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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Surface-Selective Grafting of Crosslinking Layers on Hydrogel Surfaces via Two Different Mechanisms of Photopolymerization for Site-Controllable Release
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Surface-Selective Grafting of Crosslinking Layers on Hydrogel Surfaces via Two Different Mechanisms of Photopolymerization for Site-Controllable Release

机译:通过两种不同的光聚合方法对水凝胶表面交联层的表面选择性接枝位点可控释放

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摘要

This study reports an effective method for controlling substance-release sites of hydrogel. Glycidyl methacrylate, which contains two functional groups, namely, double-bond acrylate and epoxide, is photografted on a hydrogel surface through hydrogen abstraction photopolymerization due to the existence of a hydrogen donor, such as an amine, in the hydrogel matrix. The remaining epoxide group crosslinks the polymer chain of polyglycidyl methacrylate. Substance release of hydrogel is changed due to the altered surface texture of hydrogel. Rate and site-controlled substance release are achieved by controlling the thickness and site of surface grafting and the extent of epoxide ring opening. This study may provide a novel method for achieving hydrogel function or modified performance of other biomaterials to meet biological activity requirements.
机译:本研究报告了控制水凝胶的物质释放位点的有效方法。 甲基丙烯酸缩水甘油酯,其含有两个官能团,即双键丙烯酸酯和环氧化物,在水凝胶表面上通过氢气表面照射,其由于存在于水凝胶基质中的氢供体,例如胺,例如胺。 其余环氧化物组交联聚甲基丙烯酸聚缩水甘油酯的聚合物链。 由于水凝胶的表面纹理改变,水凝胶的物质释放是改变的。 通过控制表面接枝的厚度和位点以及环氧化物环开口的程度来实现速率和站点控制的物质释放。 该研究可以提供一种用于实现水凝胶功能或改性性能的新方法,以满足生物活性要求。

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