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Electron-Transfer Studies with a New Flavin Adenine Dinucleotide Dependent Glucose Dehydrogenase and Osmium Polymers of Different Redox Potentials

机译:新的黄素腺嘌呤二核苷酸依赖性葡萄糖脱氢酶和不同氧化还原电位的Polymer聚合物的电子转移研究

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摘要

A new extracellular flavin adenine dinucleotide (FAD)-dependent glucose dehydrogenase from Glomerella cingulata (GcGDH) was electrochemically studied as a recognition element in glucose biosensors. The redox enzyme was recombinantly produced in Pichia pastoris and homogeneously purified, and its glucose-oxidizing properties on spectrographic graphite electrodes were investigated. Six different Os polymers, the redox potentials of which ranged in a broad potential window between +15 and +489 mV versus the normal hydrogen electrode (NHE), were used to immobilize and "wire" GcGDH to the spectrographic graphite electrode's surface. The GcGDH/Os polymer modified electrodes were evaluated by chronoamperometry using flow injection analysis. The current response was investigated using a stepwisely increased applied potential. It was observed that the ratio of GcGDH/Os polymer and the overall loading of the enzyme electrode significantly affect the performance of the enzyme electrode for glucose oxidation. The best-suited Os polymer [Os(4,4'-dimethyl-2,2'-bipyridine)_(2)(PVI)Cl]~(+) had a potential of +309 mV versus NHE, and the optimum GcGDH/Os polymer ratio was 1:2 yielding a maximum current density of 493 (mu)A(centre dot)cm~(-2) at a 30 mM glucose concentration.
机译:电化学研究了一种新的细胞神经黄素腺嘌呤二核苷酸(FAD)依赖的齿状小球藻(GcGDH)葡萄糖脱氢酶,作为葡萄糖生物传感器中的识别元件。氧化还原酶在巴斯德毕赤酵母中重组生产并均一纯化,并研究了其在光谱石墨电极上的葡萄糖氧化性能。六种不同的Os聚合物(其氧化还原电势相对于正常氢电极(NHE)在+15至+489 mV的宽电势范围内变化)用于固定GcGDH并将其“连接”到光谱石墨电极的表面。 GcGDH / Os聚合物修饰的电极使用流动注射分析通过计时安培法进行评估。使用逐步增加的施加电势来研究电流响应。观察到GcGDH / Os聚合物的比例和酶电极的总负载显着影响酶电极的葡萄糖氧化性能。最合适的Os聚合物[Os(4,4'-二甲基-2,2'-联吡啶)_(2)(PVI)Cl]〜(+)与NHE的电势为+309 mV,最佳的GcGDH / Os聚合物比率为1:2,在30 mM葡萄糖浓度下产生的最大电流密度为493μA(中心点)cm〜(-2)。

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