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Surface coatings for solid-state nanopores

机译:固态纳米孔的表面涂层

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摘要

Since their introduction in 2001, solid-state nanopores have been increasingly exploited for the detection and characterization of biomolecules ranging from single DNA strands to protein complexes. A major factor that enables the application of nanopores to the analysis and characterization of a broad range of macromolecules is the preparation of coatings on the pore wall to either prevent non-specific adhesion of molecules or to facilitate specific interactions of molecules of interest within the pore. Surface coatings can therefore be useful to minimize clogging of nanopores or to increase the residence time of target analytes in the pore. This review article describes various coatings and their utility for changing pore diameters, increasing the stability of nanopores, reducing non-specific interactions, manipulating surface charges, enabling interactions with specific target molecules, and reducing the noise of current recordings through nanopores. We compare the coating methods with respect to the ease of preparing the coating, the stability of the coating and the requirement for specialized equipment to prepare the coating.
机译:自2001年推出以来,固态纳米孔已经越来越多地利用检测和表征生物分子从单一DNA链蛋白质复合物。的应用分析和纳米孔广泛的描述高分子涂料的制备孔壁,防止非特异性粘附分子或促进特定的感兴趣的分子内的相互作用孔隙。减少纳米孔堵塞或增加停留时间的目标分析物孔隙。本综述介绍各种涂料和他们的效用变化的孔隙直径,增加纳米孔的稳定性,减少非特异性相互作用,操纵面与特定的指控,使交互目标分子,和减少噪音当前记录通过纳米孔。涂层方法的难易程度准备涂层的稳定性涂料和特殊要求设备准备涂层。

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