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微流通道中形成的电流型生物传感器响应对结构和条件参数的依赖性。

Dependence of the response of an amperometric biosensor formed in a micro flow channel on structural and conditional parameters.

作者信息

Hashimoto Masatoshi, Upadhyay Sanjay, Suzuki Hiroaki

机构信息

Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

Biosens Bioelectron. 2006 Jun 15;21(12):2224-31. doi: 10.1016/j.bios.2005.11.009. Epub 2005 Dec 27.

Abstract

Comprehensive analysis of the behavior of an amperometric biosensor incorporated in a micro flow channel was conducted by changing the structural and conditional parameters. The device used in the characterization consisted of a thin-film three-electrode system and a silicone rubber flow channel. An enzyme, glucose oxidase, was immobilized either at the bottom of the silicone rubber flow channel or on the electrode substrate. The flow rate, concentration, position of the immobilized enzyme, and channel height were changed, and the changes in the output current and the conversion efficiency were examined. When the flow rate and/or the channel height decreased, the output current and the conversion efficiency significantly increased. The conversion efficiency also increased by decreasing the concentration. The tendency of the flow dependence was reversed when the position of the immobilized enzyme was changed from the silicone rubber side to the electrode substrate. In addition, the influence of l-ascorbic acid was reduced by placing additional working electrodes in the upper stream. l-Ascorbic acid was eliminated more effectively as the flow rate decreased and the area of the working electrode for elimination increased.

摘要

通过改变结构和条件参数,对集成在微流通道中的安培型生物传感器的行为进行了全面分析。表征中使用的装置由薄膜三电极系统和硅橡胶流道组成。一种酶,即葡萄糖氧化酶,被固定在硅橡胶流道底部或电极基板上。改变流速、浓度、固定化酶的位置和通道高度,并检测输出电流和转换效率的变化。当流速和/或通道高度降低时,输出电流和转换效率显著增加。通过降低浓度,转换效率也会提高。当固定化酶的位置从硅橡胶一侧改变到电极基板时,流动依赖性的趋势发生了逆转。此外,通过在上游放置额外的工作电极,可降低L-抗坏血酸的影响。随着流速降低和用于消除的工作电极面积增加,L-抗坏血酸被更有效地消除。

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