• Nutrition · Nov 2020

    Oxidative stress inhibition by resveratrol in alcohol-dependent mice.

    • Carla Petrella, Valentina Carito, Claudio Carere, Giampiero Ferraguti, Stefania Ciafrè, Fausta Natella, Cristiano Bello, Antonio Greco, Massimo Ralli, Rosanna Mancinelli, Marisa Patrizia Messina, Marco Fiore, and Mauro Ceccanti.
    • Institute of Biochemistry and Cell Biology, IBBC-CNR, Rome, Italy.
    • Nutrition. 2020 Nov 1; 79-80: 110783.

    ObjectivesUncontrolled ingestion of alcohol has dramatic consequences on the entire organism that are also associated with the oxidation process induced by alcohol and elevate radical oxygen species. Resveratrol, a nonflavonoid phenol, shows well-documented antioxidant properties. We investigated the potential antioxidant ability of this natural compound in a mouse model of alcohol addiction.MethodsWe administered (per os) for 60 d 10 mg · kg-1 · d-1 of resveratrol in alcoholic adult male mice. Oxidative stress was evaluated by measuring serum-free oxygen radicals defense and free oxygen radical levels. Resveratrol metabolites were measured in the serum of mice that were administered with resveratrol. Finally, the effect of resveratrol on the alcohol-induced alteration of brain-derived neurotrophic factors (BDNF) in the liver was investigated.ResultsProlonged consumption of resveratrol strongly counteracts serum radical oxygen species formation caused by chronic alcohol intake without effects on natural, free oxygen radical defense. The presence of resveratrol metabolites in the serum only of animals supplemented with resveratrol potentiates the evidence that the antioxidant effect observed is due to the ingestion of the natural compound. Moreover, resveratrol supplementation can counteract alcohol-induced BDNF elevation in the liver, which is the main target of organ alcohol-induced damage.ConclusionsThe consumption of resveratrol through metabolite formation may play a protective role by decreasing free radical formation and modulating the BDNF involved in hepatic disruption induced by chronic alcohol consumption. Further investigation into the mechanism underlying the protective effect could reinforce the potential use of resveratrol as a dietary supplement to prevent damage associated with chronic alcohol abuse.Copyright © 2020 Elsevier Inc. All rights reserved.

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