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Simultaneous determination of uric acid, xanthine, hypoxanthine and caffeine in human blood serum and urine samples using electrochemically reduced graphene oxide modified electrode

机译:使用电化学还原氧化石墨烯修饰的电极同时测定人血清和尿液样品中的尿酸,黄嘌呤,次黄嘌呤和咖啡因

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This paper describes the fabrication of graphene on glassy carbon electrode (GCE) by electrochemical reduction of graphene oxide (GO) attached through 1,6-hexadiamine on GCE and the simultaneous determination of structurally similar four purine derivatives using the resultant electrochemically reduced GO (ERGO) modified electrode. The electrocatalytic activity of ERGO was investigated toward the oxidation of four important purine derivatives, uric acid (UA), xanthine (XN), hypoxanthine (HXN) and caffeine (CAF) at physiological pH. The modified electrode not only enhanced the oxidation currents of the four purine derivatives but also shifted their oxidation potentials toward less positive potentials in contrast to bare GCE. Further, it successfully separates the voltammetric signals of the four purine derivatives in a mixture and hence used for the simultaneous determination of them. Selective determination of one purine derivative in the presence of low concentrations other three purine derivatives was also realized at the present modified electrode. Using differential pulse voltammetry, detection limits of 8.8 x 10~(-8) M, 1.1 x 10~(-7) M, 3.2 x 10~(-7) M and 4.3 x 10~(-7) M were obtained for UA, XN, HXN and CAF, respectively. The practical application of the modified electrode was demonstrated by simultaneously determining the concentrations of UA, XN, HXN and CAF in human blood plasma and urine samples.
机译:本文描述了通过在GCE上通过1,6-己二胺附着的氧化石墨烯(GO)的电化学还原以及在结构相似的四种嘌呤衍生物的同时使用电化学还原的GO(ERGO)同时测定在玻璃碳电极(GCE)上制备石墨烯的方法)修饰电极。研究了ERGO在生理pH下对四种重要嘌呤衍生物尿酸(UA),黄嘌呤(XN),次黄嘌呤(HXN)和咖啡因(CAF)氧化的电催化活性。相对于裸露的GCE,修饰的电极不仅增强了四种嘌呤衍生物的氧化电流,而且还将其氧化电位移向了较小的正电位。此外,它成功分离了混合物中四种嘌呤衍生物的伏安信号,因此可用于同时测定它们。在本发明的修饰电极上还实现了在低浓度下选择性确定一种嘌呤衍生物和其他三种嘌呤衍生物的方法。使用微分脉冲伏安法测得的检测限分别为8.8 x 10〜(-8)M,1.1 x 10〜(-7)M,3.2 x 10〜(-7)M和4.3 x 10〜(-7)M. UA,XN,HXN和CAF。通过同时测定人血浆和尿液样品中UA,XN,HXN和CAF的浓度,证明了修饰电极的实际应用。

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