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Enhanced performance of an affinity biosensor interface based on mixed self-assembled monolayers of thiols on gold

机译:基于金上硫醇的混合自组装单分子层的亲和生物传感器界面的增强性能

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摘要

An affinity biosensor interface of a biosensor is the interface between the sample and the transducer surface and is therefore of the utmost importance for the general performance of a biosensor. For immunosensor applications the affinity biosensor interface consists of antibodies, which are preferably covalently attached to the transducer surface. In this paper the properties and the enhanced performance of an affinity biosensor interface based on mixed self-assembled monolayers (SAMs) on gold are discussed. Mixed SAMs consist of two different functionalities, which allow attachment of bioreceptor molecules and avoid nonspecific adsorption. In this work, mixed SAMs of thiols with carboxylic and hydroxyl or poly(ethylene glycol) groups are characterized with contact angle measurements, cyclic voltammetry, and grazing-angle Fourier transform infrared spectroscopy. It is found that the various mixed SAMs exhibit acceptable coverage and structural properties. Most importantly, surface plasmon resonance measurements clearly show the enhanced performance of these mixed SAMs with regard to sensitivity, stability, and selectivity compared to commercially available affinity biosensor interfaces. This superiority is experimentally demonstrated by evaluating the amount of immobilized antibodies, the recognition of antigens by the immobilized antibody, and the nonspecific adsorption of IgG molecules on the antibody-coated surfaces.
机译:生物传感器的亲和力生物传感器界面是样品和换能器表面之间的界面,因此对于生物传感器的总体性能至关重要。对于免疫传感器应用,亲和生物传感器界面由抗体组成,抗体优选共价附于换能器表面。本文讨论了基于金的混合自组装单分子膜(SAMs)的亲和生物传感器界面的特性和增强的性能。混合SAM由两个不同的功能组成,这些功能允许附着生物受体分子并避免非特异性吸附。在这项工作中,通过接触角测量,循环伏安法和掠角傅立叶变换红外光谱对带有羧基,羟基和聚乙二醇的硫醇混合SAM进行表征。发现各种混合SAM显示出可接受的覆盖范围和结构性质。最重要的是,表面等离振子共振测量结果清楚表明,与市售亲和生物传感器接口相比,这些混合SAM在灵敏度,稳定性和选择性方面的性能均得到增强。通过评估固定化抗体的量,固定化抗体对抗原的识别以及抗体包被表面上IgG分子的非特异性吸附,可以证明这种优越性。

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