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首页> 外文期刊>Journal of Micromechanics and Microengineering >Controlled neuronal cell patterning and guided neurite growth on micropatterned nanofiber platforms
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Controlled neuronal cell patterning and guided neurite growth on micropatterned nanofiber platforms

机译:微图案化纳米纤维平台上受控的神经元细胞图案形成和神经突生长

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Patterning neuronal cells and guiding neurite growth are important for applications such as prosthetics, cell based biosensors, and tissue engineering. In this paper, a microdevice is presented that provides neuronal cell patterning and guided neurite growth on a collagen coated gelatin/PCL nanofiber mat. The pattern consisted of a grid of polystyrene microwellsodes to confine the cell bodies and orthogonal grooves to guide neurite growth from each node. Vacuum assisted cell seeding was used to localize cell bodies in the microwells and physically separate the cells during seeding. The electrospun nanofiber mats under the polystyrene microstructures were coated with collagen to enhance the cellular attachment and enhance differentiation. We evaluated the performance of our device using adhesion, viability, and differentiation assays of neuron-like PC12 cells compared to controls for vacuum seeding, spatial isolation and guidance, and collagen coating of the fibers. The device provided PC12 cell patterning with increased adhesion, differentiation, and guided neurite outgrowth compared to controls, demonstrating its potential for in vitro neuronal cell patterning studies.
机译:模式化神经元细胞并引导神经突生长对于诸如修复术,基于细胞的生物传感器和组织工程学等应用非常重要。在本文中,提出了一种微型设备,可在胶原蛋白涂覆的明胶/ PCL纳米纤维垫上提供神经元细胞图案和引导的神经突生长。该图案由聚苯乙烯微孔/节点的网格组成,以限制细胞体,正交的槽引导每个节点上的神经突生长。真空辅助细胞接种用于在微孔中定位细胞体,并在接种过程中物理分离细胞。在聚苯乙烯微结构下的静电纺丝纳米纤维垫上涂有胶原蛋白,以增强细胞附着力并增强分化。与真空接种,空间隔离和引导以及纤维的胶原蛋白涂层的对照相比,我们使用神经元样PC12细胞的粘附,生存力和分化试验评估了我们设备的性能。与对照相比,该设备为PC12细胞图案提供了增加的粘附,分化和引导性神经突向外生长,证明了其在体外神经元细胞图案研究中的潜力。

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