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基于结合在网状玻璃碳电极上的葡萄糖氧化酶的安培生物传感器流动注射法测定痕量过氧化氢或葡萄糖。

Flow-injection determination of trace hydrogen peroxide or glucose utilizing an amperometric biosensor based on glucose oxidase bound to a reticulated vitreous carbon electrode.

作者信息

Khayyami M, Johansson G, Kriz D, Xie B, Larsson P O, Danielsson B

机构信息

Pure and Applied Biochemistry, Chemical Center, Lund University, Lund, Sweden.

出版信息

Talanta. 1996 Jun;43(6):957-62. doi: 10.1016/0039-9140(95)01872-7.

Abstract

An electron transfer mediator, 8-dimethylamino-2,3-benzophenoxazine (Meldola Blue), dissolved in the carrier solution in a flow-injection system, was found to reduce the oxidation potential for hydrogen peroxide from 600-1200 mV without mediator to-100 mV vs. Ag/AgCl with the mediator present. The very low background current of reticulated vitreous carbon (RVC) at this potential makes it possible to detect very low levels of hydrogen peroxide or glucose. Glucose oxidase was covalently coupled with carbodiimide to RVC, and the RVC was formed into a column inserted in a flow-injection system. The calibration curve was linear from 30 nM to 10 microM glucose with 5 microM mediator. At higher mediator concentrations, the linear range was extended to 1000 microM, but with a much higher background current. The sample throughput was about 60 h(-1). The current response decreased to 50% of the original response after 20 days. The coulometric yield was high because the sample was pumped through the pores of the RVC. It was 16% and 55% at a flow rate of 1 ml min(-1) at mediator concentrations of 5 and 50 microM respectively.

摘要

在流动注射系统中,溶解于载体溶液的电子转移介质8-二甲基氨基-2,3-苯并吩嗪(梅尔道拉蓝)被发现可将过氧化氢的氧化电位从无介质时的600 - 1200毫伏降低至存在介质时相对于Ag/AgCl的 - 100毫伏。在此电位下,网状玻璃碳(RVC)的背景电流极低,使得检测极低水平的过氧化氢或葡萄糖成为可能。葡萄糖氧化酶通过碳二亚胺共价偶联到RVC上,且将RVC制成柱子插入流动注射系统中。在存在5微摩尔介质的情况下,校准曲线在30纳摩尔至10微摩尔葡萄糖范围内呈线性。在更高的介质浓度下,线性范围扩展至1000微摩尔,但背景电流要高得多。样品通量约为60次/小时。20天后电流响应降至原始响应的50%。由于样品被泵入RVC的孔隙中,库仑产率很高。在介质浓度分别为5和50微摩尔、流速为1毫升/分钟时,库仑产率分别为16%和55%。

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