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The use of screen-printed electrodes in a proof of concept electrochemical estimation of homocysteine and glutathione in the presence of cysteine using catechol.

机译:在儿茶酚存在的情况下,在半胱氨酸存在的情况下,用丝网印刷电极对高半胱氨酸和谷胱甘肽进行电化学估计的概念证明。

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摘要

Screen printed electrodes were employed in a proof of concept determination of homocysteine and glutathione using electrochemically oxidized catechol via a 1,4-Michael addition reaction in the absence and presence of cysteine, and each other. Using cyclic voltammetry, the Michael reaction introduces a new adduct peak which is analytically useful in detecting thiols. The proposed procedure relies on the different rates of reaction of glutathione and homocysteine with oxidized catechol so that at fast voltage scan rates only homocysteine is detected in cyclic voltammetry. At slower scan rates, both glutathione and homocysteine are detected. The combination of the two sets of data provides quantification for homocysteine and glutathione. The presence of cysteine is shown not to interfere provided sufficient high concentrations of catechol are used. Calibration curves were determined for each homocysteine and glutathione detection; where the sensitivities are 0.019 µA · µM(-1) and 0.0019 µA · µM(-1) and limit of detections are ca. 1.2 µM and 0.11 µM for homocysteine and glutathione, respectively, within the linear range. This work presents results with potential and beneficial use in re-useable and/or disposable point-of-use sensors for biological and medical applications.
机译:在不存在和存在半胱氨酸的情况下,通过1,4-迈克尔加成反应,使用电化学氧化的邻苯二酚,通过丝网印刷的电极用于概念确定高半胱氨酸和谷胱甘肽。使用循环伏安法,迈克尔反应引入了一个新的加合物峰,该峰在分析上可用于检测硫醇。所提出的方法依赖于谷胱甘肽和高半胱氨酸与氧化儿茶酚的不同反应速率,因此在快速电压扫描速率下,在循环伏安法中仅检测到高半胱氨酸。在较慢的扫描速度下,谷胱甘肽和高半胱氨酸都被检测到。两组数据的组合提供了高半胱氨酸和谷胱甘肽的定量分析。如果使用足够高浓度的儿茶酚,则表明半胱氨酸的存在不会产生干扰。确定每个高半胱氨酸和谷胱甘肽检测的校准曲线;灵敏度为0.019 µA·µM(-1)和0.0019 µA·µM(-1),检出限为。同型半胱氨酸和谷胱甘肽的线性范围分别为1.2 µM和0.11 µM。这项工作提出了在生物和医学应用中可重复使用和/或一次性使用的使用点传感器中具有潜在和有益用途的结果。

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