Exercise-induced satellite cell activation in growing and mature skeletal muscle
- 1 November 1987
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 63 (5) , 1816-1821
- https://doi.org/10.1152/jappl.1987.63.5.1816
Abstract
The time course and extent of satellite cell activation were studied in the soleus (m-SOL) and extensor digitorum longus (m-EDL) muscles of untrained growing and mature rats after a single bout of prolonged eccentric treadmill running. At 24, 48, 72, and 120 h postexercise, satellite cell mitotic activity was quantitated in autoradiographs of whole-fiber segments after injection of [3H]thymidine. Fiber damage and localization of labeled cells were also examined in muscle cross sections. Labeling in growing muscles progressively increased to peak levels (approximately 250% of control) at 72 h postexercise, whereas mature muscles exhibited an earlier peak (approximately 250% of control) at 24 (m-SOL) and 48 (m-EDL) h, followed by a more rapid decline to control levels by 120 h postexercise. In all exercised muscles the calculated satellite cell activation was far greater than required to repair the small number (less than 3.0%) of necrotic fibers identified at the light-microscopic level. These results suggest that satellite cells were activated not only on fibers exhibiting overt necrosis but also on those with lesions not discernible with light microscopy.This publication has 13 references indexed in Scilit:
- Effects of skeletal muscle regeneration on the proliferation potential of satellite cellsMechanisms of Ageing and Development, 1985
- A quantitative study of satellite cells in regenerated soleus and extensor digitorum longus musclesThe Anatomical Record, 1984
- Pain and Fatigue after Concentric and Eccentric Muscle ContractionsClinical Science, 1983
- Eccentric exercise-induced injury to rat skeletal muscleJournal of Applied Physiology, 1983
- Acute fasting and fiber number in rat soleus muscleJournal of Applied Physiology, 1982
- Muscle hexose monophosphate shunt activity following exerciseCellular and Molecular Life Sciences, 1981
- New muscle fiber production during compensatory hypertrophyMedicine & Science in Sports & Exercise, 1980
- Exhaustive exercise, endurance training, and acid hydrolase activity in skeletal muscleJournal of Applied Physiology, 1979
- Exhaustive physical exercise and acid hydrolase activity in mouse skeletal muscleHistochemistry and Cell Biology, 1978
- Factors in delayed muscle sorenessMedicine & Science in Sports & Exercise, 1977