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用于数字微流控的芯片与外界接口

A world-to-chip interface for digital microfluidics.

作者信息

Yang Hao, Luk Vivienne N, Abelgawad Mohamed, Barbulovic-Nad Irena, Wheeler Aaron R

机构信息

Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, ON, M5S 3H6.

出版信息

Anal Chem. 2009 Feb 1;81(3):1061-7. doi: 10.1021/ac802154h.

Abstract

Digital microfluidics (DMF) is a fluid handling technique that enables manipulation of discrete droplets on an array of electrodes. There is considerable enthusiasm for this method because of the potential for array-based screening applications. A limitation for DMF is nonspecific adsorption of reagents to device surfaces. If a given device is used to actuate multiple reagents, this phenomenon can cause undesirable cross-contamination. A second limitation for DMF (and all other microfluidic systems) is the "world-to-chip" interface; it is notoriously difficult to deliver reagents and samples to such systems without compromising the oft-hyped advantages of rapid analyses and reduced reagent consumption. We introduce a new strategy for digital microfluidics, in which a removable plastic "skin" is used to (a) eliminate cross-contamination and (b) bridge the world-to-chip interface. We demonstrated the utility of this format by implementing on-chip protein digestion on immobilized enzyme depots. This new method has the potential to transform DMF from being a curiosity for aficionados into a technology that is useful for biochemical applications at large.

摘要

数字微流控(DMF)是一种流体操控技术,可在电极阵列上对离散的液滴进行操控。由于基于阵列的筛选应用潜力巨大,人们对该方法充满热情。DMF的一个局限性是试剂会非特异性吸附到设备表面。如果使用特定设备来驱动多种试剂,这种现象可能会导致不良的交叉污染。DMF(以及所有其他微流控系统)的第二个局限性是“世界与芯片”接口;在不损害快速分析和减少试剂消耗等备受吹捧的优势的情况下,将试剂和样品输送到此类系统非常困难。我们介绍了一种数字微流控的新策略,其中使用可移除的塑料“外皮”来(a)消除交叉污染,以及(b)连接世界与芯片接口。我们通过在固定化酶库上进行芯片上的蛋白质消化来证明这种形式的实用性。这种新方法有可能将DMF从爱好者的新奇事物转变为对广大生化应用有用的技术。

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