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一种基于涂覆有金属有机框架的碳糊电极的用于检测尿酸和黄嘌呤的新型电化学传感器。

A new electrochemical sensor for the detection of uric acid and xanthine based on a carbon paste electrode coated with a metal organic framework.

作者信息

Safaei Ali, Sadeghi Susan

机构信息

Department of Chemistry, University of Birjand, P.O. Box 97175-615, Birjand, Iran.

出版信息

Anal Methods. 2025 Aug 7;17(31):6405-6419. doi: 10.1039/d5ay00832h.

Abstract

This study presents a simple strategy for developing a new electrochemical sensor based on a carbon paste electrode (CPE) coated with a copper nanotube-based MOF (NT Cu-MOF/CPE) using electrochemical/chemical approaches. This enzyme-free sensor was employed for the selective determination of uric acid (UA) and xanthine (XA) biomolecules in Britton-Robinson buffer (pH 3) individually and simultaneously by differential pulse voltammetry. The electrode surface was characterized using XRD, FE-SEM, EDX, and AFM techniques. Additionally, EIS and CV techniques were employed to investigate the electrochemical behavior of the prepared sensor. The obtained results indicated the facilitated oxidation of UA and XA on NT Cu-MOF/CPE compared to CPE. Under optimized conditions, the simultaneous determination of UA and XA showed a linear dependence of the sensor response on the analyte concentration in the range of 0.25-75.0 μM with detection limits of 0.10 and 0.25 μM for UA and XA, respectively. The sensor sensitivity for UA and XA was found to be 1.16 μA μM cm and 1.02 μA μM cm, respectively. The repeatability of the sensor for six repeated measurements of UA and XA at a concentration of 10.0 μM was 1.3% and 0.5%, respectively. Finally, UA and XA were determined using the developed sensor in biological samples (urine and serum) with acceptable recoveries ranging from 93% to 106%. Furthermore, to assess the freshness of the meat, the XA content in fish meat at different storage times was determined using the developed sensor. The finding demonstrates the excellent potential of the developed sensor for clinical diagnostics and food preservation evaluation.

摘要

本研究提出了一种基于涂覆有铜纳米管基金属有机框架(NT Cu-MOF/CPE)的碳糊电极(CPE),利用电化学/化学方法开发新型电化学传感器的简单策略。该无酶传感器通过差分脉冲伏安法分别和同时测定Britton-Robinson缓冲液(pH 3)中的尿酸(UA)和黄嘌呤(XA)生物分子。使用XRD、FE-SEM、EDX和AFM技术对电极表面进行了表征。此外,采用EIS和CV技术研究了制备传感器的电化学行为。所得结果表明,与CPE相比,UA和XA在NT Cu-MOF/CPE上的氧化更容易。在优化条件下,UA和XA的同时测定显示传感器响应与分析物浓度在0.25-75.0 μM范围内呈线性关系,UA和XA的检测限分别为0.10和0.25 μM。发现该传感器对UA和XA的灵敏度分别为1.16 μA μM cm和1.02 μA μM cm。该传感器对浓度为10.0 μM的UA和XA进行六次重复测量的重复性分别为1.3%和0.5%。最后,使用开发的传感器测定生物样品(尿液和血清)中的UA和XA,回收率在93%至106%之间,结果可接受。此外,为了评估肉类的新鲜度,使用开发的传感器测定了不同储存时间鱼肉中的XA含量。该发现证明所开发的传感器在临床诊断和食品保鲜评估方面具有优异的潜力。

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