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基于聚(吡咯-氮川三乙酸)-适配体膜的无标记阻抗型凝血酶传感器。

Label-free impedimetric thrombin sensor based on poly(pyrrole-nitrilotriacetic acid)-aptamer film.

机构信息

Département de Chimie Moléculaire, UMR-5250, ICMG FR-2607, CNRS, Université Joseph Fourier BP 53, 38041 Grenoble Cédex 9, France.

出版信息

Biosens Bioelectron. 2013 Mar 15;41:90-5. doi: 10.1016/j.bios.2012.07.044. Epub 2012 Aug 3.

Abstract

A label-free and highly sensitive impedimetric aptasensor was developed based on electropolymerized film for the determination of thrombin. The first step is the electrogeneration of a poly(pyrrole-nitrilotriacetic acid) (poly(pyrrole-NTA)) film onto the surface of electrodes followed by complexation of Cu(2+) ions. Then, the histidine labeled thrombin aptamer was immobilized onto the electrode through coordination of the histidine groups on the NTA-Cu(2+) complex. The aptamer sensor was applied for the detection and quantification of thrombin via impedimetric detection without a labeling step. A linear quantification of thrombin was obtained in the range 4.7×10(-12)-5.0×10(-10) mol L(-1) with a sensitivity of 2838 Ω/log unit (R(2)=0.9984). The impedance modulus at 0.3 Hz as a function of thrombin concentration was used to elaborate a similar linear relationship from 4.7×10(-12) to 5×10(-10) mol L(-1). In addition, aptamer-poly(pyrrole-NTA) electrodes incubated for 40 min in aqueous solutions of bovine serum albumin (BSA), lysozyme and IgG (5×10(-7) mol L(-1)) did not exhibit non-specific adsorption of proteins. Moreover, it has been demonstrated that the selective sensor can be regenerated several times with a good reproducibility.

摘要

一种无标记的、高灵敏的基于电化学聚合膜的阻抗适体传感器被开发出来,用于凝血酶的测定。第一步是在电极表面电化学聚合聚(吡咯-三乙酸)(poly(pyrrole-NTA))薄膜,然后螯合 Cu(2+) 离子。然后,通过 NTA-Cu(2+) 配合物上的组氨酸与凝血酶适配体的标记物结合,将组氨酸标记的凝血酶适配体固定在电极上。该适配体传感器通过无需标记步骤的阻抗检测来检测和定量凝血酶。通过阻抗检测,凝血酶在 4.7×10(-12)-5.0×10(-10) mol L(-1) 的范围内得到了线性定量,灵敏度为 2838 Ω/log 单位(R(2)=0.9984)。0.3 Hz 时的阻抗模量作为凝血酶浓度的函数被用来阐述一个类似的线性关系,范围从 4.7×10(-12) 到 5×10(-10) mol L(-1)。此外,适配体-聚(吡咯-三乙酸)电极在牛血清白蛋白(BSA)、溶菌酶和 IgG(5×10(-7) mol L(-1))的水溶液中孵育 40 分钟,没有表现出蛋白质的非特异性吸附。此外,已经证明,选择性传感器可以多次再生,具有良好的重现性。

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