12- Wed. - 14 Fri., 2022 To know more about the event - [NanoBioTech - Montreux 2022](https://www.fluigent.com/company/events/nanobiotech-montreux-2022/) - We are happy to announce that Fluigent will attend NanoBioTech 2022 in Montreux, Switzerland from 14-16 November, 2022. Event details - [CSEM Precision Liquid Handling Workshop 2022](https://www.fluigent.com/company/events/csem-precision-liquid-handling-workshop-2022/) - We are happy to announce that Fluigent will attend CSEM Precision Liqiud Handling Workshop in Zurich, Switzerland on the 30th of November, 2022. Event details - [KU Leuven Institute for Single Cell Omics Kickoff event 2022](https://www.fluigent.com/company/events/ku-leuven-institute-for-single-cell-omics-kickoff-event-2022/) - We are happy to announce that Fluigent will attend the Kickoff event of LISCO on the 25th of November, 2022 in Leuven, Belgium. Event news - [Workshop - Double emulsion production compatible with fluorescence-activated cell sorting (FACS) for cell sorting application](https://www.fluigent.com/company/events/workshop-double-emulsion-production-with-facs/) - Recorded webinarEncapsulate biological materials such as cell inside double emulsions, in an easy and robust way, which are totally compatible with FACS sorting. - [INT: A Decade's perspective on intergrative neuroscience](https://www.fluigent.com/company/events/int-a-decades-perspective-on-intergrative-neuroscience/) - September 29, 2022 Fluigent will be attending the 5th edition of the INT international conference in Marseille from the 29th of September to 30th of September. Click here to know more about the conference - [3D-Models for Drug Testing: Organoids & Tissue Chips 2022](https://www.fluigent.com/company/events/3d-models-for-drug-testing-organoids-tissue-chips-2022/) - We are happy to announce you that Fluigent will be present at the 3D-Models for Drug Testing: Organoids & Tissue Chips 2022 in Seattle, USA on the 13rd and 14th Septamber 2022. This conference is co-located and held concurrently with the following tracks, Extracellular Vesicles 2022: Biology, Disease & Medicine. Do not hesitate to contact - [Oxford Global's Organ Modelling](https://www.fluigent.com/company/events/oxford-globals-organ-modelling/) - Fluigent will be present at the Oxford Global’s Organ Modelling! We are happy to announce that Fluigent will attend the Organ Modelling in London, United Kingdom at April, 21st and April, 22nd. This conference addresses an important and expanding field which provides new understandings in organ functionality and novel approaches to drug development. These engineered - [Innovation in Microfluidics & Single Cell Analysis 2022](https://www.fluigent.com/company/events/biofabrication-and-biomanufacturing-2022/) - Fluigent at the SelectBIO Innovation in Microfluidics & Single Cell Analysis 2022 conference. Fluigent will be attend the SelectBIO Biofabrication and Biomanufacturing conference in Boston on March 21th and 22th 2022. This conference is co-located and held concurrently with the following tracks: Biofabrication and BiomanufacturingRapid diagnostic testing 2022 SARS-CoV2 and beyond This conference brings together - [ClubEmulsion 2022](https://www.fluigent.com/company/events/clubemulsion-2022/) - Fluigent will be happy to be present at the ClubEmulsion 2022 on the campus Pierre et Marie Curie at the Sorbonne University in Paris. This 37 edition will take place on the 9th and 10th June 2022. This national event, which has been held every year for more than 35 years, is an opportunity for - [Bio Valley - OoC Workshop](https://www.fluigent.com/company/events/bio-valley-ooc-workshop/) - Fluigent will be present at BioValley France Organ-On-Chip Workshop to speak about the OoC issues for the health of tomorrow in Paris on February, 23th and February, 24th. Our R&D Project Manager will give a presentation around the subject of “Development of a biomimetic liver microfluidic platform for screening”. Do not hesitate to contact the - [Analytica 2022](https://www.fluigent.com/company/events/analytica-2022/) - Fluigent will be attending the Analytica 2022 on Munich, Germany on the 21th - 24th June 2022. Analitica is the World's Leading Trade Fair for laboratory technology, analysis and biotechnology. The conference has been supporting the development of chemical analytics and bioanalytics for 50 years. And more: It stimulates the transfer of technology and expertise, - [Lab-on-a-Chip and Microfluidics Europe 2022](https://www.fluigent.com/company/events/lab-on-a-chip-and-microfluidics-europe-2022/) - We are happy to announce you that Fluigent will be present at the Lab-on-a-Chip & Microfluidic Europe 2022 in Rotterdam, The Netherland on the 21th and 22th June 2022. This conference is co-located and held concurrently with the following tracks: Point-of-Care, Biosensors & Mobile Diagnostics Europe 2022 TrackOrganoids and Organ-on-a-Chip Europe 2022 Track Do not - [EUROoCS 2022](https://www.fluigent.com/company/events/euroocs-2022/) - In 2022, Fluigent will be participating at the Annual EUROoCS Conference and it will be held in Grenoble in France on 4th and 5th July. The EUROoCS 2022 conference is a scientific meeting referring all aspects related to OoC research, development and application. Topics such as (multi)-organ and disease models, organoids-on-chip, PBPK modeling, technology platforms, - [SLAS2022 International Conference and Exhibition](https://www.fluigent.com/company/events/slas2022-international-conference-and-exhibition/) - Fluigent will be present at SLAS2022 International Conference and Exhibition o represent our new innovation and our new Aria version on Boston, MA, USA. We will be present in person from the 5th to the 9th February 2022. Do not hesitate to contact the person at this event here! - [Workshop Encapsulation of active ingredient in microparticles and microcapsules](https://www.fluigent.com/company/events/workshop-encapsulation-of-active-ingredient-in-microparticles-and-microcapsules/) - Fluigent will present a new physical workshop “Encapsulation of active ingredient in microparticles and microcapsules” in collaboration with Dr Qutachi’s Lab at De Montford University on March 3rd at AM 10 to PM 1 GMT. Overview Are you working in academia or industry in the field of cosmetics, food, pharmaceuticals or chemical processes? If you - [Fluigent at the CES in Las Vegas 2022](https://www.fluigent.com/company/events/fluigent-at-the-ces-in-las-vegas-2022/) - Fluigent wishes you all a wonderful year 2022! 🎉🎊 May the new year bring you happiness, health and success. With a new year, new experience: Fluigent is at the CES in Las Vegas this week. You can meet Malik and Pragnesh and discover all the revolutionary capabilities of microfluidic and what incredible challenges it can meet - [CSEM Second Workshop on Next Gen Organ-on-Chip & Organoids](https://www.fluigent.com/company/events/csem-second-workshop-on-next-gen-organ-on-chip-organoids/) - Fluigent will be attending the CSEM Second Workshop on Next Gen Organ-on-Chip & Organoids in Geneva, Swiss on the 23th and 24th August 2022. The Next Gen Organ-on-Chip & Organoids workshop is an event bringing together decision-makers from the pharma & biotech industry, clinicians, organ-on-chip suppliers, regulatory experts, and research organizations. The workshop offers members - [MicroTas 2021, Fluigent highlights](https://www.fluigent.com/company/events/microtas-2021-fluigent/) - Since 2010, Fluigent has the pleasure to participate at each session of the microTAS. Tis year, the leading conference for microfluidics and lab-on-a-chip is back in a format never seen before with both in-person and online participation options. WHAT IS MICROTAS? Each year the Miniaturized Systems for Chemistry and Life Sciences (MicroTas) addresses scientists and - [Fluigent Anniversary, Replay of the lectures](https://www.fluigent.com/company/events/fluigent-anniversary-replay-of-the-lectures/) - This year marks the 15th Anniversary of the founding of Fluigent. Séverine le Gac Microfluidics for cartillage on chip applications Her research interests focus on the use of microfluidic devices for biological and medical applications, including cancer research, Cartilage On A Chip, and assisted reproductive technologies. She explains how Fluigent instruments help in her research:to - [Fluigent at the microfluidic consortium open day in Paris 2021](https://www.fluigent.com/company/events/fluigent-at-the-microfluidic-consortium-open-day-in-paris-2021/) - Fluigent and Institut Pierre-Gilles de Gennes held microfluidics consortium Open Day in Paris on Dec 1 and 2, 2021. The 2nd of December, we held the MF open days in our headquarters for a tour and 1-2-1 meetings to discuss the latest advancements in microfluidics and talk about our productions processes, R&D projects, and OEM ## Jobs - [ALTERNANCE - Ingénieur Mécanique: Conception et Développement Mécanique](https://www.fluigent.com/zh-hans/company/careers/alternance-ingenieur-mecanique-conception-et-developpement-mecanique/) - Poste et missions De formation ingénieure, tu débutes ta dernière année en Ingénierie conception, tu aimes la conception de produit et le design et tu souhaites réaliser ton alternance en tant qu'Ingénieur conception mécanique. L’équipe mécanique du service R&D, dédiée au développement de systèmes et instruments microfluidiques innovants pour différents secteurs d’activité, sera ravie de - [ALTERNANCE - Contrôle de Gestion](https://www.fluigent.com/zh-hans/company/careers/alternance-controle-de-gestion/) - Poste et missions Au siège, au Kremlin-Bicêtre au pied du métro, tous les métiers de l’entreprise sont regroupés (Recherche & Développement, montage des produits, marketing, vente, SAV) et collaborent ensemble dans un espace lumineux avec les 3 valeurs d’entreprise : intérêt pour le client, l’innovation, et le travail d’équipe. Tu es intéressé par l’univers Start-up/Scale-up en - [Fluigent USA - Product Specialist](https://www.fluigent.com/zh-hans/company/careers/digital-acquisition-communication-manager/) - Poste et missions: Responsibilities As a Product Specialist, one will support our growing US team and lead the customer support function for North America as well as participate in a multi-national team. Being the Fluigent product expert in the US.Interfacing frequently with colleagues in Paris (travel there 1-2 times/year) to facilitate technology transfer.Trouble shoot customer ## Questions - [Do I need to filter my solutions?](https://www.fluigent.com/resources-support/customer-tools/faq/do-i-need-to-filter-my-solutions/) - Yes, we recommend filtering all solutions before starting your experiment. The presence of dust can block the nozzle. - [Do I need to filter my solutions?](https://www.fluigent.com/resources-support/customer-tools/faq/do-i-need-to-filter-my-solutions/) - Yes, we recommend filtering all solutions before starting your experiment. The presence of dust can block the nozzle. - [Do I need to filter my solutions?](https://www.fluigent.com/resources-support/customer-tools/faq/do-i-need-to-filter-my-solutions/) - Yes, we recommend filtering all solutions before starting your experiment. The presence of dust can block the nozzle. - [Do I need to filter my solutions?](https://www.fluigent.com/resources-support/customer-tools/faq/do-i-need-to-filter-my-solutions/) - Yes, we recommend filtering all solutions before starting your experiment. The presence of dust can block the nozzle. - [Can I use electrically charged fluids inside my Flow unit  ?](https://www.fluigent.com/resources-support/customer-tools/faq/can-i-use-electrically-charged-fluids/) - Electrically charged fluids can't be used with Flow unit + (M+ and L+) but standard Flow unit such as XS, S, M, L and XL are compatible. - [How to integrate a FLOW UNIT in the experiment](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-integrate-a-flow-unit-in-the-experiment/) - Integrate the FLOW UNIT to the microfluidic system with the dedicated tubing & fittings. For L or XL FLOW UNIT model: Cut the 1/16’’ OD tubing to the desired length, leaving a square-cut face.Slide the nut over the tubing with the nut thread facing the tubing end being connected.Slip the ferrule over the tubing, with - [How to integrate a FLOW UNIT in the experiment](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-integrate-a-flow-unit-in-the-experiment/) - Integrate the FLOW UNIT to the microfluidic system with the dedicated tubing & fittings. For L or XL FLOW UNIT model: Cut the 1/16’’ OD tubing to the desired length, leaving a square-cut face.Slide the nut over the tubing with the nut thread facing the tubing end being connected.Slip the ferrule over the tubing, with - [How to integrate a FLOW UNIT in the experiment](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-integrate-a-flow-unit-in-the-experiment/) - Integrate the FLOW UNIT to the microfluidic system with the dedicated tubing & fittings. For L or XL FLOW UNIT model: Cut the 1/16’’ OD tubing to the desired length, leaving a square-cut face.Slide the nut over the tubing with the nut thread facing the tubing end being connected.Slip the ferrule over the tubing, with - [Recommendations for fluids](https://www.fluigent.com/resources-support/customer-tools/faq/recommendations-for-fluids/) - Working with multiple liquidsSwitching between multiple liquids can leave transient deposits in the form of liquid layers inside the glass capillary. This is especially common for insoluble liquids, but can happen even with miscible liquid combinations. For example, when IPA is followed by water in a sensor without drying in between, large offsets can be - [Recommendations for fluids](https://www.fluigent.com/resources-support/customer-tools/faq/recommendations-for-fluids/) - Working with multiple liquidsSwitching between multiple liquids can leave transient deposits in the form of liquid layers inside the glass capillary. This is especially common for insoluble liquids, but can happen even with miscible liquid combinations. For example, when IPA is followed by water in a sensor without drying in between, large offsets can be - [Recommendations for fluids](https://www.fluigent.com/resources-support/customer-tools/faq/recommendations-for-fluids/) - Working with multiple liquidsSwitching between multiple liquids can leave transient deposits in the form of liquid layers inside the glass capillary. This is especially common for insoluble liquids, but can happen even with miscible liquid combinations. For example, when IPA is followed by water in a sensor without drying in between, large offsets can be - [Capillary size influence](https://www.fluigent.com/resources-support/customer-tools/faq/capillary-size-influence/) - With the XS FLOW UNIT, the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Capillary size influence](https://www.fluigent.com/resources-support/customer-tools/faq/capillary-size-influence/) - With the XS FLOW UNIT, the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Capillary size influence](https://www.fluigent.com/resources-support/customer-tools/faq/capillary-size-influence/) - With the XS FLOW UNIT, the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Unmatched order and measure](https://www.fluigent.com/resources-support/customer-tools/faq/unmatched-order-and-measure/) - • The flow-rate calculated by the FLOW UNIT is based on a temperature diffusion-advection measurement with the glass capillary. If your fluid is not pure water (or isopropanol) you first need to add a scale factor to calibrate your FLOW UNIT.• There might be a leak within your system. Please check if your system is - [Unmatched order and measure](https://www.fluigent.com/resources-support/customer-tools/faq/unmatched-order-and-measure/) - • The flow-rate calculated by the FLOW UNIT is based on a temperature diffusion-advection measurement with the glass capillary. If your fluid is not pure water (or isopropanol) you first need to add a scale factor to calibrate your FLOW UNIT.• There might be a leak within your system. Please check if your system is - [Unmatched order and measure](https://www.fluigent.com/resources-support/customer-tools/faq/unmatched-order-and-measure/) - • The flow-rate calculated by the FLOW UNIT is based on a temperature diffusion-advection measurement with the glass capillary. If your fluid is not pure water (or isopropanol) you first need to add a scale factor to calibrate your FLOW UNIT.• There might be a leak within your system. Please check if your system is - [Scale factor calculation](https://www.fluigent.com/resources-support/customer-tools/faq/scale-factor-calculation/) - The following section explains how you can calculate this scale factor and shows an example with a fluorinated oil: FC-40.A method for providing a known flow-rate is required to work out the scale factor for the selected fluid. This could be a syringe pump, a peristaltic pump or a pressure regulator delivering fluid onto a - [Scale factor calculation](https://www.fluigent.com/resources-support/customer-tools/faq/scale-factor-calculation/) - The following section explains how you can calculate this scale factor and shows an example with a fluorinated oil: FC-40.A method for providing a known flow-rate is required to work out the scale factor for the selected fluid. This could be a syringe pump, a peristaltic pump or a pressure regulator delivering fluid onto a - [Scale factor calculation](https://www.fluigent.com/resources-support/customer-tools/faq/scale-factor-calculation/) - The following section explains how you can calculate this scale factor and shows an example with a fluorinated oil: FC-40.A method for providing a known flow-rate is required to work out the scale factor for the selected fluid. This could be a syringe pump, a peristaltic pump or a pressure regulator delivering fluid onto a - [Flow-rate is not stable](https://www.fluigent.com/resources-support/customer-tools/faq/flow-rate-is-not-stable/) - Some fluid controllers are unable to limit the fluctuations of the flow-rates around a mean ordered value because of the mechanical actuation they use. How to connect tubing to the FLOW UNIT models Therefore, the flow-rate within your system can be an imprecise response to the fluid controller. Visit us on www.fluigent.com for further information. - [Flow-rate is not stable](https://www.fluigent.com/resources-support/customer-tools/faq/flow-rate-is-not-stable/) - Some fluid controllers are unable to limit the fluctuations of the flow-rates around a mean ordered value because of the mechanical actuation they use. How to connect tubing to the FLOW UNIT models Therefore, the flow-rate within your system can be an imprecise response to the fluid controller. Visit us on www.fluigent.com for further information. - [Flow-rate is not stable](https://www.fluigent.com/resources-support/customer-tools/faq/flow-rate-is-not-stable/) - Some fluid controllers are unable to limit the fluctuations of the flow-rates around a mean ordered value because of the mechanical actuation they use. How to connect tubing to the FLOW UNIT models Therefore, the flow-rate within your system can be an imprecise response to the fluid controller. Visit us on www.fluigent.com for further information. - [Specific cleaning procedure for XS models](https://www.fluigent.com/resources-support/customer-tools/faq/specific-cleaning-procedure-for-xs-models/) - You can find cleaning procedures in the FLOW UNIT cleaning procedure. Concerning specifically the XS FLOW UNIT, it may withstand pressures up to 200 bar, so is it possible to use high pressure or flow-rate pumps in case of clogging. - [Specific cleaning procedure for XS models](https://www.fluigent.com/resources-support/customer-tools/faq/specific-cleaning-procedure-for-xs-models/) - You can find cleaning procedures in the FLOW UNIT cleaning procedure. Concerning specifically the XS FLOW UNIT, it may withstand pressures up to 200 bar, so is it possible to use high pressure or flow-rate pumps in case of clogging. - [Specific cleaning procedure for XS models](https://www.fluigent.com/resources-support/customer-tools/faq/specific-cleaning-procedure-for-xs-models/) - You can find cleaning procedures in the FLOW UNIT cleaning procedure. Concerning specifically the XS FLOW UNIT, it may withstand pressures up to 200 bar, so is it possible to use high pressure or flow-rate pumps in case of clogging. - [Which solvent is compatible with the RayDrop?](https://www.fluigent.com/resources-support/customer-tools/faq/which-solvent-is-compatible-with-the-raydrop/) - As chemicals, can be used ethylacetate, ethanol or IPA. (The nozzle material is not compatible at long-term use with dichloromethane) - [Which solvent is compatible with the RayDrop?](https://www.fluigent.com/resources-support/customer-tools/faq/which-solvent-is-compatible-with-the-raydrop/) - As chemicals, can be used ethylacetate, ethanol or IPA. (The nozzle material is not compatible at long-term use with dichloromethane) - [Which solvent is compatible with the RayDrop?](https://www.fluigent.com/resources-support/customer-tools/faq/which-solvent-is-compatible-with-the-raydrop/) - As chemicals, can be used ethylacetate, ethanol or IPA. (The nozzle material is not compatible at long-term use with dichloromethane) - [There is a fluid leak coming out from the sides of the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-a-fluid-leak-coming-out-from-the-sides-of-the-raydrop/) - Leaks can sometimes appear if the fluidic connectors are not tightened enough. Check that all the connectors are attached firmly. (Be careful not to over tighten or your tubing may be blocked by pinching) - [There is a fluid leak coming out from the sides of the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-a-fluid-leak-coming-out-from-the-sides-of-the-raydrop/) - Leaks can sometimes appear if the fluidic connectors are not tightened enough. Check that all the connectors are attached firmly. (Be careful not to over tighten or your tubing may be blocked by pinching) - [There is a fluid leak coming out from the sides of the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-a-fluid-leak-coming-out-from-the-sides-of-the-raydrop/) - Leaks can sometimes appear if the fluidic connectors are not tightened enough. Check that all the connectors are attached firmly. (Be careful not to over tighten or your tubing may be blocked by pinching) - [How to clean the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-raydrop/) - It is important to clean the RayDrop after each experiment in order to prevent clogging. Refer to the good practice guide for the detailed procedure. - [How to clean the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-raydrop/) - It is important to clean the RayDrop after each experiment in order to prevent clogging. Refer to the good practice guide for the detailed procedure. - [How to clean the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-raydrop/) - It is important to clean the RayDrop after each experiment in order to prevent clogging. Refer to the good practice guide for the detailed procedure. - [How to avoid air bubble infiltration](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-avoid-air-bubble-infiltration/) - Make sure that all tubing is well flushed before connecting the RayDrop. - [How to avoid air bubble infiltration](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-avoid-air-bubble-infiltration/) - Make sure that all tubing is well flushed before connecting the RayDrop. - [How to avoid air bubble infiltration](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-avoid-air-bubble-infiltration/) - Make sure that all tubing is well flushed before connecting the RayDrop. - [How to avoid air bubble infiltration](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-avoid-air-bubble-infiltration/) - Make sure that all tubing is well flushed before connecting the RayDrop. - [How to clean the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-raydrop/) - It is important to clean the RayDrop after each experiment in order to prevent clogging. Refer to the good practice guide for the detailed procedure. - [All my fittings are tight but there is still water flowing out from the RayDrop window](https://www.fluigent.com/resources-support/customer-tools/faq/all-my-fittings-are-tight-but-there-is-still-water-flowing-out-from-the-raydrop-window/) - If the RayDrop has been manipulated (for cleaning or maintenance) the four screws might not be tightened enough. Use an allen key to tighten. - [All my fittings are tight but there is still water flowing out from the RayDrop window](https://www.fluigent.com/resources-support/customer-tools/faq/all-my-fittings-are-tight-but-there-is-still-water-flowing-out-from-the-raydrop-window/) - If the RayDrop has been manipulated (for cleaning or maintenance) the four screws might not be tightened enough. Use an allen key to tighten. - [All my fittings are tight but there is still water flowing out from the RayDrop window](https://www.fluigent.com/resources-support/customer-tools/faq/all-my-fittings-are-tight-but-there-is-still-water-flowing-out-from-the-raydrop-window/) - If the RayDrop has been manipulated (for cleaning or maintenance) the four screws might not be tightened enough. Use an allen key to tighten. - [All my fittings are tight but there is still water flowing out from the RayDrop window](https://www.fluigent.com/resources-support/customer-tools/faq/all-my-fittings-are-tight-but-there-is-still-water-flowing-out-from-the-raydrop-window/) - If the RayDrop has been manipulated (for cleaning or maintenance) the four screws might not be tightened enough. Use an allen key to tighten. - [There is a fluid leak coming out from the sides of the RayDrop](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-a-fluid-leak-coming-out-from-the-sides-of-the-raydrop/) - Leaks can sometimes appear if the fluidic connectors are not tightened enough. Check that all the connectors are attached firmly. (Be careful not to over tighten or your tubing may be blocked by pinching) - [There is an air bubble in the RayDrop. How to get rid of it](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-an-air-bubble-in-the-raydrop-how-to-get-rid-of-it/) - Open the top plugs of the RayDrop. Return to the RayDrop filling state. Refer to the application note protocol. - [There is an air bubble in the RayDrop. How to get rid of it](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-an-air-bubble-in-the-raydrop-how-to-get-rid-of-it/) - Open the top plugs of the RayDrop. Return to the RayDrop filling state. Refer to the application note protocol. - [There is an air bubble in the RayDrop. How to get rid of it](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-an-air-bubble-in-the-raydrop-how-to-get-rid-of-it/) - Open the top plugs of the RayDrop. Return to the RayDrop filling state. Refer to the application note protocol. - [There is an air bubble in the RayDrop. How to get rid of it](https://www.fluigent.com/resources-support/customer-tools/faq/there-is-an-air-bubble-in-the-raydrop-how-to-get-rid-of-it/) - Open the top plugs of the RayDrop. Return to the RayDrop filling state. Refer to the application note protocol. - [Which solvent is compatible with the RayDrop?](https://www.fluigent.com/resources-support/customer-tools/faq/which-solvent-is-compatible-with-the-raydrop/) - As chemicals, can be used ethylacetate, ethanol or IPA. (The nozzle material is not compatible at long-term use with dichloromethane) - [Will capillary size influence the system?](https://www.fluigent.com/resources-support/customer-tools/faq/will-capillary-size-influence-the-system/) - Yes the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Will capillary size influence the system?](https://www.fluigent.com/resources-support/customer-tools/faq/will-capillary-size-influence-the-system/) - Yes the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Will capillary size influence the system?](https://www.fluigent.com/resources-support/customer-tools/faq/will-capillary-size-influence-the-system/) - Yes the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Will capillary size influence the system?](https://www.fluigent.com/resources-support/customer-tools/faq/will-capillary-size-influence-the-system/) - Yes the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Specific cleaning procedure for XS models](https://www.fluigent.com/resources-support/customer-tools/faq/specific-cleaning-procedure-for-xs-models/) - You can find cleaning procedures in the FLOW UNIT cleaning procedure. Concerning specifically the XS FLOW UNIT, it may withstand pressures up to 200 bar, so is it possible to use high pressure or flow-rate pumps in case of clogging. - [Prevent clogging on XS models](https://www.fluigent.com/resources-support/customer-tools/faq/prevent-clogging-on-xs-models/) - It is possible to add a filter in the fluidic path. As an example, you can find among Idex products, biocompatible precolumn filters (references A-355, A-356). These filters are designed for use with 1/16’’ OD tubing. You can choose either 0.5 µm (A-700) or 2 µm (A-701) frit version to filter particles from you flow - [Prevent clogging on XS models](https://www.fluigent.com/resources-support/customer-tools/faq/prevent-clogging-on-xs-models/) - It is possible to add a filter in the fluidic path. As an example, you can find among Idex products, biocompatible precolumn filters (references A-355, A-356). These filters are designed for use with 1/16’’ OD tubing. You can choose either 0.5 µm (A-700) or 2 µm (A-701) frit version to filter particles from you flow - [Prevent clogging on XS models](https://www.fluigent.com/resources-support/customer-tools/faq/prevent-clogging-on-xs-models/) - It is possible to add a filter in the fluidic path. As an example, you can find among Idex products, biocompatible precolumn filters (references A-355, A-356). These filters are designed for use with 1/16’’ OD tubing. You can choose either 0.5 µm (A-700) or 2 µm (A-701) frit version to filter particles from you flow - [Prevent clogging on XS models](https://www.fluigent.com/resources-support/customer-tools/faq/prevent-clogging-on-xs-models/) - It is possible to add a filter in the fluidic path. As an example, you can find among Idex products, biocompatible precolumn filters (references A-355, A-356). These filters are designed for use with 1/16’’ OD tubing. You can choose either 0.5 µm (A-700) or 2 µm (A-701) frit version to filter particles from you flow - [FLOW UNIT does not reach a steady state](https://www.fluigent.com/resources-support/customer-tools/faq/flow-unit-does-not-reach-a-steady-state/) - For some fluid controllers, the settling-time may be long. For this reason, the transition phase after an order change in the fluid controller takes much longer, depending on the nature of the fluid controller. Visit us on www.fluigent.com for further information. - [FLOW UNIT does not reach a steady state](https://www.fluigent.com/resources-support/customer-tools/faq/flow-unit-does-not-reach-a-steady-state/) - For some fluid controllers, the settling-time may be long. For this reason, the transition phase after an order change in the fluid controller takes much longer, depending on the nature of the fluid controller. Visit us on www.fluigent.com for further information. - [FLOW UNIT does not reach a steady state](https://www.fluigent.com/resources-support/customer-tools/faq/flow-unit-does-not-reach-a-steady-state/) - For some fluid controllers, the settling-time may be long. For this reason, the transition phase after an order change in the fluid controller takes much longer, depending on the nature of the fluid controller. Visit us on www.fluigent.com for further information. - [FLOW UNIT does not reach a steady state](https://www.fluigent.com/resources-support/customer-tools/faq/flow-unit-does-not-reach-a-steady-state/) - For some fluid controllers, the settling-time may be long. For this reason, the transition phase after an order change in the fluid controller takes much longer, depending on the nature of the fluid controller. Visit us on www.fluigent.com for further information. - [Flow-rate is not stable](https://www.fluigent.com/resources-support/customer-tools/faq/flow-rate-is-not-stable/) - Some fluid controllers are unable to limit the fluctuations of the flow-rates around a mean ordered value because of the mechanical actuation they use. How to connect tubing to the FLOW UNIT models Therefore, the flow-rate within your system can be an imprecise response to the fluid controller. Visit us on www.fluigent.com for further information. - [Interfacing to the computer](https://www.fluigent.com/resources-support/customer-tools/faq/interfacing-to-the-computer/) - The FLOW UNITS have to be plugged to either Flowboard or to FlOW EZ, which allows the communication between the FLOW UNITS and the computer. - [Interfacing to the computer](https://www.fluigent.com/resources-support/customer-tools/faq/interfacing-to-the-computer/) - The FLOW UNITS have to be plugged to either Flowboard or to FlOW EZ, which allows the communication between the FLOW UNITS and the computer. - [Interfacing to the computer](https://www.fluigent.com/resources-support/customer-tools/faq/interfacing-to-the-computer/) - The FLOW UNITS have to be plugged to either Flowboard or to FlOW EZ, which allows the communication between the FLOW UNITS and the computer. - [Interfacing to the computer](https://www.fluigent.com/resources-support/customer-tools/faq/interfacing-to-the-computer/) - The FLOW UNITS have to be plugged to either Flowboard or to FlOW EZ, which allows the communication between the FLOW UNITS and the computer. - [Scale factor calculation](https://www.fluigent.com/resources-support/customer-tools/faq/scale-factor-calculation/) - The following section explains how you can calculate this scale factor and shows an example with a fluorinated oil: FC-40.A method for providing a known flow-rate is required to work out the scale factor for the selected fluid. This could be a syringe pump, a peristaltic pump or a pressure regulator delivering fluid onto a - [Calibrations other than water or IPA](https://www.fluigent.com/resources-support/customer-tools/faq/calibrations-other-than-water-or-ipa/) - You can calculate a scale factor which will correct the measured flow-rate returned by the FLOW UNIT.The different FLOW UNIT models are calibrated to provide an accurate reading when used with the corresponding fluid, water or isopropyl alcohol.For the FLOW UNIT models XS/XL, only one single calibration for water is available. For the FLOW UNIT - [Calibrations other than water or IPA](https://www.fluigent.com/resources-support/customer-tools/faq/calibrations-other-than-water-or-ipa/) - You can calculate a scale factor which will correct the measured flow-rate returned by the FLOW UNIT.The different FLOW UNIT models are calibrated to provide an accurate reading when used with the corresponding fluid, water or isopropyl alcohol.For the FLOW UNIT models XS/XL, only one single calibration for water is available. For the FLOW UNIT - [Calibrations other than water or IPA](https://www.fluigent.com/resources-support/customer-tools/faq/calibrations-other-than-water-or-ipa/) - You can calculate a scale factor which will correct the measured flow-rate returned by the FLOW UNIT.The different FLOW UNIT models are calibrated to provide an accurate reading when used with the corresponding fluid, water or isopropyl alcohol.For the FLOW UNIT models XS/XL, only one single calibration for water is available. For the FLOW UNIT - [Calibrations other than water or IPA](https://www.fluigent.com/resources-support/customer-tools/faq/calibrations-other-than-water-or-ipa/) - You can calculate a scale factor which will correct the measured flow-rate returned by the FLOW UNIT.The different FLOW UNIT models are calibrated to provide an accurate reading when used with the corresponding fluid, water or isopropyl alcohol.For the FLOW UNIT models XS/XL, only one single calibration for water is available. For the FLOW UNIT - [Reduce flow-rate peaks](https://www.fluigent.com/resources-support/customer-tools/faq/reduce-flow-rate-peaks/) - Most of the times, flow-rate peaks represent air bubbles. In order to get a stable measured flow rate, you have to remove all the air bubbles into your set-up. To achieve this, flush your set up by applying a higher pressure until air bubbles disappeared. Besides, you own flow controller might not deliver a stable - [Reduce flow-rate peaks](https://www.fluigent.com/resources-support/customer-tools/faq/reduce-flow-rate-peaks/) - Most of the times, flow-rate peaks represent air bubbles. In order to get a stable measured flow rate, you have to remove all the air bubbles into your set-up. To achieve this, flush your set up by applying a higher pressure until air bubbles disappeared. Besides, you own flow controller might not deliver a stable - [Reduce flow-rate peaks](https://www.fluigent.com/resources-support/customer-tools/faq/reduce-flow-rate-peaks/) - Most of the times, flow-rate peaks represent air bubbles. In order to get a stable measured flow rate, you have to remove all the air bubbles into your set-up. To achieve this, flush your set up by applying a higher pressure until air bubbles disappeared. Besides, you own flow controller might not deliver a stable - [Reduce flow-rate peaks](https://www.fluigent.com/resources-support/customer-tools/faq/reduce-flow-rate-peaks/) - Most of the times, flow-rate peaks represent air bubbles. In order to get a stable measured flow rate, you have to remove all the air bubbles into your set-up. To achieve this, flush your set up by applying a higher pressure until air bubbles disappeared. Besides, you own flow controller might not deliver a stable - [Unmatched order and measure](https://www.fluigent.com/resources-support/customer-tools/faq/unmatched-order-and-measure/) - • The flow-rate calculated by the FLOW UNIT is based on a temperature diffusion-advection measurement with the glass capillary. If your fluid is not pure water (or isopropanol) you first need to add a scale factor to calibrate your FLOW UNIT.• There might be a leak within your system. Please check if your system is - [Temperature range for optimal accuracy](https://www.fluigent.com/resources-support/customer-tools/faq/temperature-range-for-optimal-accuracy/) - The FLOW UNIT sensors are already temperature compensated, so they work in a range of 10°C to 50°C. This can be useful if your device needs to fit within an incubation chamber. - [Temperature range for optimal accuracy](https://www.fluigent.com/resources-support/customer-tools/faq/temperature-range-for-optimal-accuracy/) - The FLOW UNIT sensors are already temperature compensated, so they work in a range of 10°C to 50°C. This can be useful if your device needs to fit within an incubation chamber. - [Temperature range for optimal accuracy](https://www.fluigent.com/resources-support/customer-tools/faq/temperature-range-for-optimal-accuracy/) - The FLOW UNIT sensors are already temperature compensated, so they work in a range of 10°C to 50°C. This can be useful if your device needs to fit within an incubation chamber. - [Temperature range for optimal accuracy](https://www.fluigent.com/resources-support/customer-tools/faq/temperature-range-for-optimal-accuracy/) - The FLOW UNIT sensors are already temperature compensated, so they work in a range of 10°C to 50°C. This can be useful if your device needs to fit within an incubation chamber. - [Capillary size influence](https://www.fluigent.com/resources-support/customer-tools/faq/capillary-size-influence/) - With the XS FLOW UNIT, the diameter of the capillary is small: 25 µm, so depending on the size of your system, you may need to push your fluids harder to obtain a given flow-rate. Then the maximum pressure drop between the sides of the XS FLOW UNIT model at maximum flow-rate is 0.8 bar. - [Not recommended cleaning methods](https://www.fluigent.com/resources-support/customer-tools/faq/not-recommended-cleaning-methods/) - In general, any cleaning by mechanical means should be avoided. Never enter the sensor flow path with sharp objects that could scratch the glass surface. Furthermore, no abrasives or liquids containing solids that can grind the surface clean should be used. Anything that affects the glass wall will cause deviations in the measurement performance or permanently - [Not recommended cleaning methods](https://www.fluigent.com/resources-support/customer-tools/faq/not-recommended-cleaning-methods/) - In general, any cleaning by mechanical means should be avoided. Never enter the sensor flow path with sharp objects that could scratch the glass surface. Furthermore, no abrasives or liquids containing solids that can grind the surface clean should be used. Anything that affects the glass wall will cause deviations in the measurement performance or permanently - [Not recommended cleaning methods](https://www.fluigent.com/resources-support/customer-tools/faq/not-recommended-cleaning-methods/) - In general, any cleaning by mechanical means should be avoided. Never enter the sensor flow path with sharp objects that could scratch the glass surface. Furthermore, no abrasives or liquids containing solids that can grind the surface clean should be used. Anything that affects the glass wall will cause deviations in the measurement performance or permanently - [Not recommended cleaning methods](https://www.fluigent.com/resources-support/customer-tools/faq/not-recommended-cleaning-methods/) - In general, any cleaning by mechanical means should be avoided. Never enter the sensor flow path with sharp objects that could scratch the glass surface. Furthermore, no abrasives or liquids containing solids that can grind the surface clean should be used. Anything that affects the glass wall will cause deviations in the measurement performance or permanently - [How to use tergazyme](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-use-tergazyme/) - • Make a fresh 1% solution (10 grams per liter) in cold or warm water. If available, use warm water below 130F (55°C). For difficult soils, use very hot water (above 150F or 65°C) and use double the recommended amount of detergent.• Circulate solution slowly for at least 1/2 hour.• RINCE THOROUGHLY—preferably with running water.• - [How to use tergazyme](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-use-tergazyme/) - • Make a fresh 1% solution (10 grams per liter) in cold or warm water. If available, use warm water below 130F (55°C). For difficult soils, use very hot water (above 150F or 65°C) and use double the recommended amount of detergent.• Circulate solution slowly for at least 1/2 hour.• RINCE THOROUGHLY—preferably with running water.• - [How to use tergazyme](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-use-tergazyme/) - • Make a fresh 1% solution (10 grams per liter) in cold or warm water. If available, use warm water below 130F (55°C). For difficult soils, use very hot water (above 150F or 65°C) and use double the recommended amount of detergent.• Circulate solution slowly for at least 1/2 hour.• RINCE THOROUGHLY—preferably with running water.• - [How to use tergazyme](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-use-tergazyme/) - • Make a fresh 1% solution (10 grams per liter) in cold or warm water. If available, use warm water below 130F (55°C). For difficult soils, use very hot water (above 150F or 65°C) and use double the recommended amount of detergent.• Circulate solution slowly for at least 1/2 hour.• RINCE THOROUGHLY—preferably with running water.• - [Recommendations for fluids](https://www.fluigent.com/resources-support/customer-tools/faq/recommendations-for-fluids/) - Working with multiple liquidsSwitching between multiple liquids can leave transient deposits in the form of liquid layers inside the glass capillary. This is especially common for insoluble liquids, but can happen even with miscible liquid combinations. For example, when IPA is followed by water in a sensor without drying in between, large offsets can be - [How to integrate a FLOW UNIT in the experiment](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-integrate-a-flow-unit-in-the-experiment/) - Integrate the FLOW UNIT to the microfluidic system with the dedicated tubing & fittings. For L or XL FLOW UNIT model: Cut the 1/16’’ OD tubing to the desired length, leaving a square-cut face.Slide the nut over the tubing with the nut thread facing the tubing end being connected.Slip the ferrule over the tubing, with - [How to clean the FLOW UNIT after use](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-flow-unit-after-use/) - FLOW UNIT models are highly sensitive and should be properly cleaned to always maintain high performance. With proper care and maintenance, the FLOW UNITs can last many years. No cleaning or improper cleaning may leave deposits on the internal capillary wall which could result in measurement deviations and even clogging. Cleaning the sensor after use - [How to clean the FLOW UNIT after use](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-flow-unit-after-use/) - FLOW UNIT models are highly sensitive and should be properly cleaned to always maintain high performance. With proper care and maintenance, the FLOW UNITs can last many years. No cleaning or improper cleaning may leave deposits on the internal capillary wall which could result in measurement deviations and even clogging. Cleaning the sensor after use - [How to clean the FLOW UNIT after use](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-flow-unit-after-use/) - FLOW UNIT models are highly sensitive and should be properly cleaned to always maintain high performance. With proper care and maintenance, the FLOW UNITs can last many years. No cleaning or improper cleaning may leave deposits on the internal capillary wall which could result in measurement deviations and even clogging. Cleaning the sensor after use - [How to clean the FLOW UNIT after use](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-clean-the-flow-unit-after-use/) - FLOW UNIT models are highly sensitive and should be properly cleaned to always maintain high performance. With proper care and maintenance, the FLOW UNITs can last many years. No cleaning or improper cleaning may leave deposits on the internal capillary wall which could result in measurement deviations and even clogging. Cleaning the sensor after use - [How to set the FRP platform](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-set-the-frp-platform/) - Connect the USB cable between the computer and the Flowboard. The green led is now switched on. Then connect the FLOW UNITs to the Flowboard. - [How to set the FRP platform](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-set-the-frp-platform/) - Connect the USB cable between the computer and the Flowboard. The green led is now switched on. Then connect the FLOW UNITs to the Flowboard. - [How to set the FRP platform](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-set-the-frp-platform/) - Connect the USB cable between the computer and the Flowboard. The green led is now switched on. Then connect the FLOW UNITs to the Flowboard. - [How to set the FRP platform](https://www.fluigent.com/resources-support/customer-tools/faq/how-to-set-the-frp-platform/) - Connect the USB cable between the computer and the Flowboard. The green led is now switched on. Then connect the FLOW UNITs to the Flowboard. ## Timeline Events - [Introduction of the NIFS](https://www.fluigent.com/timeline-event/introduction-of-the-nifs/) ## Categories - [Unkategorisiert](https://www.fluigent.com/de/company/news/category/unkategorisiert/) - [Company news](https://www.fluigent.com/company/news/category/company-news/) - [Fluigent expertise](https://www.fluigent.com/company/news/category/fluigent-expertise/) - [Product news](https://www.fluigent.com/company/news/category/product-news/) - [Organ-On-Chip](https://www.fluigent.com/company/news/category/organ-on-chip/) - [Company news](https://www.fluigent.com/company/news/category/company-news/) - [Company news](https://www.fluigent.com/company/news/category/company-news/) - [Company news](https://www.fluigent.com/company/news/category/company-news/) ## Tags - [Organ-on-chip](https://www.fluigent.com/company/news/tag/organ-on-chip/) ## Catégories de ressource - [Expertise](https://www.fluigent.com/resources-support/expertise/) - Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created content on microfluidics, microfluidic devices, comparison and more to share with the scientific community our knowledge and expertise on this important and relevant growing technology. - [Expert Reviews: Basics of Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/) - Learn about microfluidics, advantages of pressure based flow control and find the latest and most innovative techniques in microfluidics for life science or industry. - [Microfluidic Application Notes](https://www.fluigent.com/resources-support/expertise/application-notes/) - This page features numerous microfluidic application notes explaining the process of how to perform the experiment optimally and efficiently. - [Microfluidics Case Studies](https://www.fluigent.com/resources-support/expertise/customer-case-studies/) - Hear from Fluigent customers and OEM partners about their experience working with us in the microfluidics case studies below. - [General Overview of Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/) - This section will give you all the information regarding Microfluidics: Definitions, Strengths and Weaknesses of the different flow control technologies. - [Microfluidic chips](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/) - Microfluidic chips are devices used in studies in which micro-channels have been molded or patterned. The channels forming the chip are connected together to allow fluids to pass through different channels, going from one place to another. The channel network must be specifically designed for the desired application and analysis, such as cell culture, organ-on-a-chip, DNA analysis, lab-on-a-chip, microfluidic droplets, etc. Learn more about microfluidic chip history, applications, and materials and production methods. - [Microfluidics White Papers](https://www.fluigent.com/resources-support/expertise/white-papers/) - A selection of microfluidics reviews to help researchers, engineers, and industry experts to stay informed and advance their knowledge in this rapidly evolving field. - [Interviews & Testimonials](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/) - See ou testimonials and discover microfluidics with this series of interviews. The aim of this is to provide expanded perspectives based on their experience, as well as to highlight the people who helped to develop this field. We will focus on their motivations, the background of their labs and companies, and their visions for the future of microfluidics. - [Support & Tools](https://www.fluigent.com/resources-support/support-tools/) - [Documentation](https://www.fluigent.com/resources-support/support-tools/downloads/) - [Download software](https://www.fluigent.com/resources-support/support-tools/software/) - [Fluigent Products Datasheets](https://www.fluigent.com/resources-support/support-tools/downloads/technical-datasheets/) - Access Fluigent product datasheets for comprehensive specifications. Explore detailed information to choose the ideal microfluidic solution. Get datasheets now. - [Fluigent products manual](https://www.fluigent.com/resources-support/support-tools/downloads/user-manuals/) - Access Fluigent product manuals for comprehensive guidance. Explore detailed instructions and support to optimize your microfluidic experiments. Get started now. - [Advantages of Pressure-Based Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/) - In microfluidics, different types of flow delivery are used starting from the capillary forces, passing from the mechanical pumping and terminating by the new innovative techniques for fluid actuation such as the patented Fastab and LineUp. In this section, you will have access to all the information regarding the Microfluidic Stability and Responsiveness of the pressure based microfluidic and to a comparison between multiples flow control technologies on the market. - [Droplet & Particle Generation](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/) - Microfluidic droplet experiments arouse more and more interest for scientists. Some microfluidic droplet applications are explained in this section. - [Funded Research Program](https://www.fluigent.com/resources-support/expertise/expertise-reviews/funded-research-program-participation/) - Many national and internationally funded projects bring together science and innovation. These projects cover a large number of subjects. Fluigent takes part in several European and French-funded programs to provide expertise and resources in microfluidics and related applications. - [Microfluidic Cell Biology](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/) - Find expertise pages, reviews to learn more about the advantages, challenges, applications, and latest developments of microfluidic cell biology. - [Safety datasheet](https://www.fluigent.com/resources-support/support-tools/downloads/safety-datasheet/) - This section provides easy access to safety datasheets associated with some products provided by Fluigent. - [Fluigent Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/) - Browse our comprehensive Fluigent catalog for advanced microfluidic solutions. Discover high-quality products and cutting-edge technology for your research needs - [Fluigent Media Kit product icons & images](https://www.fluigent.com/resources-support/support-tools/downloads/fluigent-product-icons-images/) - Download our product pictures, Fluigent Media kit and Fluigent logo in high definition - [Microfluidics Article Reviews](https://www.fluigent.com/resources-support/expertise/paper-highlights/) - This articles reviews page showcases the potential of microfluidics and Fluigent’s technology in advancing scientific research. - [Industrial / OEM Expertise](https://www.fluigent.com/resources-support/expertise/expertise-reviews/industrial-oem-expertise/) - Our OEM microfluidic expertises will give you great insights if you need expertise in microfluidics for your OEM Project. - [微流控技术的定义和物理性质](https://www.fluigent.com/zh-hans/resources-support/expertise/expertise-reviews/concepts-and-physics-of-microfluidics-zh-hans/) - To perform effective experiments in microfluidics, one needs to be aware of the different volumetric control technologies available to use the most suitable way to control microfluidic flows. This section will give you all the information regarding Microfluidic Volume Definition and Resistance, but also on the Strengths and Weaknesses of the different flow control technologies existing on the market. - [Microfluidic chips](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/microfluidic-chips/) - Microfluidic chips are devices used in studies in which micro-channels have been molded or patterned. The channels forming the chip are connected together to allow fluids to pass through different channels, going from one place to another. The channel network must be specifically designed for the desired application and analysis, such as cell culture, organ-on-a-chip, DNA analysis, lab-on-a-chip, microfluidic droplets, etc. Learn more about microfluidic chip history, applications, and materials and production methods. - [Industrial / OEM Expertise](https://www.fluigent.com/resources-support/expertise/expertise-reviews/industrial-oem-expertise/) - Our OEM microfluidic expertises will give you great insights if you need expertise in microfluidics for your OEM Project. - [Microfluidics tips](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidics-tips/) - Microfluidics Tips to Elevate Your Microfluidic Flow Control and setup. - [Microfluidic Cell Biology](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/) - Find expertise pages, reviews to learn more about the advantages, challenges, applications, and latest developments of microfluidic cell biology. - [Microfluidic Application Notes](https://www.fluigent.com/resources-support/expertise/application-notes/) - This page features numerous microfluidic application notes explaining the process of how to perform the experiment optimally and efficiently. - [Advantages of Pressure-Based Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/advantages-of-pressure-based-microfluidics/) - In microfluidics, different types of flow delivery are used starting from the capillary forces, passing from the mechanical pumping and terminating by the new innovative techniques for fluid actuation such as the patented Fastab and LineUp. In this section, you will have access to all the information regarding the Microfluidic Stability and Responsiveness of the pressure based microfluidic and to a comparison between multiples flow control technologies on the market. - [Download software](https://www.fluigent.com/resources-support/support-tools/software/) - [Microfluidics White Papers](https://www.fluigent.com/resources-support/expertise/white-papers/) - A selection of microfluidics reviews to help researchers, engineers, and industry experts to stay informed and advance their knowledge in this rapidly evolving field. - [Support & Tools](https://www.fluigent.com/resources-support/support-tools/) - [Microfluidics Case Studies](https://www.fluigent.com/resources-support/expertise/customer-case-studies/) - Hear from Fluigent customers and OEM partners about their experience working with us in the microfluidics case studies below. - [Expert Reviews: Basics of Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/) - Learn about microfluidics, advantages of pressure based flow control and find the latest and most innovative techniques in microfluidics for life science or industry. - [Expert Reviews: Basics of Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/) - Learn about microfluidics, advantages of pressure based flow control and find the latest and most innovative techniques in microfluidics for life science or industry. - [微流控系统的要素](https://www.fluigent.com/zh-hans/resources-support/expertise-zh-hans/expertise-reviews-zh-hans/elements-of-a-microfluidic-system-zh-hans/) - [미세유체 시스템의 요소](https://www.fluigent.com/ko/resources-support/expertise-reviews-ko/elements-of-a-microfluidic-system-ko/) - [미세유체학의 개념과 물리학](https://www.fluigent.com/ko/resources-support/expertise-reviews-ko/concepts-and-physics-of-microfluidics-ko/) - [General Overview of Microfluidics](https://www.fluigent.com/resources-support/expertise/expertise-reviews/what-is-microfluidics/) - This section will give you all the information regarding Microfluidics: Definitions, Strengths and Weaknesses of the different flow control technologies. - [Fluigent Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/) - Browse our comprehensive Fluigent catalog for advanced microfluidic solutions. Discover high-quality products and cutting-edge technology for your research needs - [Microfluidics Article Reviews](https://www.fluigent.com/resources-support/expertise/paper-highlights/) - This articles reviews page showcases the potential of microfluidics and Fluigent’s technology in advancing scientific research. - [Expertise](https://www.fluigent.com/resources-support/expertise/) - Fluigent was the first company to introduce pressure-driven flow control to the microfluidic research market, as opposed to conventional syringe and peristaltic pumps. As one of the pioneers in microfluidics, we have set the standard in microfluidic control and strive to stay in the forefront of the science. We created content on microfluidics, microfluidic devices, comparison and more to share with the scientific community our knowledge and expertise on this important and relevant growing technology. - [Documentation](https://www.fluigent.com/resources-support/support-tools/downloads/) - [Videos](https://www.fluigent.com/resources-support/expertise/video/) - [Microfluidic Application Notes](https://www.fluigent.com/resources-support/expertise/application-notes/) - This page features numerous microfluidic application notes explaining the process of how to perform the experiment optimally and efficiently. - [Microfluidics Case Studies](https://www.fluigent.com/resources-support/expertise/customer-case-studies/) - Hear from Fluigent customers and OEM partners about their experience working with us in the microfluidics case studies below. - [Download software](https://www.fluigent.com/resources-support/support-tools/software/) - [Fluigent Catalog](https://www.fluigent.com/resources-support/support-tools/downloads/catalog/) - Browse our comprehensive Fluigent catalog for advanced microfluidic solutions. Discover high-quality products and cutting-edge technology for your research needs - [Tutorial videos](https://www.fluigent.com/resources-support/expertise/video/tutorials/) - [Product presentation videos](https://www.fluigent.com/resources-support/expertise/video/product-presentations/) - [Company videos](https://www.fluigent.com/resources-support/expertise/video/company-news/) - [Expertise videos](https://www.fluigent.com/resources-support/expertise/video/fluigent-expertise/) - [CAD](https://www.fluigent.com/resources-support/support-tools/downloads/cad/) - Here you find Fluigent Computer-Aided Design (CAD) files for you engineering. - [Product testimonials](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/product-testimonials/) - [Interview Videos](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/interview-videos/) - [Written interviews](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/written-interviews/) - [Lectures](https://www.fluigent.com/resources-support/expertise/interviews-testimonials/lectures/) - [Support & Tools](https://www.fluigent.com/resources-support/support-tools/) - [Microfluidic Cell Biology](https://www.fluigent.com/resources-support/expertise/expertise-reviews/microfluidic-cell-biology/) - Find expertise pages, reviews to learn more about the advantages, challenges, applications, and latest developments of microfluidic cell biology. - [Microfluidics Article Reviews](https://www.fluigent.com/resources-support/expertise/paper-highlights/) - This articles reviews page showcases the potential of microfluidics and Fluigent’s technology in advancing scientific research. - [Microfluidics White Papers](https://www.fluigent.com/resources-support/expertise/white-papers/) - A selection of microfluidics reviews to help researchers, engineers, and industry experts to stay informed and advance their knowledge in this rapidly evolving field. - [Droplet & Particle Generation](https://www.fluigent.com/resources-support/expertise/expertise-reviews/droplet-and-particle-generation-in-microfluidics/) - Microfluidic droplet experiments arouse more and more interest for scientists. Some microfluidic droplet applications are explained in this section. ## Catégories de produit - [Research](https://www.fluigent.com/research/) - [Industrial](https://www.fluigent.com/microfluidic-oem/) - [Microfluidic Instruments](https://www.fluigent.com/research/instruments/) - Fluigent microfluidic instruments have been proven for a broad range of industries: (life sciences, water management, cosmetics, food & beverage, etc.). - [Microfluidic Pressure Based Flow Controller](https://www.fluigent.com/research/instruments/pressure-flow-controllers/) - Microfluidic pressure based flow controllers have been shown to give better results due to their high accuracy and stability, as well as their fast response time. - [Microfluidic Sensors](https://www.fluigent.com/research/instruments/sensors/) - Fluigent set of microfluidic sensors allows to control and monitor directly in flow rate or to extend the measurement of pressure/vacuum in the set-up. - [Microfluidic Valves](https://www.fluigent.com/research/instruments/microfluidic-valves/) - Our Microfluidic valves are the perfect tools for applications such as sequential injections, sample distributions, recirculation and sorting operations. - [Pressure Control Reservoirs](https://www.fluigent.com/research/instruments/sample-reservoirs/) - Fluigent has engineered air-tight caps / pressure control reservoirs dedicated for microfluidic experiment. Discover our range of products. - [Microfluidic Pressure Sources](https://www.fluigent.com/research/instruments/pressure-sources/) - Our range of pressure and vacuum sources have been carefully selected and developed to supply optimized performance for the whole Fluigent product range. - [Microfluidic Chips](https://www.fluigent.com/research/instruments/microfluidic-chips/) - [Microfluidic Accessories](https://www.fluigent.com/research/instruments/accessories/) - Our range of microfluidics accessories streamlines your research process by enhancing the management and visualization of microfluid components! - [Microfluidic Packs](https://www.fluigent.com/research/instruments/packages/) - Discover Fluigent microfluidic product packages - We gathered all the necessary components for users to begin specific microfluidic applications. - [Microfluidic Application Packs](https://www.fluigent.com/research/instruments/packages/application-packages/) - We built microfluidic application packages with pressure/flow controllers, microfluidic chips, and valves fit for your application. - [Microfluidic Starter Packs](https://www.fluigent.com/research/instruments/packages/starter-packages/) - Generate droplets in a user-friendly manner with our Droplet Generation Pack, or learn and teach microfluidics with our Educational Packs. - [Droplet Generation Microfluidic Chips](https://www.fluigent.com/research/instruments/microfluidic-chips/droplet-particle-generation/) - Explore our cutting-edge droplet generation microfluidic chips. Achieve precise and efficient droplet formation for various applications. Enhance your research with advanced technology - [Cell Culture, Organ on a chip and Microscopy](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/) - [Microfluidic OEM Devices](https://www.fluigent.com/microfluidic-oem/industrial-products/) - Ranging from one pump to fully integrated microfluidic OEM devices and systems. - [Microfluidic OEM Components](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/) - Standard products to handle fluids in industrial systems. - [Customizable OEM Flow Control Modules](https://www.fluigent.com/microfluidic-oem/industrial-products/customized-products/) - Modular Pressure based platform to address the specific fluid control needs of your application. - [OEM Microfluidic Valves](https://www.fluigent.com/microfluidic-oem/industrial-products/standard-industrial-components/microfluidic-valves-2/) - Automate your microfluidic workflow with our easy-to-integrate microfluidic valves. - [LineUp series](https://www.fluigent.com/research/instruments/pressure-flow-controllers/lineup-series/) - [Software Solutions](https://www.fluigent.com/research/software-solutions/) - Intuitive software control of Fluigent microfluidic instruments for basic control, complex workflow and system automation. - [LineUp系列产品](https://www.fluigent.com/zh-hans/research-zh-hans/仪器/lineup系列产品/) - [Microfluidic Valves](https://www.fluigent.com/research/instruments/microfluidic-valves/) - Our Microfluidic valves are the perfect tools for applications such as sequential injections, sample distributions, recirculation and sorting operations. - [Microfluidic Instruments](https://www.fluigent.com/research/instruments/) - Fluigent microfluidic instruments have been proven for a broad range of industries: (life sciences, water management, cosmetics, food & beverage, etc.). - [Fluigent Technologies](https://www.fluigent.com/microfluidic-oem/fluigent-technologies/) - [Microfluidic OEM Devices](https://www.fluigent.com/microfluidic-oem/industrial-products/) - Ranging from one pump to fully integrated microfluidic OEM devices and systems. - [Microfluidic Application Packs](https://www.fluigent.com/research/instruments/packages/application-packages/) - We built microfluidic application packages with pressure/flow controllers, microfluidic chips, and valves fit for your application. - [Microfluidic OEM Devices](https://www.fluigent.com/microfluidic-oem/industrial-products/) - Ranging from one pump to fully integrated microfluidic OEM devices and systems. - [Microfluidic Packs](https://www.fluigent.com/research/instruments/packages/) - Discover Fluigent microfluidic product packages - We gathered all the necessary components for users to begin specific microfluidic applications. - [Industrial](https://www.fluigent.com/microfluidic-oem/) - [Industrial](https://www.fluigent.com/microfluidic-oem/) - [Kits](https://www.fluigent.com/research/kits/) - [Kits](https://www.fluigent.com/research/kits/) - [Pressure Control Reservoirs](https://www.fluigent.com/research/instruments/sample-reservoirs/) - Fluigent has engineered air-tight caps / pressure control reservoirs dedicated for microfluidic experiment. Discover our range of products. - [Microfluidic OEM Devices](https://www.fluigent.com/microfluidic-oem/industrial-products/) - Ranging from one pump to fully integrated microfluidic OEM devices and systems. - [Industrial](https://www.fluigent.com/microfluidic-oem/) - [Microfluidic Sensors](https://www.fluigent.com/research/instruments/sensors/) - Fluigent set of microfluidic sensors allows to control and monitor directly in flow rate or to extend the measurement of pressure/vacuum in the set-up. - [Cell Culture, Organ on a chip and Microscopy](https://www.fluigent.com/research/instruments/microfluidic-chips/cell-culture-organ-on-a-chip-microscopy/) - [Microfluidic Pressure Sources](https://www.fluigent.com/research/instruments/pressure-sources/) - Our range of pressure and vacuum sources have been carefully selected and developed to supply optimized performance for the whole Fluigent product range. ## Catégories d'évènement - [Events](https://www.fluigent.com/company/events/events/) - [Webinars](https://www.fluigent.com/company/events/webinars/)