Effects of beta 1- vs. beta 1 + beta 2-blockade on exercise endurance and muscle metabolism in humans
- 1 February 1989
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 66 (2) , 548-554
- https://doi.org/10.1152/jappl.1989.66.2.548
Abstract
The effects of beta-blockade on muscle utilization of glycogen and triglycerides, as well as potassium metabolism, were studied in eight healthy male subjects performing long-duration exercise to exhaustion. Subjects were studied after treatment with either placebo (PLAC), beta 1-selective (atenolol, 100 mg/day, AT), or nonselective beta-blockade (nadolol, 80 mg/day, NAD) each for 1 wk according to a randomized, double-blind, cross-over design. NAD and AT caused identical decreases in exercise heart rates, but endurance (71 +/- 8 min with PLAC) decreased significantly more with NAD (-33 +/- 4%) than with AT (-14 +/- 6%). Muscle glycogen breakdown, taking exercise time into account, was unaffected by treatment. In contrast, muscle triglyceride utilization was completely blocked by NAD whereas it was unchanged with AT as compared to PLAC. Adipose tissue lipolysis was inhibited to a similar extent by the two beta-blockers. Serum potassium increased to higher levels at exhaustion and muscle potassium decreased to lower levels with NAD than with AT or PLAC. These results suggest that decreased utilization of muscle triglycerides combined with lack of an enhanced glycogenolysis to compensate as well as alterations in potassium metabolism contribute to the decreased exercise capacity with nonselective beta-blockade compared with beta 1-selective blockade.This publication has 22 references indexed in Scilit:
- Effect of β-Adrenoceptor Blockade on Exercise Performance and MetabolismClinical Science, 1981
- Effects of cardioselective and nonselective β-blockade on dynamic exercise performance in mildly hypertensive menClinical Pharmacology & Therapeutics, 1980
- Metabolic changes in muscle on long‐term alprenolol therapyClinical Pharmacology & Therapeutics, 1979
- Role of beta-adrenergic receptors in mobilization of energy sources in exercising dogsJournal of Applied Physiology, 1978
- A simple specific radioenzymatic assay for the simultaneous measurement of picogram quantities of norepinephrine, epinephrine, and dopamine in plasma and tissuesBiochemical Medicine, 1977
- Glucagon and plasma catecholamines during beta-receptor blockade in exercising manJournal of Applied Physiology, 1976
- Enzymic assay of glycerol, dihydroxyacetone, and glyceraldehydeArchives of Biochemistry and Biophysics, 1967
- Effects of beta-adrenergic blockade on the cardiac response to maximal and submaximal exercise in man.Journal of Clinical Investigation, 1965
- STUDIES ON BLOOD LIPIDS DURING EXERCISE .4. ARTERIAL CONCENTRATION OF PLASMA FREE FATTY ACIDS AND GLYCEROL DURING AND AFTER PROCONGED EXERCISE IN NORMAL MEN1963
- The essentiality of histo‐ and cytochemical studies of skeletal muscle in the investigation of neuromuscular diseaseNeurology, 1962