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Construction of a specific binding peptide based electrochemical approach for sensitive detection of Zn2+

机译:基于特异性结合肽的电化学方法对Zn2 +的灵敏检测

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摘要

A simple, highly sensitive, and cost-effective electrochemical method for the detection of Zn2+ is constructed employing unmodified gold nanoparticles (AuNPs) and a specific binding. peptide. AuNPs are firstly modified on a glassy carbon electrode, which show excellent electrical conductivity and provide a large superficial area for subsequent attachment of peptide with cysteine residues. Acidic amino acids residues of the peptide contribute to large electron transfer resistance, which is recorded by electrochemical impedance spectroscopy. Nevertheless, in the presence of Zn2+, the recognition sequence of the peptide (CCPGC) binds to Zn2+ with a high affinity and is therefore not able to be modified on the electrode. By analyzing the decrease in electron transfer resistance, Zn2+ level could be determined. The sensitivity of the proposed method is comparable to atomic absorption spectrometry and higher than most fluorescent, colorimetric and electrochemical sensors for Zn2+ assay. Moreover, negligible interference is observed when detecting other ions. Therefore, the developed method has great potential environmental monitoring and clinical applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用未经修饰的金纳米颗粒(AuNPs)和特异性结合,构建了一种简单,高度灵敏且经济高效的电化学方法来检测Zn2 +。肽。首先在玻璃碳电极上修饰AuNPs,AuNPs具有出色的导电性,并为随后的肽与半胱氨酸残基的连接提供了较大的表面面积。肽的酸性氨基酸残基会导致较大的电子转移阻力,这是通过电化学阻抗谱记录的。然而,在存在Zn2 +的情况下,肽的识别序列(CCPGC)以高亲和力与Zn2 +结合,因此无法在电极上进行修饰。通过分析电子转移电阻的降低,可以确定Zn2 +的水平。该方法的灵敏度与原子吸收光谱法相当,并且比大多数用于Zn2 +分析的荧光,比色和电化学传感器要高。此外,在检测其他离子时观察到的干扰可忽略不计。因此,该方法具有很大的潜在环境监测和临床应用价值。 (C)2016 Elsevier B.V.保留所有权利。

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