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Summary
December 2005, Vol. 1, No. 4, Pages 671-685
, DOI 10.1517/17425255.1.4.671
CYP2E1-dependent oxidative stress and toxicity: role in ethanol-induced liver injuryJose M Jimenez-Lopez & Arthur I CederbaumMount Sinai School of Medicine, Department of Pharmacology and Biological Chemistry, Box 1603, One Gustave L. Levy Place, New York, NY 10029, USA. Arthur.Cederbaum@mssm.edu Ethanol-induced oxidative stress plays a major role in the mechanisms by which ethanol causes liver injury. Many pathways contribute to how ethanol induces a state of oxidative stress. One central pathway appears to be the induction, by ethanol, of the CYP2E1 form of cytochrome P450 enzymes. CYP2E1 is of interest because it metabolises and activates many toxicological substrates, including ethanol, to more reactive products. Levels of CYP2E1 are elevated under a variety of physiological and pathophysiological conditions. CYP2E1 is an effective generator of reactive oxygen species. This review summarises some of the biochemical and toxicological properties of CYP2E1, and briefly describes the use of HepG2 cell lines in assessing the actions of CYP2E1. Future directions, which may help to better understand the actions of CYP2E1 and its role in alcoholic liver injury, are suggested. Forward Links to Citing ArticlesErin M. McCartney, Ljiljana Semendric, Karla J. Helbig, Susan Hinze, Brett Jones, Steven A. Weinman, Michael R. Beard. (2009) Alcohol Metabolism Increases the Replication of Hepatitis C Virus and Attenuates the Antiviral Action of Interferon. The Journal of Infectious Diseases 198:12, 1766-1775 Online publication date: 15-Jan-2009. CrossRef Ilaria Demori, Bruno Burlando, Ezio Gerdoni, Antonia Lanni, Emilia Fugassa, Adriana Voci. (2008) Uncoupling protein-2 induction in rat hepatocytes after acute carbon tetrachloride liver injury. Journal of Cellular Physiology 216:2, 413-418 Online publication date: 1-Sep-2008. CrossRef |
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