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Article
Growth Hormone/IGF-I and/or Resistive Exercise Maintains Myonuclear Number in Hindlimb Unweighted Muscles
Journal of Applied Physiology
  • David L. Allen, University of California, Los Angeles
  • Jon K. Linderman, University of Dayton
  • Roland R. Roy, University of California, Los Angeles
  • Richard E. Grindeland, University of Arizona
  • Venkat R. Mukku, Genentech, Inc.
  • V. R. Edgerton, University of California, Los Angeles
Document Type
Article
Publication Date
12-1-1997
Abstract

In the present study of rats, we examined the role, during 2 wk of hindlimb suspension, of growth hormone/insulin-like growth factor I (GH/IGF-I) administration and/or brief bouts of resistance exercise in ameliorating the loss of myonuclei in fibers of the soleus muscle that express type I myosin heavy chain. Hindlimb suspension resulted in a significant decrease in mean soleus wet weight that was attenuated either by exercise alone or by exercise plus GH/IGF-I treatment but was not attenuated by hormonal treatment alone. Both mean myonuclear number and mean fiber cross-sectional area (CSA) of fibers expressing type I myosin heavy chain decreased after 2 wk of suspension compared with control (134 vs. 162 myonuclei/mm and 917 vs. 2,076 μm2, respectively). Neither GH/IGF-I treatment nor exercise alone affected myonuclear number or fiber CSA, but the combination of exercise and growth-factor treatment attenuated the decrease in both variables. A significant correlation was found between mean myonuclear number and mean CSA across all groups. Thus GH/IGF-I administration and brief bouts of muscle loading had an interactive effect in attenuating the loss of myonuclei induced by chronic unloading.

Inclusive pages
1857- 1861
ISBN/ISSN
8750-7587
Comments

Permission documentation on file.

Publisher
American Physiological Society
Peer Reviewed
Yes
Citation Information
David L. Allen, Jon K. Linderman, Roland R. Roy, Richard E. Grindeland, et al.. "Growth Hormone/IGF-I and/or Resistive Exercise Maintains Myonuclear Number in Hindlimb Unweighted Muscles" Journal of Applied Physiology Vol. 83 Iss. 6 (1997)
Available at: http://works.bepress.com/jon_linderman/6/