Does ACE inhibition enhance endurance performance and muscle energy metabolism in rats?
- 1 January 2004
- journal article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 96 (1), 59-64
- https://doi.org/10.1152/japplphysiol.00323.2003
Abstract
The renin-angiotensin-aldosterone system plays an important role in the hydroelectrolytic balance, blood pressure regulation, and cell growth. In some studies, the insertion (I) allele of the angiotensin-converting enzyme (ACE) gene, associated with a lower ACE activity, has been found in excess frequency in elite endurance athletes, suggesting that decreased ACE activity could be involved in endurance performance (Myerson S, Hemingway H, Budget R, Martin J, Humphries S, and Montgomery H. J Appl Physiol 87: 1313-1316 , 1999). To test this hypothesis, we evaluated whether ACE inhibition could be associated with improved endurance performance and muscle oxidative capacity in rats. Eight male Wistar rats were treated for 10-12 wk with an ACE inhibitor, perindopril (2 mg·kg-1·day-1), and compared with eight control rats. Endurance time was measured on a treadmill, and oxidative capacity and regulation of mitochondrial respiration by substrates were evaluated in saponin-permeabilized fibers of slow soleus and fast gastrocnemius muscles. Endurance time did not differ between groups (57 ± 5 min for perindopril vs. 55 ± 6 min for control). Absolute and relative (to body weight) left ventricular weight was 20% ( P < 0.01) and 12% ( P < 0.01) lower, respectively, in the treated group. No difference in oxidative capacity, mitochondrial enzyme activities, or mitochondrial regulation by ADP was observed in soleus or gastrocnemius. Mitochondrial respiration with glycerol 3-phosphate was 17% higher in gastrocnemius ( P < 0.03) and with octanoylcarnitine 14% greater in soleus ( P < 0.01) of treated rats. These results demonstrate that ACE inhibition was not associated with improved endurance time and maximal oxidative capacity of skeletal muscles. This suggests that ACE activity has no implication in endurance capacity and only minor effects on mitochondrial function in sedentary animals.Keywords
This publication has 46 references indexed in Scilit:
- Does angiotensin-converting enzyme inhibition improve the energetic status of cardiac and skeletal muscles in heart failure induced by aortic stenosis in rats?Journal of Molecular and Cellular Cardiology, 2003
- ACE insertion/deletion polymorphism and submaximal exercise hemodynamics in postmenopausal womenJournal of Applied Physiology, 2002
- Maximal oxygen uptake: ???classical??? versus???contemporary??? viewpointsMedicine & Science in Sports & Exercise, 1997
- Striking Differences Between the Kinetics of Regulation of Respiration by ADP in Slow‐Twitch and Fast‐Twitch Muscles In VivoEuropean Journal of Biochemistry, 1996
- Characteristics of mitochondria isolated from type I and type IIb skeletal muscleAmerican Journal of Physiology-Cell Physiology, 1996
- Angiotensin-Converting Enzyme in the Human HeartCirculation, 1995
- Angiotensin Converting Enzyme InhibitionAmerican Journal of Hypertension, 1991
- Endurance training in humans: aerobic capacity and structure of skeletal muscleJournal of Applied Physiology, 1985
- Adaptations of skeletal muscle to endurance exercise and their metabolic consequencesJournal of Applied Physiology, 1984
- Influence of exercise intensity and duration on biochemical adaptations in skeletal muscleJournal of Applied Physiology, 1982