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Search Results to Ronald J Sokol

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One or more keywords matched the following items that are connected to Sokol, Ronald

Item TypeName
Academic Article Antioxidants in pediatric gastrointestinal disease.
Academic Article Antioxidant defenses in metal-induced liver damage.
Academic Article The effect of idebenone, a coenzyme Q analogue, on hydrophobic bile acid toxicity to isolated rat hepatocytes and hepatic mitochondria.
Academic Article Evidence for involvement of oxygen free radicals in bile acid toxicity to isolated rat hepatocytes.
Academic Article Circulating antioxidant concentrations in children with inflammatory bowel disease.
Academic Article Beta-carotene prevents bile acid-induced cytotoxicity in the rat hepatocyte: Evidence for an antioxidant and anti-apoptotic role of beta-carotene in vitro.
Academic Article Human hepatic mitochondria generate reactive oxygen species and undergo the permeability transition in response to hydrophobic bile acids.
Academic Article Antioxidants in cystic fibrosis. Conclusions from the CF antioxidant workshop, Bethesda, Maryland, November 11-12, 2003.
Academic Article A pilot study on the safety and efficacy of a novel antioxidant rich formulation in patients with cystic fibrosis.
Academic Article Bile acid-induced rat hepatocyte apoptosis is inhibited by antioxidants and blockers of the mitochondrial permeability transition.
Academic Article Generation of hydroperoxides in isolated rat hepatocytes and hepatic mitochondria exposed to hydrophobic bile acids.
Academic Article Enrichment of rat hepatic organelles by vitamin E administered subcutaneously.
Academic Article Licorice compounds glycyrrhizin and 18beta-glycyrrhetinic acid are potent modulators of bile acid-induced cytotoxicity in rat hepatocytes.
Academic Article Increased susceptibility of fat-laden Zucker-rat hepatocytes to bile acid-induced oncotic necrosis: an in vitro model of steatocholestasis.
Concept Antioxidants
Academic Article Thioredoxin reductase 1 regulates hepatic inflammation and macrophage activation during acute cholestatic liver injury.
Academic Article The autophagic protein p62 is a target of reactive aldehydes in human and murine cholestatic liver disease.

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  • Antioxidants

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