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Exercise training with ageing protects against ethanol induced myocardial glutathione homeostasis
Authors:Dr Pushpalatha Kakarla  Sathyavelureddy Kesireddy  Leeuwenburgh Christiaan
Institution:1. Division of Exercise Physiology, Department of Zoology, S.V. University, Tirupati-517502, A.P., Indiapushpa6k@yahoo.com;3. Division of Exercise Physiology, Department of Zoology, S.V. University, Tirupati-517502, A.P., India;4. Biochemistry of Aging Laboratory, Division of Biology of Aging, Department of Aging and Geriatrics, College of Medicine, University of Florida Institute on Aging, Gainesville, FL, 32611, USA
Abstract:Glutathione plays a central role in the maintenance of cellular antioxidant defense. The alterations in the glutathione and associated recyclic enzymes caused by both exercise training and ethanol are well documented; however, their interactive effects with age are not well understood. Therefore, the influence of ageing and the interactive effects of exercise training and ethanol on the myocardial glutathione system in 3 months and 18 months old rats were examined. The results showed a significant (p<0.01) reduction in GSH content, Se and non-Se GSH-Px, GR and GST activities in the myocardium of rat with age. A significant increase (p<0.05) in the activities of these enzymes was observed in both age groups of rats in response to exercise training. This exercise-induced elevation of Se and non-Se GSH-Px and GR activities was more pronounced in the 18 months old rats when compared to 3 months old rats. Ethanol consumption significantly (p<0.05) reduced the GSH content, Se and non-Se GSH-Px and GR activities in both age groups of rats. In contrast, ethanol consumption significantly (p<0.05) increased the activity of GST. The combined action of exercise plus ethanol significantly (p<0.05) elevated the GSH content, Se and non-Se GSH-Px, GR and GST activities when compared to the ethanol treated rats in both age groups, indicating the suppression of ethanol-induced oxidative stress by exercise training. In conclusion, there was a compensatory myocardial response lessening ethanol-induced oxidative stress by exercise training, which seemed to result from the higher activity of glutathione recycling and utilizing enzymes, which may be critical for preventing chronic oxidative damage to the myocardium during ageing and even due to ethanol consumption.
Keywords:Exercise training  ethanol  ageing  glutathione system  myocardium  male rat
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