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Chemiluminescent Determination of Glucose with a Modified Carbon Paste Electrode

机译:修饰碳糊电极化学发光法测定葡萄糖

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摘要

A flow injection analysis detection method for glucose is presented which is based on the oxidation of glucose by glucose oxidase followed by chemiluminescent detection of hydrogen peroxide. Both glucose oxidase and hematin, a chemiluminescent reaction catalyst, were bulk-immobilized conveniently by direct mixing with carbon paste, which allows renewal of the electrode surface by simply polishing or cutting to expose a new and fully active surface in the case of fouling. Luminol in reagent solution passed through the flow cell and reacted with hydrogen peroxide produced by the enzyme reactor in the presence of the catalyst to yield light. An applied potential of -0.4 V avoided the electrode fouling effectively. The log-log plot of the emitted light intensity vs glucose concentration was linear over the range of 1-100 mmol L~(-1) with a correlation coefficient of 0.992. Application of this method to other chemiluminescent and bioluminescent systems is suggested.
机译:提出了一种基于葡萄糖氧化酶氧化葡萄糖,然后化学发光检测过氧化氢的葡萄糖流动注射分析检测方法。葡萄糖氧化酶和血红素(一种化学发光反应催化剂)都可以通过直接与碳糊直接混合而大量固定,这可以通过在结垢的情况下简单地抛光或切割以露出新的,完全活性的表面来更新电极表面。试剂溶液中的鲁米诺通过流通池,并在催化剂的存在下与酶反应器产生的过氧化氢反应生成光。 -0.4 V的施加电势可有效避免电极结垢。发射光强度与葡萄糖浓度的对数-对数图在1-100 mmol L〜(-1)范围内呈线性关系,相关系数为0.992。建议将该方法应用于其他化学发光和生物发光系统。

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