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Mechanistic toxicity evaluation of uncoated and PEGylated single-walled carbon nanotubes in neuronal PC12 cells

机译:未涂覆和聚乙二醇化的单壁碳纳米管在神经元PC12细胞中的机械毒性评估

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摘要

We investigated and compared the concentration-dependent cytotoxicity of single-walled carbon nanotubes (SWCNTs) and SWCNTs functionalized with polyethylene glycol (SWCNT-PEGs) in neuronal PC12 cells at the biochemical, cellular, and gene expressional levels. SWCNTs elicited cytotoxicity in a concentration-dependent manner, and SWCNT-PEGs exhibited less cytotoxic potency than uncoated SWCNTs. Reactive oxygen species (ROS) were generated in both a concentration- and surface coating-dependent manner after exposure to these nanomaterials, indicating different oxidative stress mechanisms. More specifically, gene expression analysis showed that the genes involved in oxidoreductases and antioxidant activity, nucleic acid or lipid metabolism, and mitochondria dysfunction were highly represented. Interestingly, alteration of the genes is also surface coating-dependent with a good correlation with the biochemical data. These findings suggest that surface functionalization of SWCNTs decreases ROS-mediated toxicological response in vitro.
机译:我们在生化,细胞和基因表达水平上研究和比较了神经细胞PC12细胞中单壁碳纳米管(SWCNT)和用聚乙二醇功能化的SWCNT(SWCNT-PEG)的浓度依赖性细胞毒性。 SWCNT以浓度依赖性的方式引起细胞毒性,并且SWCNT-PEG比未涂覆的SWCNT表现出更少的细胞毒性。暴露于这些纳米材料后,活性氧(ROS)以浓度和表面涂层相关的方式生成,表明存在不同的氧化应激机制。更具体地,基因表达分析表明,与氧化还原酶和抗氧化剂活性,核酸或脂质代谢以及线粒体功能障碍有关的基因被高度代表。有趣的是,基因的改变也是表面涂层依赖性的,与生化数据具有良好的相关性。这些发现表明SWCNTs的表面功能化减少体外ROS介导的毒理反应。

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