The role of cellular oxidases and catalytic iron in the pathogenesis of ethanol-induced liver injury.
Explore this paper's citation graph
Summary
The cellular oxidases (aldehyde and xanthine oxidase) along with catalytic iron play a fundamental role in the pathogenesis of free radical injury due to ethanol.
- Type
- article
- Published
- 1992-01-01
- Cited by
- 43
- References
- 27
- OpenAlex
- https://openalex.org/W1608288
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35875924
Keywords
Computer science, Business
References
- HIGH-YIELD PREPARATION OF ISOLATED RAT LIVER PARENCHYMAL CELLS
- The role of aldehyde oxidase in ethanol-induced hepatic lipid peroxidation in the rat.
- Hepatic aldehyde oxidase. I. Purification and properties.
- Enzymatic basis of detoxication
- Free Radicals in Biology
- The mechanism of the enzymatic oxidation of aldehydes.
- HEPATIC ALDEHYDE OXIDASE. 3. THE SUBSTRATE-BINDING SITE.
- Superoxide, hydrogen peroxide, and singlet oxygen in lipid peroxidation by a xanthine oxidase system.
- Enhancement of hypoxic liver damage by ethanol. Involvement of xanthine oxidase and the role of glycolysis.
- Preparation of rat liver cells. 3. Enzymatic requirements for tissue dispersion.
- Superoxide radical from xanthine oxidase acting upon lumazine.
- Acetaldehyde-mediated hepatic lipid peroxidation: role of superoxide and ferritin.
- Ethanol‐induced hepatotoxicity; experimental observations on the role of lipid peroxidation
- A possible mechanism for the peroxidation of lipids due to chronic ethanol ingestion.
- Evidence for carbon tetrachloride- and ethanol-induced lipid peroxidation in vivo demonstrated by ethane production in mice and rats.
- High blood acetaldehyde levels after ethanol administration. Difference between alcoholic and nonalcoholic subjects.
- Hepatic and biliary levels of glutathione and lipid peroxides following iron overload in the rat: effect of simultaneous ethanol administration.
- Lipid peroxidation as a mechanism of alcoholic liver injury: role of iron mobilization and microsomal induction.
- Liver xanthine dehydrogenase and iron mobilization.
- Increased prooxidant action of hepatic cytosolic low‐molecular‐weight iron in experimental iron overload
Cited by
- Regulation and Biochemistry of Mouse Molybdo-flavoenzymes
- Gene-by-Environment Interactions in Pancreatic Cancer: Implications for Prevention
- Strategies for Development of Chronic Wounds Using the LIGHT -/- Mouse and a Diabetic Mouse: From Mechanism to Treatment
- Iron overload and cofactors with special reference to alcohol, hepatitis C virus infection and steatosis/insulin resistance.
- Role of aldehyde oxidase in biogenic amine metabolism.
- Mechanisms of alcoholic pancreatitis
- Lipid hydroperoxide induced mitochondrial dysfunction following acute ethanol intoxication in rats. The critical role for mitochondrial reduced glutathione.
- Germline variation in NCF4, an innate immunity gene, is associated with an increased risk of colorectal cancer
- Antioxidant Value and Element Content in Some Tinctures Used in Medication
- The 21-aminosteroid 16-desmethyl tirilazad mesylate prevents necroinflammatory changes in experimental alcoholic liver disease.
- Iron accumulation in alcoholic liver diseases.
- Effects of alcohol consumption on indices of iron stores and of iron stores on alcohol intake markers.
- Alcohol consumption on pancreatic diseases.
- Molecular mechanisms of pancreatitis: Current opinion
- Ethanol-induced free radical injury to the hepatocyte glucagon receptor.
- Activation of the Human Aldehyde Oxidase (hAOX1) Promoter by Tandem Cooperative Sp1/Sp3 Binding Sites: Identification of Complex Architecture in the hAOX Upstream DNA that Includes a Proximal Promoter, Distal Activation Sites, and a Silencer Element
- Human Aldehyde Oxidase 1 Interacts with ATP-binding Cassette Transporter-1 and Modulates its Activity in Hepatocytes
- Fatty acid ethyl esters--alcohol's henchmen in the pancreas?
- Metabolism of 2-phenylethylamine and phenylacetaldehyde by precision-cut guinea pig fresh liver slices
- Alcohol mediates increases in hepatic and serum nonheme iron stores in a rat model for alcohol-induced liver injury.
Related papers
- PLANNING AND EXPECTATIONS OF THE RETIREMENT EXPERIENCE
- The Influence of Retirement Planning Programs on Retirement Planning and Attitude towards Retirement among Employees of Selected Ghanaian Organizations
- A Comparative Study of Individual's Actively Involved in Retirement Financial Planning Against Individual's Not Undertaking Retirement Financial Planning
- Retirement concerns and planning of cooperative members: A study in the Dutch healthcare sector
- The Awareness of Retirement Planning: A Case with International Islamic University Malaysia Employees
- Youth Individual Development Accounts: Retirement Planning Initiatives.
- Retirement Planning; Choice or Chance?.
- Learning and Planning for Retirement.
- Reframing the Retirement Saving Challenge: Getting to a Sustainable Lifestyle Level