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Protein resistance of surfaces prepared by chemisorption of monothiolated poly(ethylene glycol) to gold and dendronization with aliphatic polyester dendrons: Effect of hydrophilic dendrons

机译:通过单硫醇化聚乙二醇对金的化学吸附和脂肪族聚酯树枝状体的树枝化制备的表面的蛋白抗性:亲水性树枝状分子的作用

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摘要

Protein adsorption to surfaces prepared by chemisorption of thiol-terminated poly(ethylene glycol) (HS-PEG(650)-OH) to g-old-coated silicon wafers followed by functionalization of the terminal PEG OH groups with aliphatic polyester dendrons was investigated. Chemisorption of FIS-PEG(650)-OH to the gold surfaces was carried Out Under cloud-point conditions to give a chain density of similar to 3.7 chamsm(2), as calculated from AFM film thickness measurements. Dendronization of the PEG-functionalized surfaces with aliphatic polyester dendrons, generations 1-4, was achieved using divergent dendron growth. The hydrophilicity of the surfaces increased significantly with increasing dendron generation as shown by water contact angle data. The effect of the hydrophilic dendrons on protein adsorption from phosphate-buffered saline (PBS) and plasma are reported. Adsorption of both I-125-radiolabled fibrinogen and lysozyme onto the dendronized surfaces showed that protein adsorption increases upon introduction of dendrons to the PEG-functionalized Surfaces. The similarity between fibrinogen and lysozyme adsorption suggests that resistance of the dendronized Surfaces to proteins follows the same trend regardless of protein size.
机译:研究了通过将巯基封端的聚乙二醇(HS-PEG(650)-OH)化学吸附到涂有g涂层的硅晶片上,然后用脂肪族聚酯树枝状分子官能化末端PEG OH基团,将蛋白质吸附到表面上的现象。 FIS-PEG(650)-OH在金点条件下的化学吸附是在浊点条件下进行的,其链密度类似于3.7 chams / nm(2),这是根据AFM膜厚测量结果计算得出的。利用发散的树突生长,用脂肪族聚酯树突(1-4代)对PEG-官能化表面进行了树突化。如水接触角数据所示,随着树突生成量的增加,表面的亲水性显着增加。据报道,亲水树突对磷酸盐缓冲液(PBS)和血浆中蛋白质的吸附作用。 I-125-可辐射化的纤维蛋白原和溶菌酶都吸附在树突表面上,这表明当将树突引入PEG-官能化表面时,蛋白质吸附增加。纤维蛋白原和溶菌酶吸附之间的相似性表明,无论蛋白质大小如何,树突化表面对蛋白质的抗性都遵循相同的趋势。

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