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Cholesterol Self-Powered Biosensor

机译:胆固醇自供电生物传感器

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Monitoring the cholesterol level is of great importance, especially for people with high risk of developing heart disease. Here we report on reagentless cholesterol detection in human plasma with a novel single-enzyme, membrane-free, self-powered biosensor, in which both cathodic and anodic bioelectrocatalytic reactions are powered by the same substrate. Cholesterol oxidase was immobilized in a sol-gel matrix on both the cathode and the anode. Hydrogen peroxide, a product of the enzymatic conversion of cholesterol, was electrocatalytically reduced, by the use of Prussian blue, at the cathode. In parallel, cholesterol oxidation catalyzed by mediated cholesterol oxidase occurred at the anode. The analytical performance was assessed for both electrode systems separately. The combination of the two electrodes, formed on high surface-area carbon cloth electrodes, resulted in a self-powered biosensor with enhanced sensitivity (26.0 mA M~(-1) cm~(-2)), compared to either of the two individual electrodes, and a dynamic range up to 4.1 mM cholesterol. Reagentless cholesterol detection with both electrochemical systems and with the self-powered biosensor was performed and the results were compared with the standard method of colorimetric cholesterol quantification.
机译:监测胆固醇水平非常重要,特别是对于患有心脏病的高风险人群而言。在这里,我们报告了一种新型的单酶,无膜,自供电生物传感器在人血浆中的无试剂胆固醇检测,其中阴极和阳极生物电催化反应均由同一底物供电。将胆固醇氧化酶固定在阴极和阳极上的溶胶-凝胶基质中。通过使用普鲁士蓝在阴极上电催化还原胆固醇的酶促转化产物过氧化氢。同时,由介导的胆固醇氧化酶催化的胆固醇氧化发生在阳极。分别评估了两种电极系统的分析性能。形成在高表面积碳布电极上的两个电极的组合,导致了自供电生物传感器,与两个电极相比,其灵敏度更高(26.0 mA M〜(-1)cm〜(-2))。单个电极,动态范围高达4.1 mM胆固醇。使用电化学系统和自供电生物传感器进行无试剂胆固醇检测,并将结果与​​比色胆固醇定量的标准方法进行比较。

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