Journal article
Molecular basis for an attenuated mitochondrial adaptive plasticity in aged skeletal muscle
Abstract
Our intent was to investigate the mechanisms driving the adaptive potential of subsarcolemmal (SS) and intermyofibrillar (IMF) mitochondria in young (6 mo) and senescent (36 mo) animals in response to a potent stimulus for organelle biogenesis. We employed chronic electrical stimulation (10 Hz, 3 h/day, 7 days) to induce contractile activity of skeletal muscle in 6 and 36 mo F344XBN rats. Subsequent to chronic activity, acute stimulation (1 Hz, …
Authors
Ljubicic V; Joseph A-M; Adhihetty PJ; Huang JH; Saleem A; Uguccioni G; Hood DA
Journal
Aging, Vol. 1, No. 9, pp. 818–830
Publisher
Impact Journals
Publication Date
September 12, 2009
DOI
10.18632/aging.100083
ISSN
0002-0966
Associated Experts
Fields of Research (FoR)
Medical Subject Headings (MeSH)
Adaptation, PsychologicalAgingAnimalsApoptosisDNA FragmentationElectric StimulationElectron Transport Complex IVMaleMitochondria, MuscleMitochondrial Membrane Transport ProteinsMitochondrial ProteinsMitochondrial SizeMuscle ContractionMuscle FatigueMuscle ProteinsMuscle, SkeletalOrnithine CarbamoyltransferaseOxygen ConsumptionProtein TransportRatsRats, Inbred F344Reactive Oxygen SpeciesSuccinic Acid