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A Novel Nanoyarn Scaffold for Tissue Engineering Applications

机译:一种用于组织工程应用的新型纳米凿岩机

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Collagen/Poly(L-lactide-co-caprolactone) P(LLA-CL) nanoyarn scaffolds were successfully fabricated by dynamic liquid electrospinning.Thescanning electron microscopy (SEM) and tensile strength test were used to characterize the scaffold in terms of scaffold morphology and mechanical property.Mouse fibroblast cells (L929)were cultured to determine the biocompatibility of the nanoyarn scaffold.The results showed that the nanoyarn scaffold has a more porous structure that is attributed to facilitate cell adhesion and organize cell growth on the scaffold.Therefore,this study demonstrated that the novel approach fabricating the nanoyarn scaffold had potential applications for tissue regeneration.
机译:通过动态液体电纺丝成功制造胶原蛋白/聚(L-LACTEDE-CO-CAPROLOLE)P(LLA-CL)纳米甘露花支架。用于在支架形态和支架形态方面使用抗拉强度试验和拉伸强度试验来表征支架的敏感电子显微镜(SEM)和拉伸强度试验培养机械特性。培养ourouse成纤维细胞(L929)以确定纳米甘露花支架的生物相容性。结果表明,纳米球支架具有更多孔的结构,其归因于促进细胞粘附和组织脚手架上的细胞生长。因此研究证明,制造纳米钢支架的新方法具有组织再生的潜在应用。

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