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Fabrication of chitosan-based electrospun nanofiber scaffold: Amplification of biomechanical properties structural stability and seeded cell viability

机译:基于壳聚糖的电纺纳米纤维支架的制造:生物力学性质的扩增结构稳定性和种子细胞活力

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摘要

The cell scaffolds should structurally be manufactured similar to the target tissue's extracellular matrix. This property should be maintained until cell differentiation. For this purpose, in the current study, electrospun nanofiber (EN) of chitosan (Ch)/polyvinyl alcohol (PVA), as a tissue-friend scaffold, was fabricated by electrospinning in different formulations and borax was utilized as an innovative cross-linking agent to up-regulate the structural and biomechanical properties. The weight loss, water absorbability, structural stability, tensile strength and biocompatibility of borax-included and non-included ENs were compared. The finest morphology, weight loss, water absorbability, structural stability in an aqueous environment, tensile strength and cell viability were found in the borax-included EN containing Ch50.00%v/PVA50.00%v. Moreover, The ENs exhibited appropriate antibacterial properties against Gram-positive and Gram-negative bacteria. In conclusion, borax can be used to improve the mechanical and biocompatibility features of the Ch/PVA-based ENs. Furthermore, it could be suggested that borax-included Ch/PVA ENs can exhibit high appropriate biological properties, candidate them as an appropriate scaffold in the field of tissue engineering. However, in vivo trials are needed to clearly their side effects and advantages.
机译:细胞支架应在结构上制造类似于靶组织组织的细胞外基质。应保持该属性直到细胞分化。为此目的,在目前的研究中,通过在不同配方中的静电素和硼砂以不同的配方化制造壳聚糖(CH)/聚乙烯醇(PVA)的壳聚糖(CH)/聚乙烯醇(PVA)的壳聚糖纳米纤维(PVA)作为一种创新的交联药剂以上调结构和生物力学性质。比较了减肥,吸水性,结构稳定性,硼砂和非含量的抗真菌和生物相容性。在含有CH50.00%V / PVA50.00%v的硼砂中,在含水环境中,抗拉强度和细胞活力,抗拉强度和细胞活力,抗拉强度和细胞活力的结构稳定性。此外,ENA表现出针对革兰氏阳性和革兰氏阴性细菌的适当抗菌性质。总之,Borax可用于改善基于CH / PVA的ENS的机械和生物相容性特征。此外,可以提出硼砂包括的CH / PVA酶可以表现出高适当的生物学性质,将它们候选为组织工程领域中的适当支架。然而,在体内试验中需要清楚地效果和优势。

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