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Viscoelastic hydrogels from poly(vinyl alcohol)-Fe(III) complex

机译:聚乙烯醇-铁(III)络合物的粘弹性水凝胶

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摘要

Hydrogels are three dimensional scaffolds of hydrophilic polymers with inter-connected water channels. In this investigation, an interesting approach for the fabrication of a highly viscoelastic hydrogel derived from a polyvinyl alcohol (PVA) based macromer is reported. PVA was crosslinked using Fe~(3+) ions under basic conditions to obtain a stable hydrogel with a highly porous network structure. The swelling ratio of the designed hydrogels was evaluated and correlated to the network structure of the metal coordinated crosslinked macromers. Compressive modulus and dynamic viscoelastic measurements were carried out using a dynamic mechanical analyzer and no significant changes in storage modulus were observed by increasing the temperature up to 45 ℃. A creep study revealed that the elastic recovery was enhanced with an increase in the degree of crosslinking. The effect of crosslinking influenced properties such as the glass transition, melting point and melting enthalpy of the crosslinked network. The cytocompatibility of the gels was studied using human lung fibroblasts (IMR-90) and no toxic effects or significant cell attachments were observed on the surface of the gel after 5 days. The designed hydrogels may be useful for biomedical procedures which require highly viscoelastic, biocompatible, thermally and mechanically stable biomaterials.
机译:水凝胶是具有相互连接的水通道的亲水性聚合物的三维支架。在这项研究中,报道了一种有趣的方法,用于制备基于聚乙烯醇(PVA)的大分子单体的高粘弹性水凝胶。在碱性条件下,使用Fe〜(3+)离子使PVA交联,得到具有高度多孔网络结构的稳定水凝胶。评价了所设计的水凝胶的溶胀率,并将其与金属配位的交联大分子单体的网络结构相关。使用动态机械分析仪进行压缩模量和动态粘弹性测量,温度升高至45℃时,储能模量没有明显变化。蠕变研究表明,随着交联度的增加,弹性恢复得到增强。交联的效果影响了性能,例如交联网络的玻璃化转变温度,熔点和熔融焓。使用人肺成纤维细胞(IMR-90)研究了凝胶的细胞相容性,在5天后未观察到凝胶表面的毒性作用或明显的细胞附着。设计的水凝胶可用于需要高粘弹性,生物相容性,热和机械稳定性的生物材料的生物医学程序。

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