As an individual ages, denervated muscle fibers become an increasingly prominent component of the skeletal musculature, whether through the normal remodelling of motor units that occurs with aging or through traumatic events that result in the breakdown and regeneration of muscle fibers. The overall goal of this project is to understand the basis for the decline in mass and force, as well as the sharply reduced restorative capacity, in denervated muscle in both young and old animals and to identify means for preventing or reversing the effects of denervation. Specific hypotheses and experiments are proposed in four areas: 1) Understanding the biology of denervated muscle in both young and old rats; 2) testing the hypothesis that denervation is a basis for many of the regressive changes found in muscle during extreme old age; 3) identifying mechanisms underlying the maintenance and restoration of denervated muscle through electrical stimulation; 4) testing the hypothesis that both the type of nerve and type of muscle determine the success of muscle regeneration as an animal ages, particularly in extreme old age. The Project involves a consortium of laboratories specializing in morphology, physiology, molecular biology and biochemistry, and many of the experiments will be conducted on muscle supplied from group experiments through an Animal Surgery core. Specific techniques include electron and confocal microscopy, cell culture, immunocytochemistry, in vitro analysis of contractile properties of muscles, in vivo motor unit analysis, in situ hybridization, Northern and Western blotting, RNase protection assays, and transfection of cells. Muscle weakness is a major limitation on a healthy lifestyle for many older individuals. The information learned from research done on this Program Project is expected to be applied to both the prevention and treatment of muscle weakness in the elderly.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Program Projects (P01)
Project #
2P01AG010821-06
Application #
2376184
Study Section
Special Emphasis Panel (ZAG1-MJF-2 (M1))
Project Start
1993-01-01
Project End
2002-06-30
Budget Start
1997-09-30
Budget End
1998-06-30
Support Year
6
Fiscal Year
1997
Total Cost
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
791277940
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Kung, Theodore A; Cederna, Paul S; van der Meulen, Jack H et al. (2014) Motor unit changes seen with skeletal muscle sarcopenia in oldest old rats. J Gerontol A Biol Sci Med Sci 69:657-65
Dow, Douglas E; Cederna, Paul S; Hassett, Cheryl A et al. (2007) Electrical stimulation prior to delayed reinnervation does not enhance recovery in muscles of rats. Restor Neurol Neurosci 25:601-10
Dow, Douglas E; Carlson, Bruce M; Hassett, Cheryl A et al. (2006) Electrical stimulation of denervated muscles of rats maintains mass and force, but not recovery following grafting. Restor Neurol Neurosci 24:41-54
Dow, Douglas E; Dennis, Robert G; Faulkner, John A (2005) Electrical stimulation attenuates denervation and age-related atrophy in extensor digitorum longus muscles of old rats. J Gerontol A Biol Sci Med Sci 60:416-24
Borisov, Andrei B; Dedkov, Eduard I; Carlson, Bruce M (2005) Abortive myogenesis in denervated skeletal muscle: differentiative properties of satellite cells, their migration, and block of terminal differentiation. Anat Embryol (Berl) 209:269-79
Borisov, Andrei B; Dedkov, Eduard I; Carlson, Bruce M (2005) Differentiation of activated satellite cells in denervated muscle following single fusions in situ and in cell culture. Histochem Cell Biol 124:13-23
Dow, Douglas E; Faulkner, John A; Dennis, Robert G (2005) Distribution of rest periods between electrically generated contractions in denervated muscles of rats. Artif Organs 29:432-5
Dow, Douglas E; Cederna, Paul S; Hassett, Cheryl A et al. (2004) Number of contractions to maintain mass and force of a denervated rat muscle. Muscle Nerve 30:77-86
Pan, Jie; Ruest, Louis-Bruno; Xu, Suying et al. (2004) Immuno-characterization of the switch of peptide elongation factors eEF1A-1/EF-1alpha and eEF1A-2/S1 in the central nervous system during mouse development. Brain Res Dev Brain Res 149:1-8
Dedkov, Eduard I; Borisov, Andrei B; Wernig, Anton et al. (2003) Aging of skeletal muscle does not affect the response of satellite cells to denervation. J Histochem Cytochem 51:853-63

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