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RESEARCH ARTICLE Translational Control of Muscle Mass Neutralizing mitochondrial ROS does not rescue muscle atrophy induced by hindlimb unloading in female mice

  • Hiroaki Eshima
  • , Piyarat Siripoksup
  • , Ziad S. Mahmassani
  • , Jordan M. Johnson
  • , Patrick J. Ferrara
  • , Anthony R.P. Verkerke
  • , Anahy Salcedo
  • , Micah J. Drummond
  • , Katsuhiko Funai

Research output: Contribution to journalArticlepeer-review

Abstract

Neutralizing mitochondrial ROS does not rescue muscle atrophy induced by hindlimb unloading in female mice. J Appl Physiol 129: 124–132, 2020. First published June 18, 2020; doi:10.1152/japplphysiol.00456.2019.—Excess reactive oxygen species (ROS) induced by physical inactivity is associated with muscle atrophy and muscle weakness. However, the role of mitochondrial ROS on disuse-induced muscle atrophy is not fully understood. The purpose of this study was to utilize a genetic strategy to examine the effect of neutralizing mitochondrial ROS on disuse-induced skeletal muscle atrophy. This was accomplished by placing wild-type (WT) and mitochondrial-targeted catalase-expressing (MCAT) littermate mice on 7 days of hindlimb unloading. After assessment of body weight and composition, muscles were analyzed for individual muscle mass, force-generating capacity, fiber type, cross-sectional area, and mitochondrial function, including H2O2 production. Despite a successful attenuation of mitochondrial ROS, MCAT mice were not protected from muscle atrophy. No differences were observed in body composition, lean mass, individual muscle masses, force-generating capacity, or muscle fiber cross-sectional area. These data suggest that neutralizing mitochondrial ROS is insufficient to suppress disuse-induced loss of skeletal muscle mass and contractile function. NEW & NOTEWORTHY The premise of this study was to examine the efficacy of genetic suppression of mitochondrial reactive oxygen species (ROS) to attenuate disuse-induced muscle atrophy and muscle weakness. Neutralization of mitochondrial ROS by MCAT expression was insufficient to rescue muscle atrophy and muscle weakness.

Original languageEnglish (US)
Pages (from-to)124-132
Number of pages9
JournalJournal of Applied Physiology
Volume129
Issue number1
DOIs
StatePublished - Jul 2020
Externally publishedYes

Bibliographical note

Publisher Copyright:
Copyright © 2020 the American Physiological Society

Keywords

  • Hindlimb unloading
  • Mitochondria
  • Muscle atrophy
  • Oxidative stress
  • Reactive oxygen species

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