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Reversible Self-Assembled Monolayers (rSAMs): Adaptable Surfacesfor Enhanced Multivalent Interactions and Ultrasensitive Virus Detection

机译:可逆自组装单分子膜(rSAM):适应性表面用于增强的多价相互作用和超灵敏病毒检测

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摘要

We report on the design of pH-switchable monolayers allowing a reversible and ordered introduction of affinity reagents on sensor surfaces. The principal layer building blocks consist of α-(4-amidinophenoxy)alkanes decorated at the ω-position with affinity ligands. These spontaneously self-assemble on top of carboxylic acid terminated SAMs to form reversible homo or mixed monolayers (rSAMs) that are tunable with respect to the nature of the head group, layer order and stability while featuring pH responsiveness and the dynamic nature of noncovalent build assemblies. We show that this results in a range of unique biosensor features. As a first example a sialic acid rSAM featuring strong lectin affinity is here used to sense hemagglutinin and influenza virus (H5N1) at the pM and fM level by in situ ellipsometry in a fully reversible fashion. We believe that the rSAM concept will find widespread use in surface chemistry and overall for boosting sensitivity in affinity biosensors.
机译:我们报告了pH可转换单层膜的设计,该膜层允许在传感器表面上可逆和有序地引入亲和试剂。主要的层构造单元由在ω位装饰有亲和配体的α-(4-4-基苯氧基)烷烃组成。这些分子自发地在羧酸封端的SAM上自组装,形成可逆的均相或混合单层(rSAM),这些结构在头部基团的性质,层序和稳定性方面可调节,同时具有pH响应性和非共价构建的动态特性。组件。我们表明,这导致了一系列独特的生物传感器功能。作为第一个实例,此处使用具有强凝集素亲和力的唾液酸rSAM以完全可逆的方式通过原位椭圆光度法在pM和fM水平上检测血凝素和流感病毒(H5N1)。我们相信,rSAM概念将在表面化学中得到广泛应用,并且总体上可以提高亲和力生物传感器的灵敏度。

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