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Micropatterned Schwann cell-seeded biodegradable polymer substrates significantly enhance neurite alignment and outgrowth

机译:微图案施旺细胞接种的可生物降解聚合物基质可显着增强神经突排列和长出

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摘要

Biomimetic strategies were employed to promote directional outgrowth of neurites in vitro by using a synergistic combination of physical, chemical, and cellular cues. Compression molded and solvent cast biodegradable polymer substrates made of poly(D,L-lactic acid) were micropatterned to form grooves on the substrate surfaces. Laminin was localized in the grooves, and rat sciatic Schwann cells were seeded on the substrates. Whole as well as dissociated rat dorsal root ganglia were seeded on the substrates along with Schwann cells, and neurite outgrowth and alignment were measured. The micropatterns provide physical guidance, laminin provides chemical cues, and the Schwann cells provide biological cues to the axons. The presence of Schwann cells in the grooves was found to promote neurite alignment as well as outgrowth and help the neurites orient even on shallower grooves and exhibit continued alignment even as the grooves degrade. The synergistic combination of physical, chemical, and cellular guidance enabled greater than 98% alignment of neurites and accelerated outgrowth of neurites in the direction of the microgrooves.
机译:通过使用仿生策略,通过物理,化学和细胞提示的协同组合,在体外促进神经突的定向生长。对由聚(D,L-乳酸)制成的压模和溶剂浇铸的可生物降解的聚合物基材进行微图案化处理,以在基材表面上形成凹槽。层粘连蛋白定位在凹槽中,并将大鼠坐骨神经性雪旺氏细胞接种在基质上。将完整的和解离的大鼠背根神经节连同雪旺氏细胞一起接种在基质上,并测量神经突的长出和排列。微图案提供物理指导,层粘连蛋白提供化学提示,雪旺细胞提供轴突的生物学提示。发现凹槽中存在雪旺氏细胞可促进神经突排列以及长出,甚至在较浅的凹槽上也有助于神经突取向,并且即使凹槽退化,也仍显示连续排列。物理,化学和细胞引导的协同结合使神经突的排列率达到98%以上,并加速了神经突向微槽方向的生长。

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