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Chitosan Gel Sheet Containing Polymeric Micelles: Synthesis and Gelation Properties of PEG-Grafted Chitosan

机译:含聚合物胶束的壳聚糖凝胶片:PEG接枝的壳聚糖的合成和胶凝性能

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Wound-dressing sheet biomaterials can cover wound sites and enhance wound healing. In this study, a detailed evaluation of the factors affecting both the PEG modification percentage (PMP) in poly(ethylene glycol) (PEG)-grafted chitosan synthesis and the gelation properties of PEG-grafted chitosan was presented for constructing our novel hybrid hydrogel sheet consisting of PEG-grafted chitosan (a gel-forming polymer) and a reactive polymeric micelle (a crosslinker). It was confirmed that various factors (i.e., the weight ratio of PEG/chitosan, the pH of the buffer solution, reaction times, and reaction temperatures) in the preparation stage of PEG-grafted chitosans affected the PMP of PEG-grafted chitosans. Furthermore, the PMP of PEG-grafted chitosans affected their gelation properties. Finally, a ‘flexible’ hydrogel sheet that can be reversibly dried and moistened was successfully obtained. The dried rigid, thin sheet is expected to be suitable for stable preservation. The results obtained in this paper show that the incorporation of drug carriers into biomaterials is a novel approach to improve functionality.
机译:伤口覆盖片生物材料可以覆盖伤口部位并增强伤口愈合。在这项研究中,对影响聚乙二醇(PEG)接枝的壳聚糖合成中的PEG修饰百分比(PMP)和PEG接枝的壳聚糖的胶凝特性的影响因素的详细评估,用于构建我们的新型杂化水凝胶片材由PEG接枝的壳聚糖(形成凝胶的聚合物)和反应性聚合物胶束(交联剂)组成。证实了在PEG接枝的壳聚糖的制备阶段中的各种因素(即,PEG /壳聚糖的重量比,缓冲溶液的pH,反应时间和反应温度)影响PEG接枝的壳聚糖的PMP。此外,PEG接枝的壳聚糖的PMP影响了它们的胶凝特性。最终,成功获得了一种“可弯曲的”水凝胶片,该片可逆地干燥和润湿。干燥的硬质薄片有望适合稳定保存。本文获得的结果表明,将药物载体掺入生物材料是提高功能性的新方法。

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