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首页> 外文期刊>Журнал аналитической химии >NANOSTRUCTURE-BASED ELECTROCHEMICAL SENSOR FOR DETERMINATION OF GLUTATHIONE IN HEMOLYSED ERYTHROCYTES AND URINE
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NANOSTRUCTURE-BASED ELECTROCHEMICAL SENSOR FOR DETERMINATION OF GLUTATHIONE IN HEMOLYSED ERYTHROCYTES AND URINE

机译:基于纳米结构的电化学传感器测定溶血性红细胞和尿液中的谷胱甘肽

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摘要

A sensitive and selective electrochemical method was developed for the determination of glutathione (GSH) in hemolysed erythrocyte using vinylferocene modified carbon nanotubes paste electrode (VFMCNTPE). The results indicate that the electrode is efficient in terms of its electrocatalytic activity for the oxidation of GSH ,leading to a reduced overpotential by more than 470 mV. Also, the values of catalytic rate constant (ん), and diffusion coefficient (D) for GSH were calculated. The electrocatalytic oxidation peak current of GSH showed two linear dynamic ranges with a detection limit of 0.09 цМ GSH. The linear calibration ranges were obtained between 0.2—4.0 and 4.0—250.0 GSH using square wave voltammetry (SWV) method. The proposed method was also examined as a selective, simple and precise electrochemical sensor for the determination of GSH in real samples such as urine and hemolysed erythrocyte.
机译:建立了灵敏的选择性电化学方法,使用乙烯基二茂铁修饰的碳纳米管糊状电极(VFMCNTPE)测定溶血红细胞中的谷胱甘肽(GSH)。结果表明,就其对GSH氧化的电催化活性而言,该电极是有效的,从而使过电势降低了470 mV以上。另外,计算了GSH的催化速率常数(ん)和扩散系数(D)。 GSH的电催化氧化峰值电流显示两个线性动态范围,检出限为0.09цМGSH。使用方波伏安法(SWV)方法在0.2-4.0至4.0-250.0 GSH之间获得线性校准范围。提议的方法也作为选择性,简单和精确的电化学传感器进行了检测,用于测定真实样品(如尿液和溶血的红细胞)中的谷胱甘肽。

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