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Catechol-Functionalized Chitosan/Pluronic Hydrogels for Tissue Adhesives and Hemostatic Materials

机译:用于组织粘合剂和止血材料的邻苯二酚功能化壳聚糖/普鲁尼尼克水凝胶

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摘要

Bioinspired from adhesion behaviors of mussels, injectable and thermosensitive chitosan/Pluronic composite hydrogels were synthesized for tissue adhesives and hemostatic materials. Chitosan conjugated with multiple catechol groups in the backbone was cross-linked with terminally thiolated Pluronic F-127 triblock copolymer to produce temperature-sensitive and adhesive sol-gel transition hydrogels. A blend mixture of the catechol-conjugated chitosan and the thiolated Pluronic F-127 was a viscous solution state at room temperature but became a cross-linked gel state with instantaneous solidification at the body temperature and physiological pH. The adhesive chitosan/Pluronic injectable hydrogels with remnant catecholgroups showed strong adhesiveness to soft tissues and mucous layers and also demonstrated superior hemostatic properties. These chitosan/Pluronic hydrogels are expected to be usefully exploited for injectable drug delivery depots, tissue engineering hydrogels, tissue adhesives, and antibleeding materials.
机译:从贻贝的粘附行为出发,从生物启发出发,合成了可注射和热敏的壳聚糖/ Pluronic复合水凝胶,用于组织粘合剂和止血材料。将在主链上与多个邻苯二酚基团共轭的壳聚糖与末端硫醇化的Pluronic F-127三嵌段共聚物交联,以生产对温度敏感且具有粘性的溶胶-凝胶转变水凝胶。邻苯二酚共轭脱乙酰壳多糖和硫醇化的Pluronic F-127的共混混合物在室温下呈粘稠溶液状态,但在人体温度和生理pH值下会瞬间固化而变成交联的凝胶状态。带有残留儿茶酚基团的壳聚糖/ Pluronic胶粘剂可注射水凝胶显示出对软组织和粘液层的强粘性,并且还具有出色的止血性能。这些壳聚糖/ Pluronic水凝胶有望被有效地用于可注射药物递送库,组织工程水凝胶,组织粘合剂和止血材料。

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