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将膜集成到无 PDMS 的微流控平台中,用于器官芯片和分析化学应用。

Membrane integration into PDMS-free microfluidic platforms for organ-on-chip and analytical chemistry applications.

机构信息

Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, 70569 Stuttgart, Germany.

Institut für Halbleiter- und Mikrosystemtechnik, Technische Universität Dresden, 01062 Dresden, Germany and Universitätsklinikum Carl Gustav Carus Dresden, Institut für Klinische Chemie und Laboratoriumsmedizin, 01307 Dresden, Germany.

出版信息

Lab Chip. 2021 May 18;21(10):1866-1885. doi: 10.1039/d1lc00188d.

Abstract

Membranes play a crucial role in many microfluidic systems, enabling versatile applications in highly diverse research fields. However, the tight and robust integration of membranes into microfluidic systems requires complex fabrication processes. Most integration approaches, so far, rely on polydimethylsiloxane (PDMS) as base material for the microfluidic chips. Several limitations of PDMS have resulted in the transition of many microfluidic approaches to PDMS-free systems using alternative materials such as thermoplastics. To integrate membranes in those PDMS-free systems, novel alternative approaches are required. This review provides an introduction into microfluidic systems applying membrane technology for analytical systems and organ-on-chip as well as a comprehensive overview of methods for the integration of membranes into PDMS-free systems. The overview and examples will provide a valuable resource and starting point for any researcher that is aiming at implementing membranes in microfluidic systems without using PDMS.

摘要

膜在许多微流控系统中起着至关重要的作用,使其能够在高度多样化的研究领域中实现多样化的应用。然而,将膜紧密且牢固地集成到微流控系统中需要复杂的制造工艺。迄今为止,大多数集成方法都依赖于聚二甲基硅氧烷(PDMS)作为微流控芯片的基础材料。PDMS 的一些局限性导致许多微流控方法向使用替代材料(如热塑性塑料)的无 PDMS 系统转变。为了将膜集成到这些无 PDMS 的系统中,需要新的替代方法。本综述介绍了在分析系统和芯片上器官中应用膜技术的微流控系统,以及将膜集成到无 PDMS 系统中的方法的全面概述。该综述和实例将为任何旨在在不使用 PDMS 的情况下将膜集成到微流控系统中的研究人员提供有价值的资源和起点。

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