Literature DB >> 10903254

Severe mechanical dysfunction in pharyngeal muscle from adult mdx mice.

P Attal1, F Lambert, S Marchand-Adam, S Bobin, J C Pourny, D Chemla, Y Lecarpentier, C Coirault.   

Abstract

The mdx mouse is a widely used animal model of human muscular dystrophy. Although diaphragm muscle exhibits severe muscle weakness throughout the life of the animal, the limb muscle function of mdx mice spontaneously recovers by 6 mo of age. Pharyngeal dilator muscles such as sternohyoid (SH) contribute to upper airway patency during breathing. We hypothesized that SH muscle function was impaired in 6-mo-old mdx mice. Mechanical properties and myosin heavy chain (MHC) composition were investigated in isolated SH from 6-mo-old control (C, n = 10) and mdx (n = 10) mice. As compared with C, peak tetanic tension (Pmax) and maximum shortening velocity were 50% and 16% lower in mdx mice (p < 0.001 and p < 0.05, respectively). Peak mechanical power was lower in mdx than in C (19.0 +/- 3.2 versus 57.4 +/- 5.1 mW g(-)(1), p < 0.001). Both C and mdx SH were composed exclusively of fast myosin isoforms. As compared with C, mdx SH presented a higher proportion of IIX-MHC and a reduction in IIB-MHC (each p < 0.001). In conclusion, our results demonstrated severe SH muscle dysfunction in 6-mo-old mdx mice, that is, at a time when limb muscle function has recovered. Thus, SH muscle of the mdx mouse may be an excellent muscle for studying Duchenne muscular dystrophy.

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Year:  2000        PMID: 10903254     DOI: 10.1164/ajrccm.162.1.9905063-r2

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  4 in total

1.  Expression of HGF and IGF-1 during regeneration of masseter muscle in mdx mice.

Authors:  Hidemitsu Honda; Shinichi Abe; Ryo Ishida; Yutaka Watanabe; Osamu Iwanuma; Koji Sakiyama; Yoshinobu Ide
Journal:  J Muscle Res Cell Motil       Date:  2010-05-28       Impact factor: 2.698

2.  Activation of caspase 3, 9, 12, and Bax in masseter muscle of mdx mice during necrosis.

Authors:  A Honda; S Abe; E Hiroki; H Honda; O Iwanuma; N Yanagisawa; Y Ide
Journal:  J Muscle Res Cell Motil       Date:  2007-10-19       Impact factor: 2.698

3.  Loss of FHL1 induces an age-dependent skeletal muscle myopathy associated with myofibrillar and intermyofibrillar disorganization in mice.

Authors:  Andrea A Domenighetti; Pao-Hsien Chu; Tongbin Wu; Farah Sheikh; David S Gokhin; Ling T Guo; Ziyou Cui; Angela K Peter; Danos C Christodoulou; Michael G Parfenov; Joshua M Gorham; Daniel Y Li; Indroneal Banerjee; Xianyin Lai; Frank A Witzmann; Christine E Seidman; Jonathan G Seidman; Aldrin V Gomes; G Diane Shelton; Richard L Lieber; Ju Chen
Journal:  Hum Mol Genet       Date:  2013-08-23       Impact factor: 6.150

4.  N-acetylcysteine Decreases Fibrosis and Increases Force-Generating Capacity of mdx Diaphragm.

Authors:  David P Burns; Sarah E Drummond; Dearbhla Bolger; Amélie Coiscaud; Kevin H Murphy; Deirdre Edge; Ken D O'Halloran
Journal:  Antioxidants (Basel)       Date:  2019-11-24
  4 in total

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