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制备选择性和灵敏的电化学处理铅笔石墨电极,用于测定尿液和血清中的尿酸。

Preparation of selective and sensitive electrochemically treated pencil graphite electrodes for the determination of uric acid in urine and blood serum.

机构信息

Department of Chemistry, Faculty of Science, Anadolu University, Yunus Emre Campus, Tepebasi, 26470 Eskisehir, Turkey.

出版信息

Biosens Bioelectron. 2010 Jul 15;25(11):2497-502. doi: 10.1016/j.bios.2010.04.020. Epub 2010 Apr 21.

Abstract

In this study, the preparation of electrochemically treated pencil graphite (ETPG) electrodes in the mixture of lithium perchlorate and sodium carbonate solutions was investigated for the first time in the literature. The prepared ETPG electrodes showed high selectivity and sensitivity for uric acid (UA) oxidation over ascorbic acid and dopamine. Differential pulse voltammetry (DPV) was used as electrochemical method. The parameters affecting the UA oxidation were investigated. The optimal pH for UA oxidation was determined as 2. The adsorption of UA on ETPG surface reached saturation in 180s. The oxidation peak current values versus UA concentration at the ETPG electrode showed linearity in the range from 0.05 microM to 10.0 microM (R(2)=0.9962) with a detection limit of 1.5 nM (S/N=3). The oxidation peak of UA on the ETPG electrode did not show any significant change in the presence of certain interferents except bovine serum albumin. The prepared electrodes showed good fabrication reproducibility. The analytical applications of the prepared electrodes were tested by using human urine and blood serum samples. The recovery results of different amounts of UA in urine were varied between 98.6% and 106.4% implying no matrix effect. It was observed that the standard addition method was more satisfactory in the case of blood serum samples.

摘要

在这项研究中,首次在文献中研究了在高氯酸锂和碳酸钠溶液混合物中制备电化学处理的铅笔石墨(ETPG)电极。制备的 ETPG 电极对尿酸(UA)氧化表现出高于抗坏血酸和多巴胺的高选择性和灵敏度。差分脉冲伏安法(DPV)被用作电化学方法。研究了影响 UA 氧化的参数。确定 UA 氧化的最佳 pH 值为 2。UA 在 ETPG 表面的吸附在 180s 内达到饱和。在 ETPG 电极上,UA 浓度与氧化峰电流值之间呈线性关系,范围为 0.05 microM 至 10.0 microM(R(2)=0.9962),检测限为 1.5 nM(S/N=3)。UA 的氧化峰在存在某些干扰物(除牛血清白蛋白外)的情况下,在 ETPG 电极上没有显示出任何明显变化。制备的电极显示出良好的制造重现性。通过使用人尿和血清样品测试了制备电极的分析应用。在尿液中不同量 UA 的回收率结果在 98.6%至 106.4%之间变化,表明没有基质效应。观察到在血清样品的情况下,标准添加法更令人满意。

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