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使用微型直接甲醇燃料电池作为安培检测电源检测葡萄糖的微流控装置。

Microfluidic device for the detection of glucose using a micro direct methanol fuel cell as an amperometric detection power source.

作者信息

Ito Takeshi, Kunimatsu Masayuki, Kaneko Satoru, Ohya Seishiro, Suzuki Koji

机构信息

Kanagawa Industrial Technology Center, Shimoimaizumi, Ebina, Kanagawa 243-0435, Japan.

出版信息

Anal Chem. 2007 Feb 15;79(4):1725-30. doi: 10.1021/ac0618167.

Abstract

We designed and prepared a novel microbiosensing system consisting of a microbioreactor fabricated using photosensitive sheets intercalated between Pyrex wafers as a dam structure, together with a micro fuel cell as a power source device between the electrodes for amperometric detection. The dam structure retains enzyme (glucose oxidase, GOx)-immobilized microbeads in a microchannel. Microelectrodes are used as an integrated detector within a microchannel located downstream of the dam structure, and these are used to detect the oxidation current of hydrogen peroxide produced from a glucose sample and GOx. A micro direct methanol fuel cell (mu-DMFC, i.d. 500 microm) was fabricated on a polymeric substrate and was used to supply a potential for the electrochemical detector. In this case, two mu-DMFCs were stacked on one substrate to increase the voltage for the oxidation of hydrogen peroxide. A linear response curve was obtained in range from 0.1 to 10 mM glucose for the designed microbiosensing system. These results show that a microfluidic biosensing system designed with a mu-DMFC device is useful and has the potential to assist minuaturization and simplification of the sensing system, in addition to increasing disposability of the device.

摘要

我们设计并制备了一种新型的微生物传感系统,该系统由一个微生物反应器和一个微型燃料电池组成。微生物反应器是用夹在派热克斯玻璃晶圆之间的光敏片作为坝结构制造而成,微型燃料电池则作为电源装置置于电极之间用于安培检测。坝结构将固定有酶(葡萄糖氧化酶,GOx)的微珠保留在微通道中。微电极用作位于坝结构下游的微通道内的集成检测器,用于检测葡萄糖样品和GOx产生的过氧化氢的氧化电流。在聚合物基板上制造了一个微型直接甲醇燃料电池(μ-DMFC,内径500微米),并用于为电化学检测器提供电位。在这种情况下,两个μ-DMFC堆叠在一个基板上,以增加过氧化氢氧化的电压。对于所设计的微生物传感系统,在0.1至10 mM葡萄糖范围内获得了线性响应曲线。这些结果表明,设计有μ-DMFC装置的微流控生物传感系统是有用的,并且除了增加装置的一次性使用性之外,还有助于传感系统的小型化和简化。

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