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Determination of the pH Dependent Redox Potential of Glucose Oxidase by Spectroelectrochemistry

机译:光谱电化学法测定葡萄糖氧化酶的pH依赖性氧化还原电位

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The pH dependent redox potential of the oxidoreductase glucose oxidase (GOx) from Aspergillus niger, which is the most frequently applied enzyme in electrochemical glucose biosensors and biofuel cells, was measured between pH 4.5 and 8.5 using UV/vis spectroelectrochemistry. In the entire pH range under investigation, the flavin adenine dinucleotide cofactor of GOx changed directly from the oxidized quinone to the doubly reduced hydroquinone. No stable semiquinoid species could be detected if electrochemical equilibrium was reached. From the pH dependency of the GOx redox potential, a pK_a of 7.2 has been determined for the GOx flavohydroquinone. At pH values ≤6.0, a dependency of the reduction mechanism and the GOx redox potential on the presence of halides, especially on Cl~-, was observed. For the development of glucose biosensors and glucose biofuel cell anodes working at physiological or neutral pH, the GOx redox potentials at pH 7.4 and pH 7.0 are of main interest. Here values of E_(1/2 pH 7.4) = -97 ± 3 mV and E_(1/2 pH 7.0) = -80 ± 4 mV have been determined.
机译:来自黑曲霉的氧化还原酶葡萄糖氧化酶(GOx)的pH依赖氧化还原电位是一种在葡萄糖化学传感器和生物燃料电池中最常用的酶,使用UV / vis光谱电化学技术在pH值4.5和8.5之间进行了测量。在研究的整个pH范围内,GOx的黄素腺嘌呤二核苷酸辅因子直接从氧化醌变为双还原对苯二酚。如果达到电化学平衡,则无法检测到稳定的半醌类物质。根据GOx氧化还原电位的pH依赖性,已确定GOx黄酮氢醌的pK_a为7.2。在pH值≤6.0时,观察到还原机理和GOx氧化还原电势对卤化物(尤其是Cl〜-)存在的依赖性。为了开发在生理或中性pH下工作的葡萄糖生物传感器和葡萄糖生物燃料电池阳极,主要关注pH 7.4和pH 7.0的GOx氧化还原电势。此处已确定E_(1/2 pH 7.4)= -97±3 mV和E_(1/2 pH 7.0)= -80±4 mV的值。

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