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新型分子印迹聚合物修饰氧化铜纳米粒子/碳糊电极安培流动注射法测定肌酐。

Novel amperometric flow-injection analysis of creatinine using a molecularly-imprinted polymer coated copper oxide nanoparticle-modified carbon-paste-electrode.

机构信息

Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ubon Ratchathani University, Ubon Ratchathani, 34190, Thailand.

Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ubon Ratchathani University, Ubon Ratchathani, 34190, Thailand.

出版信息

J Pharm Biomed Anal. 2019 Oct 25;175:112770. doi: 10.1016/j.jpba.2019.07.018. Epub 2019 Jul 13.

Abstract

We report a novel amperometric flow-injection (FI) analysis of creatinine based on a sensor comprising copper oxide nanoparticles (CuO) coated with a molecularly-imprinted polymer (CuO@MIP) and decorating a carbon-paste electrode (CPE) to form the CuO@MIP/CPE electrode. The CuO@MIP was synthesized by using CuO as the supporting core, creatinine as the template, methacrylic acid (MAA) as monomer, N, N'-(1,2-dihydroxyethylene)bis(acrylamide) (DHEBA) as cross-linker, and 2,2'-azobis (2-methylpropionitrile) (AIBN) as initiator. Morphology and structural characterization reveal that CuO nanoparticle imprinted sites (CuO) synthesized using a precipitation method, exhibits features that are well suited to creatinine detection: high surface area, good analyte diffusion and adsorption characteristics that provide shorter response times, and large numbers of specific cavities for enhanced analyte capacity and sensitivity. Cyclic voltammetric measurements indicate that our sensor provides excellent performance toward electro-oxidation of creatinine. The amperometric FI system was used to quantitatively determine creatinine at the CuO@MIP/CPE sensor, in a phosphate buffer carrier. The imprinted sensor exhibits excellent performance for creatinine oxidation at an applied potential of +0.35 V and flow rate of 0.6 mL.min. The as-prepared sensor exhibits a linear dynamic range for creatinine detection from 0.5 to 200 μM (r = 0.995) with a limit of detection of 0.083 μM (S/N = 3). The system exhibits satisfactorily good precision (%RSD = 1.94%, n = 30) and selectivity toward creatinine. There is only approximately 20% loss from initial response after 2 weeks when stored at 4 C. We successfully applied the FI detection system to detect creatinine in human urine samples.

摘要

我们报道了一种基于包含氧化铜纳米粒子 (CuO) 的传感器的新型肌酐安培流动注射 (FI) 分析,该传感器涂有分子印迹聚合物 (MIP) 并修饰碳糊电极 (CPE) 以形成 CuO@MIP/CPE 电极。CuO@MIP 是通过使用氧化铜作为支撑核、肌酸作为模板、甲基丙烯酸 (MAA) 作为单体、N,N'-(1,2-二羟基乙烷)双(丙烯酰胺) (DHEBA) 作为交联剂和 2,2'-偶氮二(2-甲基丙腈) (AIBN) 作为引发剂合成的。形貌和结构表征表明,采用沉淀法合成的 CuO 纳米粒子印迹位点 (CuO) 具有适合肌酸检测的特征:高表面积、良好的分析物扩散和吸附特性,可提供更短的响应时间,以及大量的特定腔室,可提高分析物的容量和灵敏度。循环伏安测量表明,我们的传感器对肌酸的电氧化具有出色的性能。安培 FI 系统用于在磷酸盐缓冲载体中在 CuO@MIP/CPE 传感器上定量测定肌酸。印迹传感器在施加的 +0.35 V 电位和 0.6 mL.min 的流速下对肌酸氧化表现出优异的性能。所制备的传感器对肌酸检测的线性动态范围为 0.5 至 200 μM (r=0.995),检测限为 0.083 μM (S/N=3)。该系统对肌酸表现出令人满意的良好精度 (%RSD=1.94%,n=30) 和选择性。在 4°C 下储存 2 周后,初始响应仅损失约 20%。我们成功地将 FI 检测系统应用于检测人尿样中的肌酐。

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