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首页> 外文期刊>ACS applied materials & interfaces >yy Photoreactive Carboxybetaine Copolymers Impart Biocompatibility and Inhibit Plasticizer Leaching on Polyvinyl Chloride
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yy Photoreactive Carboxybetaine Copolymers Impart Biocompatibility and Inhibit Plasticizer Leaching on Polyvinyl Chloride

机译:yy光反应性羧基丙替丹酸共聚物赋予在聚氯乙烯上的生物相容性和抑制增塑剂浸出

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摘要

Protein and cell interactions on implanted, blood-contacting medical device surfaces can lead to adverse biological reactions. Medical-grade poly(vinyl chloride) (PVC) materials have been used for decades, particularly as blood-contacting tubes and containers. However, there are numerous concerns with their performance including platelet activation, complement activation, and thrombin generation and also leaching of plasticizers, particularly in clinical applications. Here, we report a surface modification method that can dramatically prevent blood protein adsorption, human platelet activation, and complement activation on commercial medical-grade PVC materials under various test conditions. The surface modification can be accomplished through simple dip-coating followed by light illumination utilizing biocompatible polymers comprising zwitterionic carboxybetaine (CB) moieties and photosensitive cross-linking moieties. This surface treatment can be manufactured routinely at small or large scales and can impart to commercial PVC materials superhydrophilicity and nonfouling capability. Furthermore, the polymer effectively prevented leaching of plasticizers out from commercial medical-grade PVC materials. This coating technique is readily applicable to many other polymers and medical devices requiring surfaces that will enhance performance in clinical settings.
机译:植入蛋白质和细胞相互作用,血液接触医疗器械表面可导致不良生物反应。几十年来使用医疗级聚(氯乙烯)(PVC)材料,特别是作为血液接触管和容器。然而,在临床应用中,它们的性能具有许多疑虑,包括血小板激活,补充激活和凝血酶产生以及浸出增塑剂,特别是在临床应用中。在这里,我们报告了一种表面改性方法,可以在各种试验条件下显着地防止商业医疗级PVC材料上的血液蛋白质吸附,人血小板活化和补体激活。表面改性可以通过简单的浸涂完成,然后利用包含双层离子羧基脲(CB)部分和光敏交联部分的生物相容性聚合物的光照射。该表面处理可以在小或大尺度下常规制造,并且可以赋予商业PVC材料超细管性和非滤光能力。此外,聚合物有效地防止了来自商业医疗级PVC材料的增塑剂浸出。该涂层技术容易适用于许多需要表面的其他聚合物和医疗器械,该装置将在临床环境中提高性能。

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