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首页> 外文期刊>Polymer international >An interpenetrating network biohydrogel of gelatin and gellan gum by using a combination of enzymatic and ionic crosslinking approaches
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An interpenetrating network biohydrogel of gelatin and gellan gum by using a combination of enzymatic and ionic crosslinking approaches

机译:明胶和吉兰糖胶互穿网络生物水凝胶,通过酶和离子交联方法的结合使用

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摘要

Gelatin is a popular substrate for cell culture applications due to its biocompatibility and biodegradability. However, the mechanical property of gelatin is not satisfactory in certain tissue engineering areas where tunable and higher mechanical strengths are required. To achieve this purpose without exposure of materials to cytotoxic chemicals or procedures, a new biohydrogel of gelatin and gellan gum with an interpenetrating network (IPN) structure was prepared using a combination of enzymatic and ionic crosslinking approaches. The gelation procedure and thermal stability of the IPN structure were demonstrated in detail by a rheological study. The resulting IPN biohydrogel exhibited significantly increased and tunable mechanical strength, decreased swelling ratios and lower degradation rate compared with pure gelatin gel. The composite biohydrogels supported the attachment and proliferation of L929 fibroblasts as shown in vitro. These results indicate that this mechanically robust biohydrogel has the promising potential for serving as a cell support in the field of tissue engineering.
机译:明胶由于其生物相容性和可生物降解性而成为细胞培养应用的常用底物。但是,明胶的机械性能在某些需要可调和更高机械强度的组织工程领域中并不令人满意。为了实现该目的而不使材料暴露于细胞毒性化学物质或程序,使用酶和离子交联方法的组合制备了具有互穿网络(IPN)结构的明胶和吉兰糖胶的新型生物水凝胶。通过流变学研究详细证明了IPN结构的凝胶化过程和热稳定性。与纯明胶相比,所得的IPN生物水凝胶具有显着提高的可调节机械强度,降低的溶胀率和较低的降解速率。体外显示,复合生物水凝胶支持L929成纤维细胞的附着和增殖。这些结果表明,该机械上坚固的生物水凝胶具有在组织工程领域用作细胞支持物的有希望的潜力。

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