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An Electrochemical Approach to the Studies of Biological Redox Reactions and Their Applications to Biosensors, Bioreactor, and Biofuel Cells

机译:研究生物氧化还原反应的电化学方法及其在生物传感器,生物反应器和生物燃料电池中的应用

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Enzymatic redox reactions for the oxidation (or reduction) of the substrates use organic dyes or metal complexes as electron acceptors (or donors), which can be regenerated by electrochemical reactions of the compounds at an electrode surface. This type of coupling of the enzymatic reactions with the electrochemical reactions is called bioelectrocatalysis and allows us to measure the enzymatic reactions by an electrochemical method. The enzyme-electrochemical method provides a new technique for investigating a variety of biological redox reactions and for applying the reactions to biosensors, bioreactors, and biofuel cells. The bioelectrocatalysis-based research works are described here. First, a new method of protein redox potential measurements and a novel electrochemical kinetic analysis of oxidoreductase reactions are described. Second, a new methodology of characterizing microbial catalytic activities is presented. In the last, applications to the constructions of biosensors, bioreactors, and biofuel cells are mentioned.
机译:用于底物氧化(或还原)的酶促氧化还原反应使用有机染料或金属配合物作为电子受体(或供体),可以通过化合物在电极表面的电化学反应来再生。酶促反应与电化学反应的这种偶联称为生物电催化,它使我们能够通过电化学方法测量酶促反应。酶电化学方法为研究各种生物氧化还原反应并将该反应应用于生物传感器,生物反应器和生物燃料电池提供了一种新技术。本文介绍了基于生物电催化的研究工作。首先,描述了蛋白质氧化还原电势测量的新方法和氧化还原酶反应的新型电化学动力学分析。其次,提出了表征微生物催化活性的新方法。最后,提到了在生物传感器,生物反应器和生物燃料电池的构造中的应用。

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