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Preparation and characterization of glycol chitin as a new thermogelling polymer for biomedical applications

机译:乙二醇甲壳素作为生物医学应用的新型热凝胶聚合物的制备与表征

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In this study, a new thermo-sensitive polymer, glycol chitin, was synthesized by controlled N-acetylation of glycol chitosan and evaluated as a thermogelling system. The physico-chemical properties of glycol chitins with different degrees of acetylation (DA) were investigated in terms of degradation, cytotoxicity, Theological properties, and in vitro and in vivo gel formation. Aqueous solutions of glycol chitins were flowable freely at room temperature but quickly became a durable gel at body temperature. Thermo-reversible sol-gel transition properties were observed with fast gelation kinetics. Glycol chitins with higher DA showed faster degradation in the presence of lysozyme. They exhibited no significant biological toxicity against human cell lines. An anti-cancer drug, doxorubicin, could be incorporated into the hydrogel by a simple mixing process and released in a sustained pattern over 13 days. Our findings suggest that glycol chitins could be useful as a new thermogelling biomaterial for drug delivery and injectable tissue engineering.
机译:在这项研究中,通过控制乙二醇壳聚糖的N-乙酰化合成了一种新的热敏聚合物乙二醇甲壳质,并将其作为热胶凝体系进行了评估。从降解,细胞毒性,流变学特性以及体外和体内凝胶形成方面研究了具有不同乙酰化度(DA)的几丁质几丁质的物理化学性质。乙二醇几丁质几丁质水溶液在室温下可自由流动,但在体温下迅速变为耐用的凝胶。观察到热可逆的溶胶-凝胶转变特性以及快速的凝胶动力学。在溶菌酶的存在下,具有较高DA的乙二醇几丁质显示出更快的降解。它们对人细胞系没有明显的生物毒性。可以通过简单的混合过程将抗癌药阿霉素掺入水凝胶中,并持续13天释放。我们的发现表明,乙二醇几丁质几丁质可用作药物递送和可注射组织工程的新型热胶生物材料。

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