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Modified Bi-Layered Polycaprolactone Nanofiber Scaffolds for Vascular Tissue Engineering Applications

机译:用于血管组织工程应用的改性双层聚己内酯纳米纤维支架

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摘要

This paper examines the fabrication and characterization of modified nano/micro-fibrous polycaprolactone (PCL) bi-layered scaffolds for soft tissue replacement using the electrospinning technique. The bi-layered PCL scaffolds were coated with collagen to act as natural polymers with the aim of modifying the properties of these scaffolds. The morphological examination of these scaffolds shows a better alignment of fibers as well as other features, including a porous network. The improvement in mechanical, viscoelastic, thermal, morphological and biological properties due to the addition of collagen were investigated. The results show that the added collagen has insignificant effects on the thermal and physical behavior of the PCL scaffolds, while the mechanical properties and viscoelastic behavior improved significantly. Moreover, the results relating to the nano-fibrous scaffolds showed that the internal flexible tissue of human bone mesenchymal stem cells (hBMSCs) attached at a higher rate onto the collagen coated PCL scaffolds compared to uncoated ones. The rate of proliferation and differentiation of hBMSCs was also higher on coated scaffolds than on uncoated ones. Consequently, nano-fibrous PCL scaffolds in combination with collagen may be good candidates for soft tissue replacement.
机译:本文研究了改进的纳米/微纤维聚己内酯(PCL)双层支架的制造和表征,用于使用静电纺丝技术进行软组织更换。将双层PCL支架涂有胶原蛋白,以充当天然聚合物,目的是改变这些支架的性质。这些支架的形态学检查显示纤维的更好对准以及其他特征,包括多孔网络。研究了由于添加胶原蛋白而导致的机械,粘弹性,热,形态学和生物特性的改善。结果表明,添加的胶原蛋白对PCL支架的热性和物理行为具有微不足道的影响,而机械性能和粘弹性行为显着提高。此外,与纳米纤维支架有关的结果表明,与未涂覆的,人骨间充质干细胞(HBMSCs)的内部柔性组织以更高的速率连接到胶原膜涂覆的PCL支架上。在涂覆的支架上的增殖和分化率在涂覆的支架上也比未涂覆的支架更高。因此,与胶原蛋白组合的纳米纤维PCL支架可以是软组织替代的良好候选者。

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