Alcoholic liver disease
- 1 May 2001
- journal article
- liver
- Published by Wolters Kluwer Health in Current Opinion in Gastroenterology
- Vol. 17 (3) , 211-220
- https://doi.org/10.1097/00001574-200105000-00004
Abstract
Research has substantiated the role of several mechanisms responsible for alcohol-induced hepatotoxicity. These mechanisms include: oxidative stress and lipid peroxidation; immunogenic processes initiated by formation of protein adducts of acetaldehyde, other aldehydes and 1-hydroxyethyl radicals; and activation of Kupffer cells by endotoxin and subsequent cascade of events that involved cytokines, chemokines, and adhesion molecules. Increasing evidence implicates enhanced intestinal permeability caused by alcohol ingestion as the culprit that leads to endotoxemia. While oxidative stress is important, the principal source of reactive oxygen species that causes alcohol-induced liver injury is hotly debated. Potential sources may include cytochrome P450IIE1, activated Kupffer cells, and mitochondrial electron transfer chain. Apoptosis is likely an important pathway that culminates in hepatocyte cell death. Abstinence, corticosteroids, and enteral nutrition remain the cornerstones in the treatment of alcoholic hepatitis. The efficacies of medications such as S-adenosylmethionine and pentoxifylline will need further confirmation by additional randomized trials before they can be recommended as standard therapies for alcoholic hepatitis.Keywords
This publication has 44 references indexed in Scilit:
- CYP2E1 Overexpression in HepG2 Cells Induces Glutathione Synthesis by Transcriptional Activation of γ-Glutamylcysteine SynthetaseJournal of Biological Chemistry, 2000
- Variation in Ethanol Pharmacokinetics and Perceived Gender and Ethnic Differences in Alcohol EliminationAlcohol, Clinical and Experimental Research, 2000
- Aspects of In-Vivo Pharmacokinetics of EthanolAlcohol, Clinical and Experimental Research, 2000
- Genetic polymorphism of alcohol dehydrogenase in europeans: The ADH2*2 allele decreases the risk for alcoholism and is associated with ADH3*1Hepatology, 2000
- Human liver class I alcohol dehydrogenase γγ isozyme: the sole cytosolic 3β-hydroxysteroid dehydrogenase of iso bile acidsHepatology, 2000
- Use of a Two-Compartment Model to Predict Ethanol MetabolismAlcohol, Clinical and Experimental Research, 2000
- Metabolism of Alcohol by the Human StomachAlcohol, Clinical and Experimental Research, 2000
- Site and Quantitative Importance of Alcohol First-Pass MetabolismAlcohol, Clinical and Experimental Research, 2000
- Determinants and Analysis of Blood Alcohol Concentrations After Social DrinkingAlcohol, Clinical and Experimental Research, 2000
- Alcoholic liver disease: New insights in pathogenesis lead to new treatmentsJournal of Hepatology, 2000