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Synthesis and characterization of in situ cross-linked hydrogel based on self-assembly of thiol-modified chitosan with PEG diacrylate using Michael type addition

机译:基于Michael型加成的巯基修饰壳聚糖与PEG二丙烯酸酯自组装的原位交联水凝胶的合成与表征

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摘要

A novel injectable in situ cross-linked hydrogel has been designed via Michael type addition between thiol-modified chitosan (CS-NAC) and PEG diacrylate (PEGDA). Hydrogel was rapidly formed in situ under physiological conditions. The gelation time depended on the content of free thiols in CS-NAC, temperature, and concentration of CS-NAC and PEGDA. Thermogravimetric analysis showed the thermal stabilities of hydrogels. SEM observation results confirmed a porous 3D structure. Rheological studies showed that the cross-linking density and elasticity of hydrogel had a correlation to the content of CS-NAC and PEGDA. Swelling studies revealed that these hydrogels had a high initial swelling and were degradable under physiological conditions. And swelling was highly temperature-dependent and was directly related to the amount of cross-linking. Biological activities of the hydrogels were evaluated by in vitro cell compatibility on HDFs and A549 cells and the results indicated that the hydrogel was biocompatible.
机译:通过在巯基修饰的壳聚糖(CS-NAC)和PEG二丙烯酸酯(PEGDA)之间的Michael型加成反应,设计了一种新型的可注射原位交联水凝胶。水凝胶在生理条件下快速原位形成。胶凝时间取决于CS-NAC中游离硫醇的含量,温度以及CS-NAC和PEGDA的浓度。热重分析表明水凝胶的热稳定性。 SEM观察结果证实了多孔的3D结构。流变学研究表明,水凝胶的交联密度和弹性与CS-NAC和PEGDA的含量相关。溶胀研究表明,这些水凝胶具有很高的初始溶胀度,并且在生理条件下可降解。溶胀高度依赖于温度,并且与交联量直接相关。通过对HDF和A549细胞的体外细胞相容性评价了水凝胶的生物活性,结果表明该水凝胶具有生物相容性。

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