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用于开发人工脂质双层系统的微型化技术。

Miniaturised technologies for the development of artificial lipid bilayer systems.

机构信息

Centre for Microsystems and Photonics, University of Strathclyde, Glasgow, UK.

出版信息

Lab Chip. 2012 Mar 21;12(6):1026-39. doi: 10.1039/c2lc20991h. Epub 2012 Feb 3.

Abstract

Artificially reproducing cellular environments is a key aim of synthetic biology, which has the potential to greatly enhance our understanding of cellular mechanisms. Microfluidic and lab-on-a-chip (LOC) techniques, which enable the controlled handling of sub-microlitre volumes of fluids in an automated and high-throughput manner, can play a major role in achieving this by offering alternative and powerful methodologies in an on-chip format. Such techniques have been successfully employed over the last twenty years to provide innovative solutions for chemical analysis and cell-, molecular- and synthetic- biology. In the context of the latter, the formation of artificial cell membranes (or artificial lipid bilayers) that incorporate membrane proteins within miniaturised LOC architectures offers huge potential for the development of highly sensitive molecular sensors and drug screening applications. The aim of this review is to give a comprehensive and critical overview of the field of microsystems for creating and exploiting artificial lipid bilayers. Advantages and limitations of three of the most popular approaches, namely suspended, supported and droplet-based lipid bilayers, are discussed. Examples are reported that show how artificial cell membrane microsystems, by combining together biological procedures and engineering techniques, can provide novel methodologies for basic biological and biophysical research and for the development of biotechnology tools.

摘要

人工复制细胞环境是合成生物学的一个主要目标,它有潜力极大地增进我们对细胞机制的理解。微流控和芯片实验室(LOC)技术能够以自动化和高通量的方式控制亚微升体积的流体处理,通过提供芯片格式中的替代和强大的方法,在实现这一目标方面发挥着重要作用。在过去的二十年中,这些技术已成功地用于为化学分析以及细胞、分子和合成生物学提供创新解决方案。在后一种情况下,在微型 LOC 结构中形成包含膜蛋白的人工细胞膜(或人工脂质双层),为开发高灵敏度分子传感器和药物筛选应用提供了巨大的潜力。本文的目的是全面而批判性地综述用于创建和利用人工脂质双层的微系统领域。讨论了三种最受欢迎的方法,即悬浮、支撑和基于液滴的脂质双层的优缺点。报道的实例表明,通过将生物过程和工程技术结合起来,人工细胞膜微系统可以为基础生物学和生物物理学研究以及生物技术工具的发展提供新的方法。

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