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多孔碳复合材料/酶葡萄糖微传感器

Porous carbon composite/enzyme glucose microsensor.

作者信息

Li C M, Cha C S

机构信息

School of Electrical and Electronic Engineering, Nanyang Technological University, Nanyang Avenue, Singapore 639798.

出版信息

Front Biosci. 2004 Sep 1;9:3324-30. doi: 10.2741/1483.

Abstract

An enzyme glucose microsensor using a glucose oxidase-immobilized porous carbon/Teflon composite microelectrode was developed. The microsensor was fabricated by etching a platinum microelectrode (platinum, radius of 25 and 50 micrometers) in hot aqua regia to create a cavity at the tip and then packing a porous carbon/Teflon composite, which was made from acetylene black and Teflon emulsion, into the cavity. Nafion was impregnated into the inner surface of porous carbon/Teflon composite electrode following immobilization of Os(bpy)3+2/+3 as electron transfer mediators. The loading amount of Os(bpy)3+2/+3 in the Nafion/porous carbon/Teflon composite electrode was found to be 7.0x10(-8) mole cm(-2), which is much higher than that in polymer modified electrodes reported in literatures. The microsensor was further dipped overnight in buffer solution containing glucose oxidase for enzyme modification. With both glucose oxidase and mediators in the porous carbon/Teflon composite surface, the sensor performance was evaluated in buffer solutions containing different glucose concentrations and serum samples for glucose determination. The microsensor showed directly electrochemical glucose oxidation on the Os(bpy)3+2/+3 impregnated enzyme/porous carbon/Teflon composite surface with linear response over concentration range of 0-15 mM and Machaelis behavior. Reliability and reproducibility were conducted in serum samples and glucose buffer solution, and the results demonstrated there was no significant decrease of amperometric response in air-saturated solution for one month. The sensor demonstrated potential in clinical diagnostic applications.

摘要

开发了一种使用固定有葡萄糖氧化酶的多孔碳/聚四氟乙烯复合微电极的酶葡萄糖微传感器。该微传感器的制备方法是,在热王水中蚀刻铂微电极(铂,半径为25和50微米)以在尖端形成一个空腔,然后将由乙炔黑和聚四氟乙烯乳液制成的多孔碳/聚四氟乙烯复合材料填充到该空腔中。在固定Os(bpy)3+2/+3作为电子传递介质后,将Nafion浸渍到多孔碳/聚四氟乙烯复合电极的内表面。发现Nafion/多孔碳/聚四氟乙烯复合电极中Os(bpy)3+2/+3的负载量为7.0x10(-8)摩尔厘米(-2),这远高于文献报道的聚合物修饰电极中的负载量。将该微传感器进一步在含有葡萄糖氧化酶的缓冲溶液中浸泡过夜进行酶修饰。由于多孔碳/聚四氟乙烯复合表面同时存在葡萄糖氧化酶和介质,因此在含有不同葡萄糖浓度的缓冲溶液和血清样品中评估了该传感器用于葡萄糖测定的性能。该微传感器在浸渍有Os(bpy)3+2/+3的酶/多孔碳/聚四氟乙烯复合表面上显示出直接的电化学葡萄糖氧化,在0-15 mM的浓度范围内具有线性响应和米氏行为。在血清样品和葡萄糖缓冲溶液中进行了可靠性和重现性测试,结果表明在空气饱和溶液中一个月内安培响应没有明显下降。该传感器在临床诊断应用中显示出潜力。

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