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Article(5)
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Science of the Total Environment(3)
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scopus(5)
Aryl hydrocarbon receptor mediates benzo[a]pyrene-induced metabolic reprogramming in human lung epithelial BEAS-2B cells
ArticleAbstract: Polycyclic aromatic hydrocarbon exposure accelerates the initiation and progression of lung cancer tPalabras claves:AHR, Amino acid, fatty acid, Fatty acid transporter FATP1, Metabolomics, Polycyclic aromatic hydrocarbonAutores:Chen J., Gao H., Liao X., Liu X., Qiansheng Huang, Ye G.Z., Zhang H., Zhang X.Fuentes:scopusIntegrated metabolomic and transcriptomic analysis identifies benzo[a]pyrene-induced characteristic metabolic reprogramming during accumulation of lipids and reactive oxygen species in macrophages
ArticleAbstract: Polycyclic aromatic hydrocarbon exposure is a major risk factor for cardiovascular diseases. MacrophPalabras claves:Amino acid metabolism, Aryl hydrocarbon receptor, lipid metabolism, Nucleotide metabolism, Redox homeostasisAutores:Chen J., Gao H., Liao X., Lu W., Qiansheng Huang, Ye G.Z., Zhang H., Zhang L., Zhang X.Fuentes:scopusMicroRNA-26a-CD36 signaling pathway: Pivotal role in lipid accumulation in hepatocytes induced by PM<inf>2.5</inf> liposoluble extracts
ArticleAbstract: Exposure to ambient particular matters (PM) has been associated with the development of non-alcoholiPalabras claves:Fatty acid translocase (FAT, also known as CD36), inflammation, Lipid accumulation, Liposoluble extracts of PM 2.5, MicroRNA-26a (miR-26a)Autores:Chen J., Chi Y.L., Ding D.X., Dong S.J., Hong Z., Lin Y., Lu Y.Y., Qiansheng Huang, Ye G.Z., Zhang H., Zhang X.Fuentes:scopusResveratrol inhibits lipid accumulation in the intestine of atherosclerotic mice and macrophages
ArticleAbstract: Disordered intestinal metabolism is highly correlated with atherosclerotic diseases. Resveratrol proPalabras claves:atherosclerosis, cholesterol, fatty acid, INTESTINAL, macrophage, peroxisome proliferator-activated receptor, ResveratrolAutores:Chen G., Chi Y.L., Dong S.J., Fan Y., Gao H., Liao X., Lin Y., Liu X., Qiansheng Huang, Ye G.Z., Zhang H., Zhu H.M.Fuentes:scopusPolystyrene microplastics induce metabolic disturbances in marine medaka (Oryzias melastigmas) liver
ArticleAbstract: Microplastics are toxic to aquatic organisms. Metabolic disturbances in the liver are highly correlaPalabras claves:Amino acid metabolism, Fatty acid metabolism, Glycolysis, Metabolomics, Polystyrene microplastics, Tricarboxylic acid cycleAutores:Liao X., Lin Y., Liu X., Qiansheng Huang, Yan C., Ye G.Z., Zhang H., Zhang X.Fuentes:scopus