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Fabrication and characterization of hollow electrospun PLA structure through a modified electrospinning method applicable as vascular graft

机译:通过改进的静电纺丝法适用于血管移植的静电纺丝法的制造与表征

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摘要

In this study, vascular scaffolds were fabricated through a facile and modified method using an electrospinning procedure. For fabrication of scaffolds, at first, a three-layered nanofibrous structure comprising of polyvinyl alcohol (PVA) multifilament, PVA nanofibres and electrospun PLA fibres, respectively, as the core, middle and outer layers were produced. Then, the hollow PLA nanofibrous structure was obtained after elimination of the middle layer in water and extraction of the core part. The fabricated structures illustrated PLA nanofibres with diameters in the range of 100 to 350 nm. Fourier transform infrared spectroscopy analysis confirmed that the PLA structure remained intact during fabrication procedure of the hollow vascular grafts. The results of cell culture and cell attachment assays showed that human fibroblast cells could adhere and proliferate appropriately on the designed nanofibrous scaffold. Moreover, the hemolysis assay proved that the prepared vascular graft was non-hemolytic. The electrospun structures also exhibited proper mechanical characteristics for the considered application.
机译:在该研究中,通过使用静电纺丝程序通过容易和改性方法制造血管支架。为了制造支架,首先,制备了一种三层纳米纤维结构,其包含聚乙烯醇(PVA)多丝,PVA纳米纤维和Electrowis PLA纤维作为芯,中间和外层。然后,在消除水中的中间层和芯部的提取后获得中空PLA纳米纤维结构。制造的结构在100至350nm的范围内显示了直径的PLA纳米纤维。傅里叶变换红外光谱分析证实,在空心血管移植物的制造过程中,PLA结构保持完整。细胞培养和细胞附着测定的结果表明,人成纤维细胞可以在设计的纳米纤维支架上适当地粘附和增殖。此外,溶血测定证明,制备的血管移植物是非溶血性的。电纺器结构还表现出适当的机械特性,用于考虑的应用。

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