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Rolled tubular scaffolds with aligned nanofibers and their mechanical properties

机译:带有对齐纳米纤维的管状支架及其机械性能

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In this paper, a novel tubular scaffold was constructed by electrospinning technique and rolling method. Firstly, a high speed rotation drum was used to collect aligned poly (lactic acid) (PLA) nanofibers. Secondly, the membrane was cut and rolled into tube. Finally, a randomly oriented nanofibers layer was electrospun onto the rolled tube to envelope the end of rolled membrane and increase the mechanical properties. The morphology and alignment of nanofibers was observed and the mechanical properties were evaluated. The results showed that desirable alignment could be obtained by adjusting rotation speed. Along the fiber direction, the tensile stress of aligned PLA nanofibers membrane reached 49.32 ± 14.83 MPa and the elongation was 17.71% ± 0.06%. The suture strength was more than adequate for suturing during implantation (2.36 ± 0.80 N/needle). This results derived from this study indicated that the construction technology was feasible and fundamentally verified the applicability of novelty designed scaffolds in tissue engineering.
机译:本文采用静电纺丝技术和轧制方法构建了一种新型管状支架。首先,使用高速旋转滚筒收集对准的聚(乳酸)(PLA)纳米纤维。其次,将膜切割并卷成管子。最后,将随机取向的纳米纤维层静电悬浮在卷管上,以包络卷膜的端部并增加机械性能。观察到纳米纤维的形态和对准,评价机械性能。结果表明,通过调节旋转速度可以获得所需的对准。沿着纤维方向,取向的PLA纳米纤维膜的拉伸应力达到49.32±14.83MPa,伸长率为17.71%±0.06%。在植入过程中缝合缝合强度超过缝合(2.36±0.80n /针)。该研究结果表明,施工技术是可行的,从根本上验证了在组织工程中的新颖设计的脚手架的适用性。

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