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Time Dependence of Material Properties of Polyethylene Glycol Hydrogels Chain Extended with Short Hydroxy Acid Segments

机译:具有短羟基酸段的聚乙二醇水凝胶链的材料性能随时间的变化

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摘要

The objective of this work was to investigate the effect of chemical composition and segment number (n) on gelation, stiffness, and degradation of hydroxy acid-chain-extended star polyethylene glycol acrylate (SPEXA) gels. The hydroxy acids included glycolide (G,), L-lactide (L), p-dioxanone (D) and -caprolactone (C). Chain-extension generated water soluble macromers with faster gelation rates, lower sol fractions, higher compressive moduli, and a wide-ranging degradation times when crosslinked into a hydrogel. SPEGA gels with the highest fraction of inter-molecular crosslinks had the most increase in compressive modulus with n whereas SPELA and SPECA had the lowest increase in modulus. SPEXA gels exhibited a wide range of degradation times from a few days for SPEGA to a few weeks for SPELA, a few months for SPEDA, and many months for SPECA. Marrow stromal cells and endothelial progenitor cells had the highest expression of vasculogenic markers when co-encapsulated in the faster degrading SPELA gel.
机译:这项工作的目的是研究化学组成和链段数(n)对羟基酸扩链星形聚乙二醇丙烯酸酯(SPEXA)凝胶的胶凝,刚度和降解的影响。羟基酸包括乙交酯(G 1),L-丙交酯(L),对二恶烷酮(D)和-己内酯(C)。当交联成水凝胶时,链延长产生的水溶性大分子单体具有更快的胶凝速率,更低的溶胶分数,更高的压缩模量和广泛的降解时间。分子间交联度最高的SPEGA凝胶的压缩模量增加最大,而n则SPELA和SPECA的模量增加最低。 SPEXA凝胶的降解时间范围很广,从SPEGA的几天到SPELA的几周,对于SPEDA的几个月,对SPECA的几个月。当共包封在降解速度更快的SPELA凝胶中时,骨髓基质细胞和内皮祖细胞具有最高的血管生成标记物表达。

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