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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Optimization of poly(L-lactic acid)/segmented polyurethane electrospinning process for the production of bilayered small-diameter nanofibrous tubular structures
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Optimization of poly(L-lactic acid)/segmented polyurethane electrospinning process for the production of bilayered small-diameter nanofibrous tubular structures

机译:用于生产双层小直径纳米纤维管状结构的聚(L-乳酸)/分段聚氨酯静电纺丝工艺的优化

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摘要

The present study is focused on the electrospinning process as a versatile technique to obtain nanofibrous tubular structures for potential applications in vascular tissue engineering. A bilayered scaffolding structure composed of poly(L-lactic acid) (PLLA)/bioresorbable segmented polyurethane (SPEU) blends for small-diameter (5mm) vascular bypass grafts was obtained by multilayering electrospinning. Polymer blend ratios were chosen to mimic the media and adventitia layers. The influence of the different electrospinning parameters into the fiber formation, fiber morphology and fiber mean diameter for PLLA, SPEU and two PLLA/SPEU blends were studied. Flat and two-parallel plate collectors were used to analyze the effect of the electrostatic field on the PLLA nanofiber alignment in the rotating mandrel.Membrane topography resulted in random or aligned nanofibrous structures depending on the auxiliary collector setup used. Finally, composition, surface hydrophilicity, thermal properties and morphology of nanofibrous scaffolds were characterized and discussed. Since the development of tissue engineered microvascular prostheses is still a challenge, the prepared scaffolding tubular structures are promising candidates for vascular tissue engineering.
机译:本研究集中于静电纺丝工艺作为一种通用技术,以获得纳米纤维管状结构的潜在应用在血管组织工程中。通过多层电纺获得了用于小直径(5mm)血管旁路移植物的由聚(L-乳酸)(PLLA)/生物可吸收的分段聚氨酯(SPEU)共混物组成的双层脚手架结构。选择聚合物共混比以模拟培养基和外膜层。研究了不同电纺参数对PLLA,SPEU和两种PLLA / SPEU共混物的纤维形成,纤维形态和纤维平均直径的影响。平板收集器和平行平板收集器用于分析静电场对旋转心轴中PLLA纳米纤维排列的影响。根据所使用的辅助收集器设置,膜形貌会导致随机或排列的纳米纤维结构。最后,表征和讨论了纳米纤维支架的组成,表面亲水性,热性能和形态。由于组织工程化的微血管假体的开发仍然是一个挑战,因此制备的脚手架管状结构是有希望的血管组织工程化候选物。

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