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微流控芯片与一次性酶电极电化学监测葡萄糖浓度。

Microfluidic devices with disposable enzyme electrode for electrochemical monitoring of glucose concentrations.

机构信息

Ecole Normale Supérieure, Paris, France.

出版信息

Electrophoresis. 2011 Nov;32(22):3201-6. doi: 10.1002/elps.201100355. Epub 2011 Oct 31.

DOI:10.1002/elps.201100355
PMID:22038673
Abstract

This article describes the fabrication of tube-like microchannels made of UV curable polymer on a glass substrate and the device assembling with a disposable enzyme-working electrode for high-sensitivity electrochemical detection. While both reference and counter electrodes are patterned on the surface of the glass substrate, the working electrode is flipped on the top of the channel with an open access, providing a face-to-face probing configuration. When the enzyme electrode is contaminated or degraded, it can be easily replaced by a new one, keeping the main body of the device and the detection schema unchanged. Using glucose oxidase-coated gold electrodes, we were able to determine a linear amperometry response to the glucose concentrations in the range of 2-16  mM. By replacing the as-prepared working electrode by the one after thermal treatments, we showed a much more degraded enzyme electrode activity, enabling efficient determination of the electrode quality as well as the whole process optimization.

摘要

本文描述了在玻璃基底上制造由紫外光固化聚合物制成的管状微通道的方法,以及用一次性酶工作电极进行装配以实现高灵敏度电化学检测的方法。参考电极和对电极都被图案化在玻璃基底的表面上,工作电极通过开口翻转在通道的顶部,提供面对面探测的配置。当酶电极被污染或降解时,可以很容易地用新的电极替换,而不改变设备的主体和检测方案。使用葡萄糖氧化酶涂覆的金电极,我们能够确定葡萄糖浓度在 2-16 毫摩尔范围内的线性安培响应。通过用经过热处理的工作电极代替制备好的工作电极,我们发现酶电极的活性有了很大的降低,从而能够有效地确定电极的质量以及整个过程的优化。

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