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Suppressing Non-Specific Binding of Proteins onto Electrode Surfaces in the Development of Electrochemical Immunosensors

机译:在电化学免疫传感器的发展中抑制蛋白质与电极表面的非特异性结合

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摘要

Electrochemical immunosensors, EIs, are systems that combine the analytical power of electrochemical techniques and the high selectivity and specificity of antibodies in a solid phase immunoassay for target analyte. In EIs, the most used transducer platforms are screen printed electrodes, SPEs. Some characteristics of EIs are their low cost, portability for point of care testing (POCT) applications, high specificity and selectivity to the target molecule, low sample and reagent consumption and easy to use. Despite all these attractive features, still exist one to cover and it is the enhancement of the sensitivity of the EIs. In this review, an approach to understand how this can be achieved is presented. First, it is necessary to comprise thoroughly all the complex phenomena that happen simultaneously in the protein-surface interface when adsorption of the protein occurs. Physicochemical properties of the protein and the surface as well as the adsorption phenomena influence the sensitivity of the EIs. From this point, some strategies to suppress non-specific binding, NSB, of proteins onto electrode surfaces in order to improve the sensitivity of EIs are mentioned.
机译:电化学免疫传感器EI是在目标物分析物的固相免疫测定中结合了电化学技术的分析能力和抗体的高选择性和特异性的系统。在EI中,最常用的传感器平台是丝网印刷电极SPE。 EI的一些特征是它们的低成本,即时检验(POCT)应用的可移植性,对目标分子的高特异性和选择性,样品和试剂消耗量低以及易于使用。尽管具有所有这些吸引人的功能,但仍然存在一个需要覆盖的地方,这是增强了EI的敏感性。在这篇综述中,提出了一种理解如何实现的方法。首先,必须完全包括当蛋白质发生吸附时在蛋白质-表面界面同时发生的所有复杂现象。蛋白质和表面的理化性质以及吸附现象会影响EI的灵敏度。从这一点出发,提出了一些抑制蛋白质非特异性结合NSB到电极表面以提高EIs敏感性的策略。

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