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首页> 外文期刊>ACS Omega >Screening of a Glycopolymer Library of GM1 Mimics Containing Hydrophobic Units Using Surface Plasmon Resonance Imaging
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Screening of a Glycopolymer Library of GM1 Mimics Containing Hydrophobic Units Using Surface Plasmon Resonance Imaging

机译:使用表面等离子体共振成像筛选含有疏水单元的GM1模拟物的糖聚合物库

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Effective screening methods for the development of glycopolymers as molecular recognition materials are desirable for the discovery of novel biofunctional materials. A glycopolymer library was prepared to obtain guidelines for the design of glycopolymers for the recognition of cholera toxin B subunits (CTB). Glycopolymers with varying ratios of hydrophobic and sugar units were synthesized by reversible addition fragmentation chain transfer polymerization. N-tert-Butylacrylamide, N-phenylacrylamide, and N-cyclohexylacrylamide as hydrophobic units were copolymerized in the polymer backbone, and galactose, which contributes to CTB recognition, was introduced into the side chains by “post-click” chemistry. The thiol-terminated glycopolymers were immobilized on a gold surface. The polymer immobilization substrate was analyzed in terms of interaction with galactose recognition proteins (CTB, peanut agglutinin, and Ricinus communis agglutinin I) using surface plasmon resonance imaging. The polymers with high ratios of sugar and hydrophobic units had the strongest interactions with the CTB, which was different from the trend with peanut agglutinin and Ricinus communis agglutinin I. The binding constant of the CTB with the glycopolymer with hydrophobic units was 4.1 × 106 M–1, which was approximately eight times larger than that of the polymer without hydrophobic units. A correlation was observed between the log P value and the binding constant, indicating that the hydrophobic interaction played an important role in binding. New guidelines for the design of recognition materials were obtained by our screening method.
机译:作为分子识别材料的显影糖聚合物的显影的有效筛选方法是为了发现新型生物功能材料。制备甘甘油共聚物库以获得用于识别霍乱毒素B亚基(CTB)的糖聚合物设计的指导。通过可逆添加碎裂链转移聚合合成具有不同比例的疏水性和糖单元的糖聚合物。作为疏水单元的N-叔丁基丙烯酰胺,N-苯基丙烯酰胺和N-环己基丙烯酰胺在聚合物主链中共聚,并且通过“点击”化学将有助于CTB识别的半乳糖引入侧链。将硫醇封端的糖聚合物固定在金表面上。在使用表面等离子体共振成像的与半乳糖识别蛋白(CTB,花生凝集蛋白和Ricinus Communis I)的相互作用方面分析了聚合物固定基质。具有高比率和疏水单元的聚合物与CTB具有最强的相互作用,其与花生凝集素和Ricinus Communis inglutinin I的趋势不同。CTB与含有疏水单元的CTB的结合常数为4.1×106米-1,其比没有疏水单元的聚合物大约八倍。在Log P值和结合常数之间观察到相关性,表明疏水相互作用在结合中发挥着重要作用。通过我们的筛选方法获得了识别材料设计的新准则。

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