Instituto de Ciencia y Tecnología de Polímeros, CSIC, Juan de la Cierva 3, 28006 Madrid, Spain.
Acta Biomater. 2010 Nov;6(11):4189-98. doi: 10.1016/j.actbio.2010.06.005. Epub 2010 Jun 16.
Hyperbranched poly(ester amide) polymer (Hybrane S1200, M(n) 1200 gmol(-1)) was functionalized with maleic anhydride (MA) and propylene sulfide, to obtain multifunctional cross-linkers with fumaric and thiol end groups, S1200MA and S1200SH, respectively. The degree of substitution (DS) of maleic acid groups was controlled by varying the molar ratio of MA to S1200 in the reaction mixture. Hydrogels were obtained by UV cross-linking of functionalized S1200 and poly(ethylene glycol) diacrylate in aqueous solutions. Compressive modulus increased with decreasing S1200/PEG ratio and also depended on the DS of the multifunctional cross-linker (S1200). Also, heparin-based macromonomers together with functionalized hyperbranched polymers were used to construct novel functional hydrogels. The multivalent hyperbranched polymers allowed high cross-linking densities in heparin modified gels while introducing biodegradation sites. Both heparin presence and acrylate/thiol ratio had an impact on degradation profiles and morphologies. Hyperbranched cross-linked hydrogels showed no evidence of cell toxicity. Overall, the multifunctional cross-linkers afford hydrogels with promising properties that suggest that these may be suitable for tissue engineering applications.
超支化聚(酯酰胺)聚合物(Hybrane S1200,M(n) 1200 gmol(-1))用马来酸酐(MA)和丙硫醚进行了功能化,分别得到了具有富马酸和巯基端基的多功能交联剂 S1200MA 和 S1200SH。通过改变反应混合物中 MA 与 S1200 的摩尔比来控制马来酸基团的取代度(DS)。在水溶液中,通过功能性 S1200 和聚乙二醇二丙烯酸酯的 UV 交联得到水凝胶。压缩模量随 S1200/PEG 比例的降低而增加,并且还取决于多功能交联剂(S1200)的 DS。此外,还使用基于肝素的大分子单体和功能化的超支化聚合物来构建新型功能性水凝胶。多价超支化聚合物允许在肝素修饰的凝胶中具有高交联密度,同时引入了可生物降解的位点。肝素的存在和丙烯酰胺/巯基比都对降解曲线和形态有影响。超支化交联水凝胶没有显示出细胞毒性的证据。总的来说,多功能交联剂提供了具有有前途的性能的水凝胶,表明它们可能适用于组织工程应用。