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Simultaneous Electrochemical Monitoring of Metabolites Related to the Xanthine Oxidase Pathway Using a Grinded Carbon Electrode

机译:使用磨碎的碳电极同时电化学监测与黄嘌呤氧化酶途径有关的代谢物

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摘要

Using a mechanically grinded pyrolytic graphite electrode in edge orientation, a sensitive electrochemical method was developed for simultaneous determination of uric acid (UA), xanthine (XAN), hypoxanthine (HYP) (products of purine catabolism in human), allopurinol (ALO), and oxypurinol (OXY) (a drug used in treatment of purine catabolism disorders and its metabolite, respectively). It is demonstrated that differential pulse voltammetry in connection with this electrode can serve as a simple and efficient tool for monitoring transformation of purine catabolites (HYP -> XAN -> UA) catalyzed by xanthine oxidase (XO) as well as inhibition of this pathway by ALO being enzymatically converted to OXY. Our protocol is based on direct electrochemical measurement of oxidation peaks for each of the substances during in vitro reactions in a single detection step by the same electrode system. In addition, we show that the proposed electrochemical technique can be applied to parallel detection of metabolites involved in the XO pathway excreted in urine without any pretreatment of the clinical samples.
机译:使用边缘方向的机械研磨热解石墨电极,开发了一种灵敏的电化学方法,用于同时测定尿酸(UA),黄嘌呤(XAN),次黄嘌呤(HYP)(人类嘌呤分解代谢的产物),别嘌呤醇(ALO),和氧嘌呤醇(OXY)(分别用于治疗嘌呤分解代谢疾病及其代谢产物的药物)。已证明与该电极相关的差分脉冲伏安法可作为监测黄嘌呤氧化酶(XO)催化的嘌呤分解代谢物(HYP-> XAN-> UA)转化以及抑制该途径的简单有效工具ALO被酶转化为OXY。我们的协议基于在同一电极系统的单个检测步骤中,体外反应过程中每种物质的氧化峰的直接电化学测量。此外,我们表明,所提出的电化学技术可用于平行检测尿中排出的XO途径所涉及的代谢物,而无需对临床样品进行任何预处理。

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