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首页> 外文期刊>Journal of biomaterials science >Cross-linking of gelatin and chitosan complex nanofibers for tissue-engineering scaffolds
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Cross-linking of gelatin and chitosan complex nanofibers for tissue-engineering scaffolds

机译:明胶和壳聚糖复合纳米纤维在组织工程支架中的交联

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摘要

The aim of this study is to investigate cross-linked gelatin-chitosan nanofibers produced by means of electrospinning. Gelatin and chitosan nanofibers were electrospun and then cross-linked by glutaraldehyde (GTA) vapor at room temperature. Scanning electron microscopy (SEM) images showed that the cross-linked mats could keep their nanofibrous structure after being soaked in deionized water at 37°C. The cross-linking mechanism was discussed based on FT-IR results. The two main mechanisms of cross-linking for chitosan and gelatin-chitosan complex are Schiff base reaction and acetalization reaction. For gelatin, the mechanism of cross-linking was Schiff base reaction. The mechanical properties of nanofibrous mats were improved after cross-linking. The biocompatibility of electrospun nanofibrous mats after cross-linking was investigated by the viability of porcine iliac endothelial cells (PIECs). The morphologies of PIECs on the cross-linked nanofibrous mats were observed by SEM. In addition, proliferation of PIECs was tested with the method of methylthiazol tetrazolium (MTT) assay. The results indicate that gelatin-chitosan nanofibrous mats could be a promising candidate for tissue-engineering scaffolds.
机译:这项研究的目的是研究通过电纺丝生产的交联明胶-壳聚糖纳米纤维。将明胶和壳聚糖纳米纤维进行静电纺丝,然后在室温下通过戊二醛(GTA)蒸汽进行交联。扫描电子显微镜(SEM)图像显示,交联垫在37°C的去离子水中浸泡后可以保持其纳米纤维结构。基于FT-IR结果讨论了交联机理。壳聚糖和明胶-壳聚糖复合物的交联的两个主要机理是席夫碱反应和缩醛化反应。对于明胶,交联的机理是席夫碱反应。交联后,纳米纤维垫的机械性能得到改善。通过猪内皮细胞(PIECs)的活力研究了交联后电纺纳米纤维毡的生物相容性。通过SEM观察了交联的纳米纤维垫上的PIEC的形态。另外,用甲基噻唑四唑(MTT)测定法测试了PIECs的增殖。结果表明,明胶-壳聚糖纳米纤维垫可能是组织工程支架的有希望的候选人。

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