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Planar Electrodes Modified by Nanodiamonds and Biocomposite Silica-Choline Oxidase Film For Choline Determination

机译:由纳米金刚石和生物复合二氧化硅 - 胆碱 - 胆碱氧化酶氧化酶进行胆碱测定的平面电极

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Nanodiamonds obtained by detonation synthesis (dND) and modified with carboxylic groups were electrodeposited onto the surface of Au screen printed electrode (AuSPE). Modified electrode demonstrated electrocatalytic activity to H2O2molecules. The layer of silica sol-gel film with encapsulated choline oxidase (SiO2-ChOx) was formed onto the surface of AuSPE-dND using method of electroassisted deposition. Choline oxidase immobilized inside silica film on the surface of AuSPE possessed high catalytic activity to choline. The electrode modified with biocomposite film AuSPE-dND-SiO2-ChOx demonstrated stable analytical signal to a product of enzymatic reaction of choline oxidation. The developed biosensor was successfully applied for the determination of choline in food and biological tissues and demonstrated good reproducibility of the results. The influence of ascorbic acid was removed by passing the analyzed solution through the column with anion-exchange resin.
机译:通过爆炸合成(DND)获得并用羧基改性的纳米二胺被电沉积到Au筛网印刷电极(AUSPE)的表面上。改性电极将电催化活性显示为H. 2 O. 2 分子。用包封的胆碱氧化酶二氧化硅溶胶 - 凝胶膜层(SIO 2 使用电煤层沉积方法形成在AUSPE-DND的表面上。在AUSPE表面上固定在二氧化硅膜内的胆碱氧化酶具有高催化活性至胆碱。用生物复合薄膜AUSPE-DND-SIO改性电极 2 -Chox证明了胆碱氧化酶反应产物的稳定分析信号。成功地应用了发育的生物传感器用于测定食品和生物组织中的胆碱,并表现出结果的良好再现性。通过使分析的溶液通过具有阴离子 - 交换树脂的柱通过分析的溶液除去抗坏血酸的影响。

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