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Enhanced Neural Cell Adhesion and Neurite Outgrowth on Graphene-Based Biomimetic Substrates

机译:在基于石墨烯的仿生基板上增强的神经细胞粘附和神经突生长。

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摘要

Neural cell adhesion and neurite outgrowth were examined on graphene-based biomimetic substrates. The biocompatibility of carbon nanomaterials such as graphene and carbon nanotubes (CNTs), that is, single-walled and multiwalled CNTs, against pheochromocytoma-derived PC-12 neural cells was also evaluated by quantifying metabolic activity (with WST-8 assay), intracellular oxidative stress (with ROS assay), and membrane integrity (with LDH assay). Graphene films were grown by using chemical vapor deposition and were then coated onto glass coverslips by using the scooping method. Graphene sheets were patterned on SiO2/Si substrates by using photolithography and were then covered with serum for a neural cell culture. Both types of CNTs induced significant dose-dependent decreases in the viability of PC-12 cells, whereas graphene exerted adverse effects on the neural cells just at over 62.5 ppm. This result implies that graphene and CNTs, even though they were the same carbon-based nanomaterials, show differential influences on neural cells. Furthermore, graphene-coated or graphene-patterned substrates were shown to substantially enhance the adhesion and neurite outgrowth of PC-12 cells. These results suggest that graphene-based substrates as biomimetic cues have good biocompatibility as well as a unique surface property that can enhance the neural cells, which would open up enormous opportunities in neural regeneration and nanomedicine.
机译:在基于石墨烯的仿生基质上检查了神经细胞粘附和神经突生长。碳纳米材料(例如石墨烯和碳纳米管(CNT),即单壁和多壁CNT)对嗜铬细胞瘤衍生的PC-12神经细胞的生物相容性也通过量化代谢活性(使用WST-8分析)进行了评估氧化应激(使用ROS测定)和膜完整性(使用LDH测定)。石墨烯薄膜是通过化学气相沉积法生长的,然后使用铲取法将其涂覆在玻璃盖玻片上。石墨烯片通过光刻在SiO2 / Si基板上构图,然后用血清覆盖以进行神经细胞培养。两种类型的CNTs都会引起PC-12细胞活力的显着剂量依赖性下降,而石墨烯对神经细胞的不利影响仅超过62.5 ppm。该结果表明,尽管石墨烯和CNT是相同的碳基纳米材料,但它们对神经细胞的影响不同。此外,石墨烯涂层或石墨烯图案的基板显示出可大大增强PC-12细胞的粘附力和神经突向外生长。这些结果表明,基于石墨烯的底物作为仿生线索具有良好的生物相容性以及独特的表面特性,可以增强神经细胞,这将为神经再生和纳米医学开辟巨大的机会。

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