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利用电动技术在微流控流动池中对细菌进行连续浓缩。

Continuous concentration of bacteria in a microfluidic flow cell using electrokinetic techniques.

作者信息

Cabrera C R, Yager P

机构信息

Department of Bioengineering, University of Washington, Seattle 98195, USA.

出版信息

Electrophoresis. 2001 Jan;22(2):355-62. doi: 10.1002/1522-2683(200101)22:2<355::AID-ELPS355>3.0.CO;2-C.

Abstract

A novel method for the concentration of bacterial solutions is presented that implements electrokinetic techniques, zone electrophoresis (ZE) and isoelectric focusing (IEF), in a microfluidic device. The method requires low power (< 3e-5 W) and can be performed continuously on a flowing stream. The device consists of two palladium electrodes held in a flow cell constructed from layers of polymeric film held together by a pressure-sensitive adhesive. Both ZE and IEF are performed with carrier-free solutions in devices in which the electrodes are in intimate contact with the sample fluid. IEF experiments were performed using natural pH gradients; no carrier ampholyte solution was required. Experiments performed in buffer alone resulted in significant electroosmotic flow. Pretreatment of the sample chamber with bleach followed by a concentrated solution of cationic detergent effectively suppressed electroosmotic flow.

摘要

本文介绍了一种在微流控装置中采用电动技术、区带电泳(ZE)和等电聚焦(IEF)对细菌溶液进行浓缩的新方法。该方法所需功率低(<3×10⁻⁵W),并且可以在流动的液流上连续进行。该装置由两个钯电极组成,置于一个流通池中,该流通池由通过压敏粘合剂粘合在一起的聚合物薄膜层构成。ZE和IEF均在电极与样品流体紧密接触的装置中使用无载体溶液进行。IEF实验使用天然pH梯度进行;无需载体两性电解质溶液。仅在缓冲液中进行的实验导致了显著的电渗流。用漂白剂预处理样品室,然后用阳离子洗涤剂浓缩溶液有效地抑制了电渗流。

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