首页> 外文期刊>Journal of biomedical materials research, Part A >Homogeneous chitosan-PLGA composite fibrous scaffolds for tissue regeneration
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Homogeneous chitosan-PLGA composite fibrous scaffolds for tissue regeneration

机译:用于组织再生的均相壳聚糖-PLGA复合纤维支架

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Novel chitosan-poly(lactide-co-glycolide) (PLGA) composite fibers and nonwoven fibrous scaffolding matrices were designed for cartilage regeneration. A homogenous one-phase mixture of chitosan and PLGA at a ratio of 50:50 (w/w percent) was successfully produced using cosol-vents of 1,1,1,3,3,3-hexafluoroisopropanol and methylene chloride. A wet spinning technique was employed to fabricate composite fibrous matrices. Physical characterizations of one-phase chitosan-PLGA composite (C/Pc) matrices were performed for their homogeneity, in vitro degradabil-ity, mechanical property and wettability in comparison to two-phase chitosan and PLGA composite fibrous matrices in which PLGA was dispersed in a continuous chitosan phase. The one-phase property of C/Pc matrices was confirmed from thermal analysis. Significantly retarded degradation was observed from the composite C/Pc fibrous matrices in contrast to the PLGA-dispersed chitosan (C/ Pd) fibrous matrices due to the effective acid-neutralizing effect of chitosan on acid metabolites of PLGA. The composition of chitosan with PLGA resulted in a characteristic soft and strong mechanical property that could not be retained by either PLGA or the chitosan fibers. In addition, the presence of chitosan in the composite matrices provided proper wettability for cell cultivation. The C/Pc matrices were further investigated for their scaffolding function using chondrocytes for cartilage regeneration. Enhanced cell attachment was. observed on the composite matrix compared with the PLGA fibrous matrices. The mRNA expression of type II collagen and aggrecan was upregulated in the composite matrix owing to the superior cell compatibility of chitosan. These results suggest an excellent potential for C/Pc one-phase composite fibrous matrices as scaffolding materials for tissue regeneration.
机译:新型壳聚糖-聚(丙交酯-乙交酯)(PLGA)复合纤维和非织造纤维脚手架矩阵被设计用于软骨再生。使用1,1,1,3,3,3-六氟异丙醇和二氯甲烷的助溶剂成功制备了壳聚糖和PLGA的均质一相混合物,比例为50:50(w / w%)。采用湿纺技术来制造复合纤维基质。与其中分散有PLGA的两相壳聚糖和PLGA复合纤维基质相比,对一相壳聚糖-PLGA复合(C / Pc)基质的均质性,体外降解性,力学性能和润湿性进行了物理表征。连续的壳聚糖相。通过热分析确认了C / Pc矩阵的一相性质。由于壳聚糖对PLGA酸代谢产物具有有效的酸中和作用,与PLGA分散的壳聚糖(C / Pd)纤维基质相比,从复合C / Pc纤维基质中观察到了显着的降解降解。具有PLGA的壳聚糖组合物具有PLGA或壳聚糖纤维无法保留的特征性柔软和强机械性能。另外,在复合基质中壳聚糖的存在为细胞培养提供了适当的润湿性。使用软骨细胞再生软骨,进一步研究了C / Pc基质的支架功能。增强细胞附着力。与PLGA纤维基质相比,在复合基质上观察到的结果更明显。由于壳聚糖具有优异的细胞相容性,复合基质中II型胶原蛋白和聚集蛋白聚糖的mRNA表达上调。这些结果表明,C / Pc单相复合纤维基质作为组织再生的支架材料具有极好的潜力。

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