首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Versatile Methodology for Glycosurfaces: Direct Ligation of Nonderivatized Reducing Saccharides to Poly(pentafluorophenyl acrylate) Grafted Surfaces via Hydrazide Conjugation
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Versatile Methodology for Glycosurfaces: Direct Ligation of Nonderivatized Reducing Saccharides to Poly(pentafluorophenyl acrylate) Grafted Surfaces via Hydrazide Conjugation

机译:糖腐蚀的多功能方法:通过酰亚氮化物缀合的非主体化还原糖直接连接到聚(五氟苯基丙烯酸酯)接枝表面

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摘要

In this work, we report a convenient and versatile strategy for surface grafted glycopolymer constructs with the goal of surface modification that controls the chemical presentation and grafting density of carbohydrate side chains. This approach employs a difunctional hydrazine linker, chemically modified to an active ester containing poly(pentafluorophenyl acrylate) grafted scaffold, to conjugate a variety of saccharides through the reducing end. The successive conjugation steps are carried out under mild conditions and yield high surface densities of sugars, as high as 4.8 nmol.cm(-2), capable of multivalency, with an intact structure and retained bioactivity. We also demonstrate that this glycosylated surface can bind specific lectins according to the structure of its pendant carbohydrate. To demonstrate bioactivity, this surface platform is used to study the binding events of a human respiratory tract pathogen, Mycoplasma pneumoniae, on surfaces conjugated with sialylated sugars.
机译:在这项工作中,我们报告了表面接枝甘甘油聚合物构建体的方便和通用的策略,其目的是控制碳水化合物侧链的化学呈递和移植密度。 该方法采用双官能肼接头,化学改性至含有聚(五氟苯酯)接枝支架的活性酯,以通过还原端缀合各种糖。 在温和条件下进行连续的缀合步骤,并产生高达4.8nmol.cm(-2)的糖的高表面密度,具有较好的结构和保留的生物活性。 我们还证明,该糖基化表面可以根据其悬浮碳水化合物的结构结合特异性凝集素。 为了证明生物活性,该表面平台用于研究人类呼吸道病原体,支原体肺炎的结合事件,在与唾液酸糖共轭的表面上。

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