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Synergistic Effects of Physical and Chemical Guidance Cues on Neurite Alignment and Outgrowth on Biodegradable Polymer Substrates

机译:物理化指导提示对可生物降解聚合物基材的神经突对准和产量的协同作用

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摘要

This article demonstrates that directional outgrowth of neurites is promoted by applying a combination of physical and chemical cues to biodegradable polymer substrates. Films of poly-D,L-lactic acid and poly(lactide-co-glycolide) were micropatterned to form grooves on substrate surfaces, using novel indirect transfer techniques developed specifically for biodegradable polymers that cannot be micropatterned directly. Laminin was selectively adsorbed in the grooves. Whole and dissociated dorsal root ganglia were seeded on the substrates and neurite outgrowth and alignment along the microgrooves were measured. The microgrooves provide physical guidance, whereas laminin provides chemical cues to the neurons. The groove depth and spacing were found to significantly influence neurite alignment. The presence of laminin was found to promote neurite adhesion and outgrowth along the grooves. Using a combination of optimized physical and chemical cues, excellent spatial control of directional neurite outgrowth, with up to 95% alignment of neurites, was obtained. The synergistic effect of physical and chemical guidance cues was found to be more effective than individual cues in promoting directional outgrowth of neurites.
机译:本文证明,通过将物理和化学线索组合应用于可生物降解的聚合物基质,可促进神经突的定向生长。使用专门为无法直接进行微图案化的可生物降解聚合物开发的新型间接转移技术,对聚D,L-乳酸和聚(丙交酯-乙交酯)薄膜进行微图案化处理,以在基材表面形成凹槽。层粘连蛋白选择性地吸附在凹槽中。将整个和分离的背根神经节播种在基底上,并测量神经突的长出和沿微槽的排列。细槽提供物理指导,而层粘连蛋白为神经元提供化学提示。发现槽的深度和间距显着影响神经突排列。发现层粘连蛋白的存在促进了神经突沿凹槽的粘附和向外生长。结合优化的物理和化学线索,可以获得定向神经突向外生长的出色空间控制,其中神经突的排列率高达95%。发现物理和化学指导线索的协同作用在促进神经突的定向向外生长方面比单个线索更有效。

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