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基于点击化学和重氮化学的双电化学共价偶联法用于构建灵敏的安培免疫传感器。

Double electrochemical covalent coupling method based on click chemistry and diazonium chemistry for the fabrication of sensitive amperometric immunosensor.

机构信息

Key Laboratory of Analytical Chemistry for Life Science of Shaanxi Province, School of Chemistry and Materials Science, Shaanxi Normal University, Xi'an 710062, PR China.

出版信息

Anal Chim Acta. 2013 Aug 20;792:28-34. doi: 10.1016/j.aca.2013.06.046. Epub 2013 Jul 5.

Abstract

A double electrochemical covalent coupling method based on click chemistry and diazonium chemistry for the fabrication of sensitive amperometric immunosensor was developed. As a proof-of-concept, a designed alkyne functionalized human IgG was used as a capture antibody and a HRP-labeled rabbit anti-goat IgG was used as signal antibody for the determination of the anti-human IgG using the sandwich model. The immunosensor was fabricated by electrochemically grafting a phenylazide on the surface of a glassy carbon electrode, and then, by coupling the alkyne functionalized human IgG with the phenylazide group through an electro-click chemistry in the presence of Cu(II). The amperometric measurement for the determination of the anti-human IgG was performed after the fabricated immunosensor was incubated with the target anti-human IgG and then with the HRP-labeled anti-goat IgG at -0.25V in 0.10M PBS (pH 7.0) containing 0.1mM hydroquinone and 2.0mM H2O2. The results showed that the increased current was linear with the logarithm of the concentration of the anti-human IgG in the range from 1.0×10(-10)g mL(-1) to 1.0×10(-8)g mL(-1) with a detection limit of 3×10(-11)g mL(-1). Furthermore, the feasibility of the double electrochemical covalent coupling method proposed in this work for fabricating the amperometric immunosensor array was explored. This work demonstrates that the double electrochemical covalent coupling method is a promising approach for the fabrication of the immunosensor and immunosensor array.

摘要

基于点击化学和重氮化学的双电化学共价偶联方法被开发用于制备灵敏的安培免疫传感器。作为概念验证,设计的炔基功能化人 IgG 被用作捕获抗体,而过氧化物酶标记的兔抗山羊 IgG 被用作信号抗体,用于夹心模式下测定抗人 IgG。通过在玻碳电极表面电化学接枝苯叠氮化物,然后在 Cu(II)存在下通过电点击化学将炔基功能化人 IgG 与苯叠氮化物偶联,制备了免疫传感器。在将制备的免疫传感器与靶抗人 IgG 孵育后,在含有 0.1mM 对苯二酚和 2.0mM H2O2 的 0.10M PBS(pH 7.0)中在-0.25V 下进行安培测量,以测定抗人 IgG。结果表明,在 1.0×10(-10)g mL(-1)至 1.0×10(-8)g mL(-1)范围内,电流的增加与抗人 IgG 的浓度的对数呈线性关系,检测限为 3×10(-11)g mL(-1)。此外,还探索了本文提出的双电化学共价偶联方法用于制备安培免疫传感器阵列的可行性。这项工作证明了双电化学共价偶联方法是制备免疫传感器和免疫传感器阵列的一种有前途的方法。

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