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Molecular interactions of different size AuNP-COOH nanoparticles with human fibrinogen

机译:AuNP-COOH分子相互作用不同的大小纳米粒子与人体纤维蛋白原

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Protein adsorption influences greatly the performance of materials used in biotechnology and biomedicine. The binding of fibrinogen (Fg) to nanoparticles (NPs) can result in protein unfolding and exposure of cryptic epitopes that subsequently interact with cell surface receptors. The response and its degree are dependent on the size, charge, and concentration of the NPs. In this study the binding kinetics of human Fg to negatively charged 11-mercaptoundecanoic acid-functionalized gold nanoparticles (AuNPs-COOH) ranging from 5.6 to 64.5 nm were examined. The larger NPs bound Fg with a larger number of proteins per square unit and a higher dissociation rate (K_d'), but with decreased affinity. By contrast, the 5.6 nm AuNPs-COOH behaved in a cooperative manner for Fg adsorption. In the presence of excess Fg, only the 64.5 nm AuNPs-COOH showed severe aggregation, whose degree was alleviated in a dilute Fg solution. The Fg is adsorbed through a side-on configuration and both side-on and end-on configurations on the smaller (5.6 and 14.2 nm) and 31.5 nm AuNPs-COOH, respectively. It also retains the native conformation. By contrast, on the 64.5 nm AuNPs-COOH the Fg adopts the end-on configuration and loses most of the secondary structure.
机译:蛋白质吸附影响极大材料用于生物技术的性能和生物医学。纳米颗粒(NPs)会导致蛋白质神秘的展开和接触抗原表位随后与细胞表面相互作用受体。依赖于尺寸、电荷和浓度NPs。人类Fg带负电11-mercaptoundecanoic acid-functionalized黄金纳米颗粒(AuNPs-COOH)从5.6到64.5 nm检查。每平方单位与大量的蛋白质和更高的离解率(K_d”),但随着亲和力下降。Fg AuNPs-COOH行为以合作的方式吸附。64.5 nm AuNPs-COOH显示严重的聚合,在稀释的程度减轻Fg吗解决方案。侧面和端点的配置配置在较小(5.6和14.2海里)分别和31.5 nm AuNPs-COOH。保留本机构象。64.5 nm AuNPs-COOH Fg采用端点的配置和失去了大部分的次要的结构。

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