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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The effects of collector geometry on the internal structure of the 3D nanofiber scaffold fabricated by divergent electrospinning
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The effects of collector geometry on the internal structure of the 3D nanofiber scaffold fabricated by divergent electrospinning

机译:收集器几何对发散静电纺丝制造3D纳米纤维支架内部结构的影响

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摘要

Latest bioinspired approaches in tissue engineering focus on the creation of biomaterials with micro- and nanoscale topographical features. Various additive manufacturing techniques have been applied for scaffold fabrication; however, creating three dimensional (3D) nanofiber structure within a scaffold remains to be challenging. This paper presented an innovative divergence electrospinning strategy to fabricate 3D polycaprolactone (PCL) scaffolds comprised of uniaxially aligned nanofibers. The effects of collector geometry on the nanofiber structure were characterized by polynomial regression analysis. The length-to-width ratio and inclination angle of the collector were found to be critical to nanofiber distribution within the 3D scaffold. The nanofiber orientation was consistent with the direction of electric field vectors between the two bevels of the collector. After a continuous culturing for 7days, fibroblast cells were uniaxially organized within the 3D scaffolds, closely resembling the fibrous structure in musculoskeletal tissues. This study provided a novel approach to biomimetic native tissue microstructures and showed a great potential as a future fabrication additive manufacturing platform for tissue engineering.
机译:组织工程中的最新生物淘气方法专注于用微型和纳米级地形特征的生物材料的创建。已经施加了各种添加剂制造技术用于支架制造;然而,在支架内创建三维(3D)纳米纤维结构仍然是具有挑战性的。本文介绍了一种创新的沟渠静电纺丝策略,用于制造由单轴对齐的纳米纤维组成的3D多碳酮(PCL)支架。通过多项式回归分析表征集电体几何体对纳米纤维结构的影响。发现收集器的长度宽度和倾斜角度对3D支架内的纳米纤维分布至关重要。纳米纤维取向与收集器的两个斜面之间的电场矢量的方向一致。在连续培养7天后,在3D支架内单轴组织成纤维细胞,与肌肉骨骼组织中的纤维结构密切相关。本研究提供了一种新的仿生天然组织微观结构的方法,并且显示了作为组织工程的未来制造添加剂制造平台的巨大潜力。

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