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Effect of mechanical stimulation on neurite outgrowth of dorsal root ganglion neurons toward integrative mechanobiologic nerve bridge

机译:机械刺激对背根神经节神经元神经突向整合机械生物神经桥的影响

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Many methods to promote outgrowth of neurons have been studied, including electrical stimulation, micropatterned substrate, neurotrophic factors, and optical stimulation. Neuron is known to have mechanotransducer proteins. Calcium influx through mechanosensitive ion channels take part in the neuronal response to mechanical stimuli. In this report, we demonstrate the effect of mechanical stretching to dorsal root ganglion neuron (DRG neuron). By stretching DRG neurons under some conditions, we succeeded enhancing the neurite outgrowth by forty-eight percent compared to non-stretched DRG neurons. Stimulation frequencies between 0.25 Hz and 1 Hz have less effect on enhancing the neurite outgrowth, but stimulation time has effect on it. The more time DRG neurons were stretched, the more DRG neurons were peeled off. We need to find the optimum stimulating condition. These results indicate that mechanical stimulation has a potential to be applied a functional artificial nerve bridge that promotes the outgrowth of neurons.
机译:已经研究了许多促进神经元生长的方法,包括电刺激,微图案化基质,神经营养因子和光学刺激。已知神经元具有机械转导蛋白。通过机械敏感离子通道流入的钙参与了对机械刺激的神经元反应。在此报告中,我们证明了机械拉伸对背根神经节神经元(DRG神经元)的影响。通过在某些条件下拉伸DRG神经元,与未拉伸的DRG神经元相比,我们成功地将神经突增生了48%。 0.25 Hz和1 Hz之间的刺激频率对增强神经突生长的影响较小,但刺激时间对其影响较大。 DRG神经元伸展的时间越长,DRG神经元的剥离就越多。我们需要找到最佳的刺激条件。这些结果表明,机械刺激有可能应用促进神经元向外生长的功能性人工神经桥。

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