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首页> 外文期刊>Frontiers in Neuroscience >Cell-Type Dependent Effect of Surface-Patterned Microdot Arrays on Neuronal Growth
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Cell-Type Dependent Effect of Surface-Patterned Microdot Arrays on Neuronal Growth

机译:表面图案化的微点阵列对神经元生长的细胞类型依赖性影响。

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Surface micropatterns have been widely used as chemical cues to control the microenvironment of cultured neurons, particularly for neurobiological assays and neurochip designs. However, the cell-type dependency on the interactions between neurons and underlying micropatterns has been rarely investigated despite the inherent differences in the morphology of neuronal types. In this study, we used surface-printed microdot arrays to investigate the effect of the same micropatterns on the growth of mouse spinal interneuron, mouse hippocampal neurons, and rat hippocampal neurons. While mouse hippocampal neurons showed no significantly different growth on control and patterned substrates, we found the microdot arrays had different effects on early neuronal growth depending on the cell type; spinal interneurons tended to grow faster in length, whereas hippocampal neurons tended to form more axon collateral branches in response to the microdot arrays. Although there was a similar trend in the neurite length and branch number of both neurons changed across the microdot arrays with the expanded range of size and spacing, the dominant responses of each neuron, neurite elongation of mouse spinal interneurons and branching augmentation of rat hippocampal neurons were still preserved. Therefore, our results demonstrate that the same design of micropatterns could cause different neuronal growth results, raising an intriguing issue of considering cell types in neural interface designs.
机译:表面微模式已被广泛用作化学提示,以控制培养的神经元的微环境,特别是用于神经生物学测定和神经芯片设计。然而,尽管神经元类型的形态存在固有差异,但很少研究细胞类型对神经元与基础微模式之间相互作用的依赖性。在这项研究中,我们使用表面印刷的微点阵列来研究相同的微模式对小鼠脊髓神经元,小鼠海马神经元和大鼠海马神经元生长的影响。虽然小鼠海马神经元在对照和有图案的底物上没有显示出显着不同的生长,但我们发现,根据细胞类型,微点阵列对早期神经元的生长具有不同的影响。脊髓中神经元的长度趋于增长更快,而海马神经元趋于形成更多的轴突侧支,以响应微点阵列。尽管随着大小和间距范围的扩大,两个神经元的神经突长度和分支数在微点阵列上都有相似的变化趋势,但每个神经元的显性反应,小鼠脊髓中神经元的神经突延长和大鼠海马神经元的分支增大仍然保存着。因此,我们的结果表明,相同的微模式设计可能会导致不同的神经元生长结果,从而引发了在神经接口设计中考虑细胞类型的有趣问题。

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