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首页> 外文期刊>Biomacromolecules >'Docking Sites': Nanometer-Scale Organization of a Reactive, Protein-resistant, Graft Copolymer-Based Interface for Macromolecule Immobilization
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'Docking Sites': Nanometer-Scale Organization of a Reactive, Protein-resistant, Graft Copolymer-Based Interface for Macromolecule Immobilization

机译:“对接站点”:纳米级反应性,抗蛋白质,接枝共聚物的高分子固定化界面的纳米级组织。

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The signal-to-noise ratio of a sensor system is determined by the affinity of its active component for the analyte on one hand and its inertness with respect to unrelated stimuli (noise) on the other hand. Nonspecific interactions between the environment and biosensor components (typically constructed from glass, silica, or transition metal oxides) result in nonspecific adsorption onto the latter and constitute a major source of noise. We have previously introduced a polymeric interface for preventing nonspecific adsorption while allowing for high-affinity, specific interactions. It is based on the coassembly of biotinylated and nonbiotinylated poly(L-lysine)-graft-poly(ethylene glycol) from aqueous solutions to negatively charged surfaces, such as Nb2O5. In this study, we investigated by atomic force microscopy the nanoscale organization of this interface for each individual step involved in the preparation of a bioactive interface: polymer adsorption, loading with streptavidin, and binding of biotinylated vesicles.
机译:传感器系统的信噪比一方面取决于其活性成分对分析物的亲和力,另一方面取决于相对于无关刺激(噪声)的惰性。环境与生物传感器组件(通常由玻璃,二氧化硅或过渡金属氧化物构成)之间的非特异性相互作用会导致非特异性吸附在后者上,并构成主要的噪声源。我们之前已经引入了聚合物界面,以防止非特异性吸附,同时允许高亲和力,特异性相互作用。它基于生物素化和非生物素化的聚(L-赖氨酸)-接枝聚(乙二醇)从水溶液到带负电荷的表面(如Nb2O5)的共组装。在这项研究中,我们通过原子力显微镜研究了涉及生物活性界面制备的每个步骤的该界面的纳米级组织:聚合物吸附,链霉亲和素的负载以及生物素化囊泡的结合。

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