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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Integrating metabolic analysis with biological endpoints provides insight into nanotoxicological mechanisms of graphene oxide: From effect onset to cessation
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Integrating metabolic analysis with biological endpoints provides insight into nanotoxicological mechanisms of graphene oxide: From effect onset to cessation

机译:将代谢分析与生物学终点相结合,可以深入了解氧化石墨烯的纳米毒理学机理:从效应发作到戒烟

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摘要

Metabolomics is a new tool used in nanotoxicology to provide comprehensive insight into overall stress responses, while the relationships between global metabolic disturbance and the alterations of biological endpoints remain unclear from effect onset to cessation. Herein, single-cell Chlorella vulgaris was exposed to graphene oxide (GO). The inhibition of cell division and chlorophyll a biosynthesis and the enhancement of reactive oxygen species (ROS) and cell plasmolysis were observed under GO exposure; these adverse effects returned to normal levels when the cells were placed in fresh medium, suggesting that the tested effects were recoverable. Using the data collected from biological effect onset to cessation, the metabolic endpoints (X variables) and biological endpoints (Y variables) were integrated using the orthogonal partial least squares discriminant analysis. It was found that fatty acid metabolism greatly contributed to chlorophyll a and ROS levels, while carbohydrate metabolism had a dominant influence on GO-induced cell plasmolysis. This study proposes the reversibility of GO nanotoxicity and provides deeper insight into nanotoxicological mechanisms via integrating metabolomics with biological endpoints than using metabolic analysis alone. (C) 2016 Elsevier Ltd. All rights reserved.
机译:代谢组学是纳米毒理学中使用的一种新工具,可提供对整体应激反应的全面了解,而全局代谢紊乱与生物学终点改变之间的关系从起效到停止尚不清楚。在此,将单细胞小球藻暴露于氧化石墨烯(GO)。暴露于GO下可抑制细胞分裂和叶绿素a的生物合成,增强活性氧(ROS)和细胞质分解。当将细胞置于新鲜培养基中时,这些不良反应恢复到正常水平,表明所测试的作用是可恢复的。使用从生物学效应发作到终止的数据,使用正交偏最小二乘判别分析对代谢终点(X变量)和生物学终点(Y变量)进行积分。发现脂肪酸代谢极大地促进了叶绿素a和ROS的水平,而碳水化合物代谢对GO诱导的细胞质分解具有主要影响。这项研究提出了GO纳米毒性的可逆性,并且通过将代谢组学与生物学终点相结合,比仅使用代谢分析提供了对纳米毒理学机制的更深入了解。 (C)2016 Elsevier Ltd.保留所有权利。

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