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Neurite development in PC12 cells cultured on nanopillars and nanopores with sizes comparable with filopodia

机译:在纳米柱和纳米孔上培养的PC12细胞中的神经突发育其大小可与丝状伪足相媲美

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摘要

We investigated the effect of nanoscale topography on neurite development in pheochromocytoma (PC12 cells) by culturing the cells on substrates having nanoscale pillars and pores with sizes comparable with filipodia. We found that cells on nanopillars and nanopores developed fewer and shorter neurites than cells on smooth substrates, and that cells on nanopores developed more and longer neurites than cells on nanopillars. These results suggest that PC12 cells were spatially aware of the difference in the nanoscale structures of the underlying substrates and responded differently in their neurite extension. This finding points to the possibility of using nanoscale topographic features to control neurite development in neurons.
机译:我们通过在嗜铬细胞瘤(PC12细胞)中的神经突发育上研究了纳米尺度形貌的影响,方法是在具有纳米尺度柱状结构和具有可与纤维脂质体相媲美的孔的基质上培养细胞。我们发现,纳米柱和纳米孔上的细胞比光滑基底上的细胞产生更少和更短的神经突,纳米孔上的细胞比纳米柱上的细胞产生更多和更长的神经突。这些结果表明,PC12细胞在空间上意识到下层底物的纳米级结构的差异,并且在其神经突延伸方面反应不同。这一发现指出了使用纳米级地形特征来控制神经元中神经突发育的可能性。

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