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Electrospinning of small diameter 3-D nanofibrous tubular scaffolds with controllable nanofiber orientations for vascular grafts

机译:具有可控制纳米纤维取向的小直径3-D纳米纤维管状支架的静电纺丝,用于血管移植

摘要

The control of nanofiber orientation in nanofi- brous tubular scaffolds can benefit the cell responses along specific directions. For small diameter tubular scaffolds, however, it becomes difficult to engineer nanofiber orien tation. This paper reports a novel electrospinning technique for the fabrication of 3-D nanofibrous tubular scaffolds with controllable nanofiber orientations. Synthetic absorb able poly-e-caprolactone (PCL) was used as the model biomaterial to demonstrate this new electrospinning tech nique. Electrospun 3-D PCL nanofibrous tubular scaffolds of 4.5 mm in diameter with different nanofiber orientations (viz. circumferential, axial, and combinations of circum ferential and axial directions) were successfully fabricated. The degree of nanofiber alignment in the electrospun 3-D tubular scaffolds was quantified by using the fast Fourier transform (FFT) analysis. The results indicated that excellent circumferential nanofiber alignment could be achieved in the 3-D nanofibrous PCL tubular scaffolds. The nanofibrous tubular scaffolds with oriented nanofibers had not only directional mechanical property but also could facilitate the orientation of the endothelial cell attachment on the fibers. Multiple layers of aligned nanofibers in different orientations can produce 3-D nanofibrous tubular scaffolds of different macroscopic properties.
机译:纳米纤维管状支架中纳米纤维取向的控制可有益于沿特定方向的细胞反应。然而,对于小直径的管状支架,难以工程化纳米纤维取向。本文报道了一种新型的静电纺丝技术,用于制造具有可控纳米纤维取向的3-D纳米纤维管状支架。合成吸收性聚己内酯(PCL)被用作模型生物材料,以证明这一新的静电纺丝技术。成功地制造了直径4.5毫米,具有不同纳米纤维取向(即圆周,轴向以及圆周方向和轴向方向的组合)的电纺3-D PCL纳米纤维管状支架。通过使用快速傅里叶变换(FFT)分析来量化电纺3-D管状支架中纳米纤维的排列程度。结果表明,在3-D纳米纤维PCL管状支架中可以实现出色的周向纳米纤维排列。具有定向纳米纤维的纳米纤维管状支架不仅具有定向机械性能,而且可以促进内皮细胞附着在纤维上的定向。取向不同的多层纳米纤维以不同的方向可以产生具有不同宏观特性的3-D纳米纤维管状支架。

著录项

  • 作者

    Wu H; Fan J; Chu CC; Wu J;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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