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Article
Apoptosis: A Mechanism Contributing to Remodeling of Skeletal Muscle in Response to Hindlimb Unweighting
American Journal of Physiology - Cell Physiology
  • David L. Allen, University of California, Los Angeles
  • Jon K. Linderman, University of Dayton
  • Roland R. Roy, University of California, Los Angeles
  • A. J. Bigbee, University of California, Los Angeles
  • Richard E. Grindeland, University of Arizona
  • V. R. Mukku, University of California, Los Angeles
  • V. R. Edgerton, University of California, Los Angeles
Document Type
Article
Publication Date
8-1-1997
Abstract

The role of apoptosis in the elimination of myonuclei during hindlimb unloading-induced atrophy and the inhibition of apoptosis in the prevention of muscle atrophy were examined. The number of nuclei demonstrating double-stranded DNA fragmentation seen by terminal deoxynucleotidyl transferase (TDT) histochemical staining, an indicator of apoptosis, was significantly increased after 14 days of suspension. Double staining with TDT and antilaminin immunohistochemistry revealed that some TDT-positive nuclei were within the fiber lamina and were most likely myonuclei. The number of fibers containing morphologically abnormal nuclei was also significantly greater in suspended compared with control rats. Combined treatment with growth hormone and insulin-like growth factor I (GH/ IGF-I) and resistance exercise attenuated the increase in TDT-positive nuclei (approximately 26%, P > 0.05) and significantly decreased the number of fibers with morphologically abnormal nuclei. The data suggest that 1) “programmed nuclear death” contributes to the elimination of myonuclei and/or satellite cells from atrophying fibers, and 2) GH/IGF-I administration plus muscle loading ameliorates the apoptosis associated with hindlimb unloading.

Inclusive pages
C579-C587
ISBN/ISSN
0363-6143
Comments

Permission documentation on file.

Publisher
American Physiological Society
Peer Reviewed
Yes
Citation Information
David L. Allen, Jon K. Linderman, Roland R. Roy, A. J. Bigbee, et al.. "Apoptosis: A Mechanism Contributing to Remodeling of Skeletal Muscle in Response to Hindlimb Unweighting" American Journal of Physiology - Cell Physiology Vol. 273 Iss. 2 (1997)
Available at: http://works.bepress.com/jon_linderman/2/