SanMartin Agneta, Johansson Fredrik, Samuelson Lars, Prinz Christelle N
J Nanosci Nanotechnol. 2014 Jul;14(7):4880-5. doi: 10.1166/jnn.2014.8669.
Although nanowires are widely used in biological applications, especially as cell-manipulation tools, the effect of nanowires on living cells has not been fully investigated. Here, we examined the full gene expression of mouse cortical stem cells cultured on vertical nanowire substrates using RNA microarrays. Genes involved in cell adhesion, cell morphology regulation and cell metabolism were up regulated on the nanowire substrates as compared to flat controls. Scanning electron microscopy images of the samples corroborated our findings, revealing significant differences in cell morphology and adhesion between the nanowire and the flat substrates. Cells on nanowires exhibited a round morphology with a mature appearance characterized by numerous and long processes adhering to the nanowires, while cells on flat substrates had a flat, spread-out morphology and very little neurite outgrowth.
尽管纳米线在生物应用中被广泛使用,尤其是作为细胞操作工具,但纳米线对活细胞的影响尚未得到充分研究。在这里,我们使用RNA微阵列检测了在垂直纳米线基质上培养的小鼠皮质干细胞的全基因表达。与平坦对照相比,纳米线基质上参与细胞粘附、细胞形态调节和细胞代谢的基因上调。样品的扫描电子显微镜图像证实了我们的发现,揭示了纳米线和平坦基质之间细胞形态和粘附的显著差异。纳米线上的细胞呈现圆形形态,外观成熟,其特征是有许多长突起附着在纳米线上,而平坦基质上的细胞具有扁平、铺展的形态,神经突生长很少。