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Photopolymerized Thermosensitive Hydrogels;Synthesis,Degradation,and Cytocompatibility

机译:光聚合热敏水凝胶;合成,降解与细胞相容性

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In situ forming hydrogels based on thermosensitive polymers have attractive properties for tissue engineering.However,the physical interactions in these hydrogels are not strong enough to yield gels with sufficient stability for many of the proposed applications.In this study,additional covalent cross-links were introduced by photopolymerization to improve the mechanical properties and the stability of thermosensitive hydrogels.Methacrylate groups were coupled to the side chains of triblock copolymers (ABA) with thermosensitive poly(N-(2-hydroxypropyl) methacrylamide lactate) A blocks and a hydrophilic poly (ethylene glycol) B block.These polymers exhibit lower critical solution temperature (LCST) behavior in aqueous solution and the cloud point decreased with increasing amounts of methacrylate groups.These methacrylate groups were photopolymerized above the LCST to render covalent cross-links within the hydrophobic domains.The mechanical properties of photopolymerized hydrogels were substantially improved and their stability was prolonged significantly compared to nonphotopolymerized hydrogels.Whereas non-UV-cured gels disintegrated within 2 days at physiological pH and temperature,the photopolymerized gels degraded in 10 to 25 days depending on the degree of cross-linking.To assess biocompatibility,goat mesenchymal stem cells were seeded on the hydrogel surface or encapsulated within the gel and they remained viable as demonstrated by a LIVE/DEAD cell viability/cytotoxicity assay.Expression of alkaline phosphatase and production of collagen I demonstrated the functionality of the mesenchymal stem cells and their ability to differentiate upon encapsulation.Due to the improved mechanical properties,stability,and adequate cytocompatibility,the photopolymerized thermosensitive hydrogels can be regarded as highly potential materials for applications in tissue engineering.
机译:基于热敏聚合物的原位形成水凝胶对组织工程具有吸引人的性能。但是,这些水凝胶的物理相互作用不够强,无法为许多拟议的应用提供具有足够稳定性的凝胶。在这项研究中,还发现了其他共价交联键。甲基丙烯酸酯基团通过热敏性聚(N-(2-羟丙基)甲基丙烯酰胺乳酸酯)A嵌段和亲水性聚(甲基丙烯酸酯)与三嵌段共聚物(ABA)的侧链偶联。这些聚合物在水溶液中具有较低的临界溶液温度(LCST)行为,且浊点随甲基丙烯酸酯基团数量的增加而降低。这些甲基丙烯酸酯基团在LCST上方进行光聚合,从而在疏水域内产生共价交联光聚合水凝胶的机械性能为与非光聚合水凝胶相比,它得到了显着改善,并且其稳定性大大延长了。尽管非紫外线固化的凝胶在生理pH和温度下在2天内会崩解,但光聚合的凝胶在10至25天内降解,具体取决于交联程度。生物相容性,将山羊间充质干细胞接种在水凝胶表面或封装在凝胶中,并通过LIVE / DEAD细胞活力/细胞毒性试验证明它们仍然具有活力。碱性磷酸酶的表达和胶原I的产生证明了间充质干的功能由于改善的机械性能,稳定性和足够的细胞相容性,光聚合热敏水凝胶可被认为是在组织工程中极有潜力的材料。

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