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Preparation of Protein-and Cell-Resistant Surfaces by Hyperthermal Hydrogen Induced Cross-Linking of Poly(ethylene oxide)

机译:高温氢气诱导的聚环氧乙烷交联制备蛋白质和抗细胞表面

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摘要

The functionalization of surfaces with polyethylene oxide) (PEO) is an effective means of imparting resistance to the adsorption of proteins and the attachment and growth of cells, properties that are critical for many biomedical applications. In this work, a new hyperthermal hydrogen induced cross-linking (HHIC) method was explored as a simple one-step approach for attaching PEO to surfaces through the selective cleavage of C-H bonds and subsequent cross-linking of the resulting carbon radicals. In order to study the effects of the process on the polymer, PEO-coated silicon wafers were prepared and the effects of different treatment times were investigated. Subsequently, using an optimized treatment time and a modified butyl polymer with increased affinity for PEO, the technique was applied to butyl rubber surfaces. All of the treated surfaces exhibited significantly reduced protein adsorption and cell growth relative to control surfaces and compared favorably with surfaces that were functionalized with PEO using conventional chemical methods. Thus HHIC is a simple and effective means of attaching PEO to non-functional polymer surfaces.
机译:用聚环氧乙烷(PEO)对表面进行功能化是赋予蛋白质吸附,细胞附着和生长抗性的有效手段,而这些特性对于许多生物医学应用而言至关重要。在这项工作中,探索了一种新的高温氢诱导交联(HHIC)方法,该方法是一种简单的一步法,可通过选择性裂解C-H键和随后的所得碳自由基交联将PEO连接至表面。为了研究该方法对聚合物的影响,制备了涂覆有PEO的硅晶片,并研究了不同处理时间的影响。随后,使用最优化的处理时间和对PEO具有更高亲和力的改性丁基聚合物,将该技术应用于丁基橡胶表面。相对于对照表面,所有处理过的表面均表现出显着降低的蛋白质吸附和细胞生长,并且与使用常规化学方法用PEO功能化的表面相比具有优势。因此,HHIC是将PEO附着到非功能性聚合物表面的一种简单有效的方法。

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