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DOI10.1016/j.taap.2015.03.025
Inhaled ozone (O-3)-induces changes in serum metabolomic and liver transcriptomic profiles in rats
Miller, Desinia B.1; Karoly, Edward D.2; Jones, Jan C.2; Ward, William O.3; Vallanat, Beena D.3; Andrews, Debora L.3; Schladweiler, Mette C.4; Snow, Samantha J.4; Bass, Virginia L.5; Richards, Judy E.4; Ghio, Andrew J.4; Cascio, Wayne E.4; Ledbetter, Allen D.4; Kodavanti, Urmila P.4
发表日期2015-07-15
ISSN0041-008X
卷号286期号:2页码:65-79
英文摘要

Air pollution has been linked to increased incidence of diabetes. Recently, we showed that ozone (O-3) induces glucose intolerance, and increases serum leptin and epinephrine in Brown Norway rats. In this study, we hypothesized that O-3 exposure will cause systemic changes in metabolic homeostasis and that serum metabolomic and liver transcriptomic profiling will provide mechanistic insights. In the first experiment, male Wistar Kyoto (WRY) rats were exposed to filtered air (FA) or O-3 at 0.25, 0.50, or 1.0 ppm, 6 h/day for two days to establish concentration-related effects on glucose tolerance and lung injury. In a second experiment, rats were exposed to FA or 1.0 ppm O-3, 6 h/day for either one or two consecutive days, and systemic metabolic responses were determined immediately after or 18 h post-exposure. O-3 increased serum glucose and leptin on day 1. Glucose intolerance persisted through two days of exposure but reversed 18 h-post second exposure. O-3 increased circulating metabolites of glycolysis, long-chain free fatty acids, branched-chain amino acids and cholesterol, while 1,5-anhydroglucitol, bile acids and metabolites of TCA cycle were decreased, indicating impaired glycemic control, proteolysis and lipolysis. Liver gene expression increased for markers of glycolysis, TCA cycle and gluconeogenesis, and decreased for markers of steroid and fat biosynthesis. Genes involved in apoptosis and mitochondrial function were also impacted by O-3. In conclusion, short-term O-3 exposure induces global metabolic derangement involving glucose, lipid, and amino acid metabolism, typical of a stress-response. It remains to be examined if these alterations contribute to insulin resistance upon chronic exposure. Published by Elsevier Inc.


英文关键词Air pollution;Ozone;Metabolic syndrome;Serum metabolomic;Stress response
语种英语
WOS记录号WOS:000356119600001
来源期刊TOXICOLOGY AND APPLIED PHARMACOLOGY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/59614
作者单位1.Univ N Carolina, Curriculum Toxicol, Chapel Hill, NC USA;
2.Metabolon Inc, Durham, NC USA;
3.US EPA, Res Cores Unit, Natl Hlth & Environm Effects Res Lab, Res Triangle Pk, NC 27711 USA;
4.US EPA, Environm Publ Hlth Div, Natl Hlth & Environm Effects Res Lab, Res Triangle Pk, NC 27711 USA;
5.Univ N Carolina, Dept Environm Sci & Engn, Gillings Sch Global Publ Hlth, Chapel Hill, NC USA
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GB/T 7714
Miller, Desinia B.,Karoly, Edward D.,Jones, Jan C.,et al. Inhaled ozone (O-3)-induces changes in serum metabolomic and liver transcriptomic profiles in rats[J]. 美国环保署,2015,286(2):65-79.
APA Miller, Desinia B..,Karoly, Edward D..,Jones, Jan C..,Ward, William O..,Vallanat, Beena D..,...&Kodavanti, Urmila P..(2015).Inhaled ozone (O-3)-induces changes in serum metabolomic and liver transcriptomic profiles in rats.TOXICOLOGY AND APPLIED PHARMACOLOGY,286(2),65-79.
MLA Miller, Desinia B.,et al."Inhaled ozone (O-3)-induces changes in serum metabolomic and liver transcriptomic profiles in rats".TOXICOLOGY AND APPLIED PHARMACOLOGY 286.2(2015):65-79.
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