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Electrospun nanostructured chitosan-poly(vinyl alcohol) scaffolds: A biomimetic extracellular matrix as dermal substitute

机译:电纺纳米结构的壳聚糖-聚乙烯醇支架:仿生细胞外基质作为皮肤替代物

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摘要

Electrospinning is a versatile technique to make biomimetic and nanostructured scaffolds for skin tissue engineering. In this study we have electrospun and characterized chitosan (C)-poly(vinyl alcohol) (PVA) blend nanofibers as dermal substitutes and compared with 2D C-PVA films. The in vitro characterization of the C-PVA nanofibers and 2D films were evaluated using mouse 3T3 fibroblast cells and our results demonstrated that the cells adhered and proliferated on the surface of C-PVA nanofibers. In our animal studies, the implantation of C-PVA nanofibers along with topical administration of growth factor R-Spondin 1 on full thickness wounds created on rats showed 98.6% wound closure after two weeks post-surgery. The catalase and superoxide dismutase activity of the healing tissue was significantly higher in the groups treated with topical administration of growth factor and C-PVA nanofibers (p < 0.05). Thus these C-PVA nanofibers along with novel growth factor are promising new biomaterials that could be used as dermal substitutes for accelerated wound healing.
机译:电纺丝是一种用于皮肤组织工程的仿生和纳米结构支架的通用技术。在这项研究中,我们已经静电纺丝和表征了壳聚糖(C)-聚乙烯醇(PVA)共混纳米纤维作为皮肤替代品,并与2D C-PVA薄膜进行了比较。使用小鼠3T3成纤维细胞评估了C-PVA纳米纤维和2D膜的体外特性,我们的结果表明细胞粘附并增殖在C-PVA纳米纤维的表面。在我们的动物研究中,C-PVA纳米纤维的植入以及在大鼠全层伤口上局部施用生长因子R-Spondin 1的情况显示,术后两周后伤口闭合率为98.6%。在局部施用生长因子和C-PVA纳米纤维治疗的组中,愈合组织的过氧化氢酶和超氧化物歧化酶活性明显更高(p <0.05)。因此,这些C-PVA纳米纤维与新的生长因子一起有望成为可以用作加速伤口愈合的皮肤替代品的新型生物材料。

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