Literature DB >> 24385110

Effect of hypoxia exposure on the recovery of skeletal muscle phenotype during regeneration.

Thomas Chaillou1, N Koulmann, A Meunier, R Chapot, B Serrurier, M Beaudry, X Bigard.   

Abstract

Hypoxia impairs the muscle fibre-type shift from fast-to-slow during post-natal development; however, this adaptation could be a consequence of the reduced voluntary physical activity associated with hypoxia exposure rather than the result of hypoxia per se. Moreover, muscle oxidative capacity could be reduced in hypoxia, particularly when hypoxia is combined with additional stress. Here, we used a model of muscle regeneration to mimic the fast-to-slow fibre-type conversion observed during post-natal development. We hypothesised that hypoxia would impair the recovery of the myosin heavy chain (MHC) profile and oxidative capacity during muscle regeneration. To test this hypothesis, the soleus muscle of female rats was injured by notexin and allowed to recover for 3, 7, 14 and 28 days under normoxia or hypobaric hypoxia (5,500 m altitude) conditions. Ambient hypoxia did not impair the recovery of the slow MHC profile during muscle regeneration. However, hypoxia moderately decreased the oxidative capacity (assessed from the activity of citrate synthase) of intact muscle and delayed its recovery in regenerated muscle. Hypoxia transiently increased in both regenerated and intact muscles the content of phosphorylated AMPK and Pgc-1α mRNA, two regulators involved in mitochondrial biogenesis, while it transiently increased in intact muscle the mRNA level of the mitophagic factor BNIP3. In conclusion, hypoxia does not act to impair the fast-to-slow MHC isoform transition during regeneration. Hypoxia alters the oxidative capacity of intact muscle and delays its recovery in regenerated muscle; however, this adaptation to hypoxia was independent of the studied regulators of mitochondrial turn-over.

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Year:  2014        PMID: 24385110     DOI: 10.1007/s11010-013-1952-8

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  40 in total

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5.  Fibre-type specificity of interleukin-6 gene transcription during muscle contraction in rat: association with calcineurin activity.

Authors:  Sébastien Banzet; Nathalie Koulmann; Nadine Simler; Olivier Birot; Hervé Sanchez; Rachel Chapot; André Peinnequin; Xavier Bigard
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Review 7.  Effect of hypobaric hypoxia on rat soleus muscle fibers and their innervating motoneurons: a review.

Authors:  A Ishihara; K Itoh; M Itoh; C Hirofuji
Journal:  Jpn J Physiol       Date:  2000-12

8.  Recovery of contractile and metabolic phenotypes in regenerating slow muscle after notexin-induced or crush injury.

Authors:  E Fink; D Fortin; B Serrurier; R Ventura-Clapier; A X Bigard
Journal:  J Muscle Res Cell Motil       Date:  2003       Impact factor: 2.698

9.  Calcium signalling in the regulation of PGC-1alpha, PDK4 and HKII mRNA expression.

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Review 10.  Response of skeletal muscle mitochondria to hypoxia.

Authors:  Hans Hoppeler; Michael Vogt; Ewald R Weibel; Martin Flück
Journal:  Exp Physiol       Date:  2003-01       Impact factor: 2.969

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Review 3.  Skeletal Muscle Fiber Type in Hypoxia: Adaptation to High-Altitude Exposure and Under Conditions of Pathological Hypoxia.

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5.  Activation of the Hippo Pathway in Rana sylvatica: Yapping Stops in Response to Anoxia.

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