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聚合酶链式反应(PCR)微流控芯片中的微型泵、微型阀和微型混合器:进展与趋势

Micropumps, microvalves, and micromixers within PCR microfluidic chips: Advances and trends.

作者信息

Zhang Chunsun, Xing Da, Li Yuyuan

机构信息

MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, South China Normal University, No.55, Zhongshan Avenue West, Tianhe District, Guangzhou 510631, PR China.

出版信息

Biotechnol Adv. 2007 Sep-Oct;25(5):483-514. doi: 10.1016/j.biotechadv.2007.05.003. Epub 2007 May 23.

Abstract

This review surveys the advances of microvalves, micropumps, and micromixers within PCR microfluidic chips over the past ten years. First, the types of microvalves in PCR chips are discussed, including active and passive microvalves. The active microvalves are subdivided into mechanical (thermopneumatic and shape memory alloy), non-mechanical (hydrogel, sol-gel, paraffin, and ice), and external (modular built-in, pneumatic, and non-pneumatic) microvalves. The passive microvalves also include mechanical (in-line polymerized gel and passive plug) and non-mechanical (hydrophobic) microvalves. The review then discusses mechanical (piezoelectric, pneumatic, and thermopneumatic) and non-mechanical (electrokinetic, magnetohydrodynamic, electrochemical, acoustic-wave, surface tension and capillary, and ferrofluidic magnetic) micropumps in PCR chips. Next, different micromixers within PCR chips are presented, including passive (Y/T-type flow, recirculation flow, and drop) and active (electrokinetically-driven, acoustically-driven, magnetohydrodynamical-driven, microvalves/pumps) micromixers. Finally, general discussions on microvalves, micropumps, and micromixers for PCR chips are given. The microvalve/micropump/micromixers allow high levels of PCR chip integration and analytical throughput.

摘要

本综述概述了过去十年中PCR微流控芯片内微阀、微泵和微混合器的进展。首先,讨论了PCR芯片中微阀的类型,包括主动微阀和被动微阀。主动微阀又细分为机械微阀(热气动和形状记忆合金)、非机械微阀(水凝胶、溶胶-凝胶、石蜡和冰)以及外部微阀(模块化内置、气动和非气动)。被动微阀还包括机械微阀(在线聚合凝胶和被动塞)和非机械微阀(疏水)。该综述接着讨论了PCR芯片中的机械微泵(压电、气动和热气动)和非机械微泵(电动、磁流体动力学、电化学、声波、表面张力和毛细管以及铁磁流体磁性)。接下来,介绍了PCR芯片内不同的微混合器,包括被动微混合器(Y/T型流、再循环流和液滴)和主动微混合器(电动驱动、声驱动、磁流体动力学驱动、微阀/泵)。最后,对PCR芯片的微阀、微泵和微混合器进行了一般性讨论。微阀/微泵/微混合器可实现高水平的PCR芯片集成和分析通量。

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