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Microfluidics on liquid handling stations (μF-on-LHS): a new industry-compatible microfluidic platform

机译:液体处理站上的微流体(LF-LHS):新型的行业兼容微流体平台

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Since the early days microfluidics as a scientific discipline has been an interdisciplinary research field with a wide scope of potential applications. Besides tailored assays for point-of-care (PoC) diagnostics, microfluidics has been an important tool for large-scale screening of reagents and building blocks in organic chemistry, pharmaceutics and medical engineering. Furthermore, numerous potential marketable products have been described over the years. However, especially in industrial applications, microfluidics is often considered only an alternative technology for fluid handling, a field which is industrially mostly dominated by large-scale numerically controlled fluid and liquid handling stations. Numerous noteworthy products have dominated this field in the last decade and have been inhibited the widespread application of microfluidics technology. However, automated liquid handling stations and microfluidics do not have to be considered as mutually exclusive approached. We have recently introduced a hybrid fluidic platform combining an industrially established liquid handling station and a generic microfluidic interfacing module that allows probing a microfluidic system (such as an essay or a synthesis array) using the instrumentation provided by the liquid handling station. We term this technology "Microfluidic on Liquid Handling Stations (μF-on-LHS)" - a classical "best of both worlds"- approach that allows combining the highly evolved, automated and industry-proven LHS systems with any type of microfluidic assay. In this paper we show, to the best of our knowledge, the first droplet microfluidics application on an industrial LHS using the μF-on-LHS concept.
机译:自早期以来,微流体学作为一门科学学科已成为跨学科的研究领域,具有广泛的潜在应用范围。除了针对即时诊断(PoC)诊断的量身定制的分析方法外,微流体技术已成为有机化学,制药和医学工程中大规模筛选试剂和构件的重要工具。此外,多年来已经描述了许多潜在的可销售产品。然而,特别是在工业应用中,微流体技术通常仅被认为是流体处理的替代技术,该领域在工业上主要由大规模的数控流体和液体处理站主导。在过去的十年中,许多值得关注的产品主导了这一领域,并阻碍了微流体技术的广泛应用。但是,不必将自动液体处理站和微流体视为互斥的方法。我们最近引入了一种混合流体平台,该平台结合了工业上建立的液体处理站和通用的微流体接口模块,该模块允许使用由液体处理站提供的仪器来探测微流体系统(例如论文或合成阵列)。我们将该技术称为“液体处理站上的微流体(LF上的μF)”,这是一种经典的“两全其美”的方法,可将高度发展,自动化且经过行业验证的LHS系统与任何类型的微流体分析相结合。在本文中,我们就其所掌握的知识,首次展示了使用μF-on-LHS概念在工业LHS上的首个液滴微流控应用。

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