Effect of endurance swimming on rat cardiac myofibrillar ATPase with experimental diabetes

Author:

Belcastro A. N.,Maybank P.,Rossiter M.,Secord D.

Abstract

Diabetes is characterized by depressed cardiac functional properties attributed to Ca2+-activated ATPase activity. In contrast, endurance swimming enhances the cardiac functional properties and Ca2+-activated myofibril ATPase. Thus, the purpose of this study was to observe if the changes associated with experimental diabetes can be ameliorated with training. Diabetes was induced with a single i.v. injection of streptozotocin (60 mg/kg). Blood and urine glucose concentrations were 802 ± 44 and 6965 ± 617 mg/dL, respectively. The training control and training diabetic animals were made to swim (±2% body weight) 4 days/week for 8 weeks. Cardiac myofibril, at 10 μM free Ca2+ concentration was reduced by 54% in the sedentary diabetics compared with sedentary control animals (p < 0.05). Swim training enhanced the Ca2+-activated myofibril ATPase activities for the normal animals. The diabetic animals, which swam for 8 weeks, had further reduced their Ca2+-activated myofibril ATPase activity when compared with sedentary diabetics (p < 0.05). Similarly, the Mg2+-stimulated myofibril ATPase activity was depressed by 31% in diabetics following endurance swimming. It is concluded that the depressed Ca2+-activated myofibril ATPase activity of diabetic hearts is not reversible with endurance swimming.

Publisher

Canadian Science Publishing

Subject

Physiology (medical),Pharmacology,General Medicine,Physiology

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