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Chitosan Lysozyme Conjugates for Enzyme-Triggered Hydrogel Degradation in Tissue Engineering Applications

机译:壳聚糖溶菌酶缀合物用于组织工程应用中的酶触发水凝胶降解

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摘要

Tuning hydrogel degradation enables effective and successful tissue regeneration by modulating cellular behaviors and matrix formation. In this work, we develop a novel degradable hydrogel scaffold on the basis of a unique enzyme substrate complex by photocrosslinking. Chitosan and lysozyme are chemically modified with methacrylate moieties to be tethered in hydrogels, and in the presence of riboflavin initiator, these hydrogels are cured by blue light irradiation. The incorporation of lysozyme to chitosan hydrogels accelerates the degradation rate of the crosslinked hydrogels in a dose-dependent manner, as evidenced by an increase in pore size and interconnectivity through cryogenic scanning electron microscopy over time. Those noncytotoxic materials significantly enhance cellular proliferation and migration, which contribute to osteogenic differentiation of encapsulated mesenchymal stem cells in vitro and bone formation in mouse calvarial defects. These findings suggest a promising strategy to modulate the degradation behavior of hydrogels for use in tissue engineering.
机译:调整水凝胶降解通过调节细胞行为和基质形成,使组织再生能够实现有效和成功的组织再生。在这项工作中,我们基于通过光电源型酶的独特酶衬底复合物开发一种新的可降解水凝胶支架。用甲基丙烯酸酯部分在水凝胶中化学改性壳聚糖和溶菌酶,并且在核黄素引发剂存在下,这些水凝胶通过蓝光照射来固化。将溶菌酶掺入壳聚糖水凝胶以剂量依赖性方式加速了交联水凝胶的降解速率,如通过低温扫描电子显微镜随时间的推移而通过孔径的增加和互连。那些非胞素毒性材料显着提高了细胞增殖和迁移,这有助于在小鼠颅脑缺陷中体外和骨形成的包封间充质干细胞的骨质发生分化。这些研究结果表明了一种有希望的策略来调节水凝胶中用于组织工程的降解行为。

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