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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Grafting of PEO to polymer surfaces using electron beam irradiation.
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Grafting of PEO to polymer surfaces using electron beam irradiation.

机译:使用电子束辐照将PEO接枝到聚合物表面。

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A new method was developed for binding poly-(ethylene oxide) (PEO) to polymer surfaces that involves the use of electron beam irradiation in two steps. In the first, methacrylic acid was grafted and polymerized to a polymer surface, changing it from hydrophobic to hydrophilic. Exposure of this surface to aqueous PEO solutions resulted in strong hydrogen bonding of the PEO, which was covalently grafted in a second radiation step. The PEO grafts were stable; they could not be removed with extensive washing with water, soaking in basic solution, or gentle mechanical scraping. Both monolayers and multilayers of PEO were formed. The density of the monolayers were found to have little dependence on the molecular weight or concentration of the PEO solution; multilayers could be controlled by varying the viscosity of the PEO solution and the method of application. The PEO-grafted monolayers were tested for their ability to prevent protein adsorption of cytochrome-c, albumin, and fibronectin. Monolayers of star PEO were the most effective, at best showing a 60% decrease in adsorption from untreated controls. One million molecular wight linear PEO monolayers were almost as effective as star monolayers, and 35,000 g/mol linear PEO was bound too closely to the surface, owing to its small size, to have much impact in preventing protein adsorption. The reason for the continued protein adsorption was believed to be due to a close grafting of the PEO to the surface, as well as the grafted methacrylic acid chains being long enough to extend through the PEO monolayer, thus being accessible on the surface.
机译:开发了一种将聚环氧乙烷(PEO)结合到聚合物表面的新方法,该方法涉及使用电子束辐射的两个步骤。首先,将甲基丙烯酸接枝并聚合到聚合物表面,从疏水性变为亲水性。将该表面暴露于PEO水溶液会导致PEO牢固的氢键结合,在第二个辐射步骤中将其共价接枝。 PEO移植物稳定。不能用大量的水冲洗,将其浸泡在碱性溶液中或用温和的机械刮擦将其除去。形成了PEO的单层和多层。发现单层的密度几乎不依赖于PEO溶液的分子量或浓度。可以通过改变PEO溶液的粘度和施加方法来控制多层。测试了PEO接枝的单层膜防止蛋白质吸附细胞色素c,白蛋白和纤连蛋白的能力。星形PEO的单层效果最好,最多显示未处理对照的吸附量降低60%。一百万个分子重量线性PEO单层几乎与星形单分子层一样有效,并且由于其较小的尺寸,35,000 g / mol线性PEO太紧密地结合在表面上,因此对防止蛋白质吸附有很大影响。认为蛋白质持续吸附的原因是由于PEO紧密接枝到表面,以及接枝的甲基丙烯酸链足够长以延伸穿过PEO单层,因此可以在表面上接近。

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