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Conducting Polymer/Glucose Oxidase Multilayer-Based Electrochemical Surface Plasmon Resonance Glucose Biosensor

机译:导电聚合物/葡萄糖氧化酶多层电化学表面等离子体共振葡萄糖生物传感器

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Conducting polymers have been shown as sensitive materials to monitor and manipulate enzyme interactions. This is attributed to the high conductivity and specific redox properties of conducting polymers which is essential for redox enzyme communications , Since the redox property of conducting polymers changes upon oxidation of glucose oxidase (GOx), this change can be detected either as an electrochemical signal or an optical signal. For example, electroactive conducting polymers have been applied as wiring materials for the electrochemical activation of redox enzymes. Redox enzymes usually have poor direct electrical communication with metallic electrodes. An electroactive conducting polymer provides the media for electron transfer from the enzyme to the electrode and allows one to detect the electrochemical signals.
机译:导电聚合物已被显示为敏感材料以监测和操纵酶相互作用。这归因于对氧化还原酶通信至关重要的导电聚合物的高导电性和特异性氧化还原性能,因为导电聚合物的氧化氧特性在葡萄糖氧化酶(GOX)的氧化时,可以检测到电化学信号或者光信号。例如,已施加电活性导电聚合物作为用于电化学活化的氧化还原酶的布线材料。氧化还原酶通常具有与金属电极的差的直接电连通。电活性导电聚合物向培养基提供从酶到电极的电子转移,并允许一个用于检测电化学信号。

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