首页> 外文期刊>Journal of nanoscience and nanotechnology >Systems Toxicology Used in Nanotoxicology: Mechanistic Insights into the Hepatotoxicity of Nano-Copper Particles from Toxicogenomics
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Systems Toxicology Used in Nanotoxicology: Mechanistic Insights into the Hepatotoxicity of Nano-Copper Particles from Toxicogenomics

机译:纳米毒理学中使用的系统毒理学:从毒理基因组学角度研究纳米铜粒子的肝毒性

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摘要

In some studies, nano-copper particles have been found to be acutely toxic to exposed mice, with the liver and kidney being the target tissues. However, the characteristics of subacute toxicity from repeated nano-copper exposure in rats and the molecular mechanism of its hepatotoxicity at the genomic level remain unclear. We investigated the mechanisms of nano-copper-induced hepatotoxicity, which were identified from hepatic gene expression profiles that were phenotypically anchored to conventional toxicological outcomes, and identified biomarkers of nanotoxicity caused by nano-copper. Male Wistar rats were administered nano-copper or micro-copper at different doses for five days. Subsequently, we examined conventional toxicological parameters including body weight, clinical chemistry, and histopathology, and also used microarrays to identify gene expression changes in rat liver. High dose nano-copper induced increases in alanine aminotransferase, aspartate aminotransferase, triglyceride, total bilirubin, total bile acid levels, and a decrease in body weight. Histopathological studies of the liver indicated scattered, dotted hepatocytic necrosis in all rats in the high dose nano-copper group. Identified genes from the group receiving the high dose were functionally categorized, and results showed that genes related to oxidoreductase activity, metabolism, and signal transduction were involved in the development of the observed phenotypes. The results also suggest that altered gene expression patterns induced by exposure to a low, subtoxic dose of nano-copper may reveal signs of cell stress or subtle cell injury indicative of overt toxicity at higher doses. Results in this study provide new insights into the toxicology of nano-copper particles and illustrate how toxicogenomic approaches are providing an unprecedented amount of mechanistic information on molecular responses to nano-copper, as well as how they are likely to impact hazard and risk assessment. Gene expression changes are likely to be more sensitive indicators of potential adverse effects than traditional measurements of toxicity.
机译:在一些研究中,发现纳米铜颗粒对裸露的小鼠具有剧毒,肝脏和肾脏是目标组织。然而,在大鼠中反复纳米铜暴露引起的亚急性毒性特征及其在基因组水平上肝毒性的分子机制仍不清楚。我们调查了纳米铜诱导的肝毒性的机制,从表型锚定到常规毒理学结果的肝基因表达谱中鉴定了这种机制,并鉴定了由纳米铜引起的纳米毒性的生物标志物。给雄性Wistar大鼠以不同剂量施用纳米铜或微型铜五天。随后,我们检查了常规毒理学参数,包括体重,临床化学和组织病理学,还使用微阵列来鉴定大鼠肝脏中基因表达的变化。高剂量的纳米铜诱导的丙氨酸转氨酶,天冬氨酸转氨酶,甘油三酸酯,总胆红素,总胆汁酸水平增加,体重减轻。肝脏的组织病理学研究表明,高剂量纳米铜组中的所有大鼠均出现散在的,散布的肝细胞坏死。从高剂量组中鉴定出的基因按功能进行了分类,结果表明与氧化还原酶活性,代谢和信号转导相关的基因参与了观察到的表型的发展。结果还表明,通过暴露于低剂量,低毒剂量的纳米铜诱导的基因表达模式改变可能显示出细胞应激或细微细胞损伤的迹象,表明在高剂量下存在明显的毒性。这项研究的结果为纳米铜颗粒的毒理学研究提供了新的见解,并说明了毒物基因组学方法如何提供有关纳米铜分子反应的前所未有的机制信息,以及它们如何影响危害和风险评估。与传统的毒性测量相比,基因表达的变化可能是潜在不良反应的更敏感指标。

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