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微滴微流控技术

Droplet microfluidics.

作者信息

Teh Shia-Yen, Lin Robert, Hung Lung-Hsin, Lee Abraham P

机构信息

Department of Biomedical Engineering, University of California, Irvine, CA 92697, USA.

出版信息

Lab Chip. 2008 Feb;8(2):198-220. doi: 10.1039/b715524g. Epub 2008 Jan 11.

Abstract

Droplet-based microfluidic systems have been shown to be compatible with many chemical and biological reagents and capable of performing a variety of "digital fluidic" operations that can be rendered programmable and reconfigurable. This platform has dimensional scaling benefits that have enabled controlled and rapid mixing of fluids in the droplet reactors, resulting in decreased reaction times. This, coupled with the precise generation and repeatability of droplet operations, has made the droplet-based microfluidic system a potent high throughput platform for biomedical research and applications. In addition to being used as microreactors ranging from the nano- to femtoliter range; droplet-based systems have also been used to directly synthesize particles and encapsulate many biological entities for biomedicine and biotechnology applications. This review will focus on the various droplet operations, as well as the numerous applications of the system. Due to advantages unique to droplet-based systems, this technology has the potential to provide novel solutions to today's biomedical engineering challenges for advanced diagnostics and therapeutics.

摘要

基于微滴的微流控系统已被证明与许多化学和生物试剂兼容,并且能够执行各种可实现可编程和可重构的“数字流体”操作。该平台具有尺寸缩放优势,能够在微滴反应器中实现流体的可控快速混合,从而缩短反应时间。再加上微滴操作的精确生成和可重复性,基于微滴的微流控系统已成为生物医学研究和应用的强大高通量平台。除了用作从纳升至飞升至范围内的微反应器外,基于微滴的系统还被用于直接合成颗粒,并封装许多生物实体以用于生物医学和生物技术应用。本文综述将重点关注各种微滴操作以及该系统的众多应用。由于基于微滴的系统具有独特优势,这项技术有可能为当今生物医学工程在先进诊断和治疗方面的挑战提供新颖的解决方案。

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