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Surface modification of UHMWPE for use in total joint replacements.

机译:UHMWPE的表面改性可用于全关节置换。

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摘要

To create a hydrophilic, lubricious, more wear-resistant UHMWPE bearing, a novel hyaluronan (HA) derivative and novel UHMWPE-hyaluronan composite were developed. HA was silylated to increase its hydrophobicity and compatibility with UHMWPE. The sily1 HA rapidly diffused into the connected pores of UHMWPE preforms in xylenes solution, and fixed within UHMWPE and on its surface after crosslinking. A micro-composite was obtained after hot-pressing the porous preform. The presence of HA film on the composite surface has been demonstrated through X-Ray photoelectron spectroscopy (XPS) analysis and Toluidine Blue O (TBO) dye assay. The aqueous contact angles of micro-composite samples were significantly lower compared with UHMWPE control samples, and the samples processed with hydrolysis prior to final molding were superior to those processed with hydrolysis after molding.
机译:为了创建亲水,润滑,更耐磨的UHMWPE轴承,开发了一种新型的透明质酸(HA)衍生物和新型的UHMWPE-透明质酸复合材料。 HA被甲硅烷基化以增加其疏水性和与UHMWPE的相容性。 sily1 HA在二甲苯溶液中迅速扩散到UHMWPE预成型件的连通孔中,并在交联后固定在UHMWPE内及其表面上。热压多孔预成型件后获得微复合材料。通过X射线光电子能谱(XPS)分析和甲苯胺蓝O(TBO)染料分析证明了复合材料表面上HA膜的存在。与UHMWPE对照样品相比,微复合材料样品的水接触角明显更低,并且在最终成型之前通过水解处理的样品要优于成型之后通过水解处理的样品。

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