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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Formation of highly aligned grooves on inner surface of semipermeable hollow fiber membrane for directional axonal outgrowth
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Formation of highly aligned grooves on inner surface of semipermeable hollow fiber membrane for directional axonal outgrowth

机译:在半透性中空纤维膜内表面上形成高度对准的凹槽,以定向轴突生长

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It is generally believed that organized neural architecture is essential for nervous system development, function, and regeneration. In the absence of guidance cues, regenerating axons may lose their directions and become misaligned, resulting in the formation of neuromas and/or misappropriate connections. To help regenerate axons across damaged regions and guide them to appropriate targets, some bridging devices such as micro-grooves are being intensively researched to achieve a better directional axonal growth. This paper reports a novel fabrication process to generate a highly aligned groove texture on the inner surface of semipermeable hollow fiber membranes (HFMs). HFMs have demonstrated promising results in guiding axonal regeneration. The fabrication process utilized a wet phase-inversion procedure with polyurethane (PU) as model polymer dimethyl sulfoxide (DMSO) as solvent, and water as nonsolvent. Data indicated that highly aligned groove texture could be formed on the HFM inner surface by carefully controlling phase-inversion conditions such as the polymer solution flow rate, and/or nonsolvent flow rate, and/or polymer solution concentration ratio. The texture forming mechanism is qualitatively explained using a PU-DMSO-water ternary phase diagram and the dynamics of fluid instability. Axonal outgrowth on the HFM with aligned grooves showed the highly aligned orientation and improved axonal outgrowth length. This study may eventually lead to a new and effective way to fabricate nerve grafts for the spinal cord injury and nerve damage treatment based on this highly aligned three dimensional scaffold.
机译:通常认为,有组织的神经结构对于神经系统的发育,功能和再生至关重要。在缺乏指导线索的情况下,再生轴突可能会失去方向并变得未对准,从而导致神经瘤的形成和/或不适当的连接。为了帮助在受损区域中再生轴突并将其引导至适当的目标,正在深入研究一些桥接设备(例如微槽),以实现更好的定向轴突生长。本文报道了一种新颖的制造工艺,该工艺可以在半透性中空纤维膜(HFM)的内表面上产生高度对齐的凹槽纹理。 HFM在引导轴突再生方面已显示出令人鼓舞的结果。该制造过程利用了湿相转化程序,其中聚氨酯(PU)为模型聚合物二甲基亚砜(DMSO)为溶剂,水为非溶剂。数据表明,通过小心地控制相转化条件,例如聚合物溶液的流速,和/或非溶剂的流速,和/或聚合物溶液的浓度比,可以在HFM的内表面上形成高度对齐的沟槽纹理。使用PU-DMSO-水三元相图和流体不稳定性动力学定性地解释了纹理形成机理。具有对齐凹槽的HFM上的轴突生长显示出高度对齐的方向并改善了轴突生长长度。这项研究最终可能会导致一种新的有效方法,以这种高度对齐的三维支架为基础,制造用于脊髓损伤和神经损伤治疗的神经移植物。

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