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A Versatile Star PEG Grafting Method for the Generation of Nonfouling and Nonthrombogenic Surfaces

机译:一种通用的星形PEG接枝方法,可产生无污垢和无血栓的表面

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Polyethylene glycol (PEG) grafting has a great potential to create nonfouling and nonthrombogenic surfaces, but present techniques lack versatility and stability. The present work aimed to develop a versatile PEG grafting method applicable to most biomaterial surfaces, by taking advantage of novel primary amine-rich plasma-polymerized coatings. Star-shaped PEG covalent binding was studied using static contact angle, X-ray photoelectron spectroscopy (XPS), and quartz crystal microbalance with dissipation monitoring (QCM-D). Fluorescence and QCM-D both confirmed strong reduction of protein adsorption when compared to plasma-polymerized coatings and pristine poly(ethyleneterephthalate) (PET). Moreover, almost no platelet adhesion was observed after 15 min perfusion in whole blood. Altogether, our results suggest that primary amine-rich plasma-polymerized coatings offer a promising stable and versatile method for PEG grafting in order to create nonfouling and nonthrombogenic surfaces and micropatterns.
机译:聚乙二醇(PEG)接枝具有产生不结垢和不形成血栓的表面的巨大潜力,但是目前的技术缺乏通用性和稳定性。本工作旨在通过利用新型的富含伯胺的等离子体聚合涂层,开发适用于大多数生物材料表面的通用PEG接枝方法。使用静态接触角,X射线光电子能谱(XPS)和带有耗散监测的石英晶体微天平(QCM-D)研究了星形PEG共价结合。与等离子聚合涂层和原始聚对苯二甲酸乙二酯(PET)相比,荧光和QCM-D均证实蛋白质吸附明显降低。此外,在全血中灌注15分钟后,几乎没有观察到血小板粘附。总而言之,我们的结果表明,富含伯胺的等离子体聚合涂料为PEG接枝提供了一种有希望的稳定和通用方法,以形成不结垢和无血栓形成的表面和微图案。

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