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Protein adsorption and cell adhesion on nanoscale bioactive coatings formed from poly(ethylene glycol) and albumin microgels.

机译:蛋白质吸附和细胞粘附在由聚乙二醇和白蛋白微凝胶形成的纳米级生物活性涂层上。

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摘要

Late-term thrombosis on drug-eluting stents is an emerging problem that might be addressed using extremely thin, biologically active hydrogel coatings. We report a dip-coating strategy to covalently link poly(ethylene glycol) (PEG) to substrates, producing coatings with approximately <100 nm thickness. Gelation of PEG-octavinylsulfone with amines in either bovine serum albumin (BSA) or PEG-octaamine was monitored by dynamic light scattering (DLS), revealing the presence of microgels before macrogelation. NMR also revealed extremely high end-group conversions prior to macrogelation, consistent with the formation of highly crosslinked microgels and deviation from Flory-Stockmayer theory. Before macrogelation, the reacting solutions were diluted and incubated with nucleophile-functionalized surfaces. Using optical waveguide lightmode spectroscopy (OWLS) and quartz crystal microbalance with dissipation (QCM-D), we identified a highly hydrated, protein-resistant layer with a thickness of approximately 75 nm. Atomic force microscopy in buffered water revealed the presence of coalesced spheres of various sizes but with diameters less than about 100 nm. Microgel-coated glass or poly(ethylene terephthalate) exhibited reduced protein adsorption and cell adhesion. Cellular interactions with the surface could be controlled by using different proteins to cap unreacted vinylsulfone groups within the coating.
机译:药物洗脱支架的后期血栓形成是一个正在出现的问题,可以使用极薄的具有生物活性的水凝胶涂层来解决。我们报告了一种浸涂策略,可将聚(乙二醇)(PEG)共价连接到基材上,从而产生厚度约<100 nm的涂层。通过动态光散射(DLS)监测牛血清白蛋白(BSA)或PEG-八胺中PEG-八乙烯基砜与胺的凝胶化,揭示了大凝胶化之前微凝胶的存在。 NMR还显示在大分子凝胶化之前,端基的转化率极高,这与高度交联的微凝胶的形成以及与Flory-Stockmayer理论的偏差相一致。在大凝胶化之前,将反应溶液稀释并与亲核官能化的表面一起孵育。使用光波导光模光谱(OWLS)和带耗散的石英晶体微天平(QCM-D),我们鉴定出了高度水合的抗蛋白质层,其厚度约为75 nm。缓冲水中的原子力显微镜显示存在各种尺寸但直径小于约100 nm的聚结球。涂有微凝胶的玻璃或聚对苯二甲酸乙二酯显示出减少的蛋白质吸附和细胞粘附。与表面的细胞相互作用可以通过使用不同的蛋白质在涂层中封盖未反应的乙烯基砜基团来控制。

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