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Characterization of glucose oxidase-modified poly(phenylenediamine)-coated electrodes in vitro and in vivo: Homogeneous interference by ascorbic acid in hydrogen peroxide detection

机译:体内和体外葡萄糖氧化酶修饰的聚苯二胺涂层电极的特性:过氧化氢检测中抗坏血酸的均相干扰

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摘要

The response of glucose oxidase (GOx) modified poly(o-phenylenediamine) coated Pt disk electrodes to glucose was well-behaved with a rapid response time and displaying Michaelis-Menten kinetics. However, the glucose response was lowered in a concentration-dependent manner by ascorbic acid when the glucose calibrations were carried out in solutions containing this reducing agent. The possibility of a homogeneous redox reaction in which the H2O2 generated by tie enzymatic oxidation of glucose at the GOx/polymer surface is consumed by ascorbate was investigated. Similar ''negative'' interference at GOx-modified carbon powder electrodes not involving membranes and for H2O2 calibrations at bare Pt electrodes supported the hypothesis. The observation that this interference could be blocked by the chelating agent EDTA suggests that the homogeneous reaction is catalyzed by trace metal ion impurities in solution. A model for the homogeneous reaction based on these experimental findings is proposed and tested by comparing quiescent and stirred solutions. No homogeneous interference by uric acid was observed. The electrodes were found to be free from lipid fouling in vitro, and experiments monitoring brain glucose levels in vivo indicate the absence of the homogeneous reaction in this environment. The results highlight the need to test each individual assay procedure involving H2O2 under relevant conditions for both positive and negative interference by ascorbic acid.
机译:葡萄糖氧化酶(GOx)修饰的聚(邻苯二胺)涂覆的Pt圆盘电极对葡萄糖的响应表现良好,具有快速的响应时间,并显示出Michaelis-Menten动力学。但是,当在含有这种还原剂的溶液中进行葡萄糖校准时,抗坏血酸会以浓度依赖性的方式降低葡萄糖反应。研究了均相氧化还原反应的可能性,在该氧化还原反应中,葡萄糖在GOx /聚合物表面的结合酶氧化产生的H2O2被抗坏血酸所消耗。在不涉及膜的GOx改性碳粉电极上以及在裸露的Pt电极上进行H2O2校准时,类似的“负”干扰也支持了这一假设。可以通过螯合剂EDTA阻止这种干扰的观察结果表明,均相反应是由溶液中的痕量金属离子杂质催化的。提出了基于这些实验结果的均相反应模型,并通过比较静态溶液和搅拌溶液进行了测试。没有观察到尿酸的均匀干扰。发现电极在体外没有脂质结垢,并且监测体内脑葡萄糖水平的实验表明在这种环境下不存在均相反应。结果突出表明,需要在相关条件下测试每种涉及H2O2的单独测定方法对抗坏血酸的正干扰和负干扰的作用。

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