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基于乙醇氧化酶的乙醇生物传感器。

Ethanol biosensors based on alcohol oxidase.

作者信息

Azevedo Ana M, Prazeres D Miguel F, Cabral Joaquim M S, Fonseca Luís P

机构信息

Centro de Engenharia Biológica e Química, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

出版信息

Biosens Bioelectron. 2005 Aug 15;21(2):235-47. doi: 10.1016/j.bios.2004.09.030. Epub 2004 Dec 7.

Abstract

The detection and quantification of ethanol with high sensitivity, selectivity and accuracy is required in many different areas. A variety of methods and strategies have been reported for the determination of this analyte including gas chromatography, liquid chromatography, refractometry and spectrophotometry, among other. The use of the enzyme alcohol oxidase (AOX) on the analysis of ethanol in complex samples allows a considerable enhancement in specificity. This paper reviews the state of the art on ethanol determination based on AOX sensors, using either electrochemical electrodes or immobilised enzyme reactors. Almost all AOX-based ethanol sensors developed so far are based on the monitoring of O2 consumption or H2O2 formation. This has been mostly achieved using amperometric electrodes set at appropriate potentials namely, -600 mV for O2 monitoring or +600 mV for H2O2 monitoring. Mediated and non-mediated bienzymatic systems have also been assembled using AOX coupled to horseradish peroxidase (HRP). Different types of electrodes have been proposed for the detection of ethanol, namely, membrane electrode, carbon paste electrodes, screen-printed electrodes and self-assembled monolayers. Another approach to work with this sensitive enzyme is to use high amounts of AOX in order to create an enzyme reservoir, a strategy which can be implemented using immobilised enzyme reactors. These reactors can be combined with a colorimetric detection in a flow-injection analysis system or with electrochemical transducers.

摘要

在许多不同领域都需要对乙醇进行高灵敏度、高选择性和高精度的检测与定量分析。已经报道了多种用于测定该分析物的方法和策略,包括气相色谱法、液相色谱法、折射法和分光光度法等。在复杂样品中使用醇氧化酶(AOX)分析乙醇可显著提高特异性。本文综述了基于AOX传感器的乙醇测定技术现状,这些传感器使用电化学电极或固定化酶反应器。到目前为止,几乎所有已开发的基于AOX的乙醇传感器都是基于对氧气消耗或过氧化氢生成的监测。这主要是通过将安培电极设置在适当电位来实现的,即用于监测氧气时为-600 mV,用于监测过氧化氢时为+600 mV。还使用与辣根过氧化物酶(HRP)偶联的AOX组装了介导和非介导双酶系统。已经提出了不同类型的电极用于乙醇检测,即膜电极、碳糊电极、丝网印刷电极和自组装单分子层。使用这种敏感酶的另一种方法是使用大量AOX以创建酶库,这一策略可通过固定化酶反应器来实现。这些反应器可与流动注射分析系统中的比色检测或电化学换能器相结合。

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