| Literature DB >> 28991530 |
Mo-Han Zhang1, Jia-Qing Chen1, Hui-Min Guo1, Rui-Ting Li1, Yi-Qiao Gao1, Yuan Tian1, Zun-Jian Zhang2, Yin Huang3.
Abstract
Realgar nanoparticles (NPs) are increasingly used as therapeutic agents for their enhanced anti-proliferation effect and cytotoxicity on cancer cells. However, the alteration of particle size may enhance biological reactivity as well as toxicity. A LC/MS and GC/MS based metabolomics approach was employed to explore the mechanism of realgar NPs-induced hepatotoxicity and identify potential biomarkers. Male Sprague-Dawley rats were administrated intragastrically with realgar or realgar NPs at a dose of 1.0 g·kg-1·d-1 for 28 days and toxic effects of realgar NPs on liver tissues were examined by biochemical indicator analysis and histopathologic examination. Increased levels of serum enzymes and high hepatic steatosis were discovered in the realgar NPs treated group. Multivariate data analysis revealed that rats with realgar NPs-induced hepatotoxicity could be distinctively differentiated from the animals in the control and realgar treated groups. In addition, 21 and 32 endogenous metabolites were apparently changed in the serum and live extracts, respectively. Realgar NPs might induce free fatty acid and triglyceride accumulation, resulting in hepatotoxicity. In conclusion, the present study represents the first comprehensive LC/MS- and GC/MS-based metabolomics analysis of realgar NPs-induced hepatotoxicity, which may help further research of nanotoxicity.Entities:
Keywords: Hepatotoxicity; Liver extracts; Metabolomics; Realgar nanoparticles
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Year: 2017 PMID: 28991530 DOI: 10.1016/S1875-5364(17)30098-5
Source DB: PubMed Journal: Chin J Nat Med ISSN: 1875-5364