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Metabolomics Reveals Metabolic Changes Caused by Low-Dose 4-Tert-Octylphenol in Mice Liver

Bibliographic Data

ID15480669
AuthorsKun Zhou (0000-0003-4243-6112, Nanjing Medical University), Xingwang Ding (Nanjing Medical University), Jing Yang (0009-0004-1715-4513, Shanghai University of Traditional Chinese Medicine), Yanhui Hu (0000-0003-4139-5152, Nanjing Medical University), Yun Song (0000-0003-3941-6292, Nanjing Medical University), Yun Seon Song (0000-0001-8216-5981, Nanjing Medical University), Minjian Chen (0000-0002-5742-5080, Nanjing Medical University, corresponding author), Rongli Sun (0000-0003-1694-5319, Southeast University), Tianyu Dong (0000-0003-3692-438X, Nanjing Medical University), Bo Xu (0000-0003-2330-4114, Nanjing Medical University), Xiumei Han (0009-0003-6244-4838, Nanjing Medical University), Keqin Wu (Nanjing Medical University), Xiaoling Zhang (0000-0001-7634-3649, Nanjing Medical University), Xinru Wang (0000-0002-0213-6425, Nanjing Medical University), Yankai Xia (0000-0003-0484-4035, Nanjing Medical University, corresponding author)
Year2018
Volume15
Issue12
Pages2686-2686
Publication date2018-11-28
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph15122686
PMID30487447
OpenAlexW2902022597
LanguageEN
References cited61

Background : Humans are constantly exposed to low concentrations of 4-tert-octylphenol (OP). However, studies investigating the effects of low-dose OP on the liver are scarce, and the mechanism of these effects has not been thoroughly elucidated to date. Methods : Adult male institute of cancer research (ICR) mice were exposed to low-dose OP (0, 0.01 and 1 μg/kg/day) for 7 consecutive days. Weights of mice were recorded daily during the experiment. Blood serum levels of OP, alanine aminotransferase (ALT) and aspartate aminotransferase (AST) were determined, and haematoxylin-eosin (HE) staining of the liver was performed. We applied an integrated metabolomic and enzyme gene expression analysis to investigate liver metabolic changes, and the gene expression of related metabolic enzymes was determined by real-time PCR and ELISA. Results : OP in blood serum was increased after OP exposure, while body weights of mice were unchanged. Liver weight and its organ coefficient were decreased significantly in the OP (1 μg/kg/day) group, but ALT and AST, as well as the HE staining results, were unchanged after OP treatment. The levels of cytidine, uridine, purine and N-acetylglutamine were increased significantly, and the level of vitamin B6 was decreased significantly in mice treated with OP (1 μg/kg/day). The mRNA and protein levels of Cda and Shmt1 were both increased significantly in OP (1 μg/kg/day)-treated mice. Conclusions : Through metabolomic analysis, our study firstly found that pyrimidine and purine synthesis were promoted and that N-acetylglutamine was upregulated after low-dose OP treatment, indicating that the treatment disturbed nucleic acid and amino acid metabolism in mice liver

Biology · Cytidine · Enzyme · Gene · Metabolomics · Purine · Purine metabolism · Uridine · Carcinogens and Genotoxicity Assessment · Chemistry · Effects and risks of endocrine disrupting chemicals · Medicine · Toxic Organic Pollutants Impact · Biochemistry · Endocrinology · Internal Medicine

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