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Differential effects of graphene materials on the metabolism and function of human skin cells

机译:石墨烯材料的微分效应人类皮肤细胞的代谢和功能

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摘要

Graphene-related materials (GRMs) such as graphene oxide (GO) and few-layer graphene (FLG) are used in multiple biomedical applications; however, there is still insufficient information available regarding their interactions with the main biological barriers such as skin. In this study, we explored the effects of GO and FLG on HaCaTs human skin keratinocytes, using NMR-based metabolomics and fluorescence microscopy to evaluate the global impact of each GRM on cell fate and damage. GO and FLG at low concentrations (5 g mL(-1)) induced a differential remodeling of the metabolome, preceded by an increase in the level of radical oxygen species (ROS) and free cytosolic Ca2+. These changes are linked to a concentration-dependent increase in cell death by triggering apoptosis and necrosis, the latter being predominant at higher concentrations of the nanostructures. In addition, both compounds reduce the ability of HaCaT cells to heal wounds. Our results demonstrate that the GO and FLG used in this study, which mainly differ in their oxidation state, slightly trigger differential effects on HaCaTs cells, but with evident outcomes at the cellular and molecular levels. Their behavior as pro-apoptotic/necrotic substances and their ability to inhibit cell migration, even at low doses, should be considered in the development of future applications.
机译:石墨烯等Graphene-related材料(grm)氧化(去)和few-layer石墨烯(浮动)在多个生物医学应用程序;还有足够的信息关于他们的交互与主如皮肤生理障碍。我们探索的影响去HaCaTs浮动人类皮肤角质细胞,使用NMR-based代谢组学和荧光显微镜评估全球每克对细胞的影响命运和伤害。(5克毫升(1)诱导一个微分的重构之前的代谢物,增加激进的氧物种(ROS)水平和免费的胞质钙离子。浓度增加,细胞死亡引起细胞凋亡和坏死,后者是主要的浓度更高纳米结构。减少HaCaT细胞愈合伤口的能力。我们的结果表明,所使用的去浮动在这项研究中,它主要是有不同的氧化态,略触发微分影响HaCaTs细胞,但明显结果在细胞和分子水平。他们的行为为pro-apoptotic /坏死物质和抑制细胞的能力迁移,即使在低剂量,应考虑未来的发展应用程序。

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