Force and power output of fast and slow skeletal muscles from mdx mice 6‐28 months old

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Force and power output of fast and slow skeletal muscles from mdx mice 6-28 months old.

1. Differences in the effect of age on structure-function relationships of limb muscles of mdx (dystrophin null) and control mice have not been resolved. We tested the hypotheses that, compared with limb muscles from age-matched control mice, limb muscles of 6- to 17-month-old mdx mice are larger but weaker, with lower normalised force and power, whereas those from 24- to 28-month-old mdx mice ...

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Power output of fast and slow skeletal muscles of mdx (dystrophic) and control mice after clenbuterol treatment.

The mdx mouse is the most commonly used animal model for Duchenne muscular dystrophy. We tested the null hypothesis that 20 weeks of clenbuterol treatment ( approximately 2 mg kg-1 day-1) of mdx and control mice would have no effect on the absolute and specific force (Po, kN m-2) and absolute and normalised power output (W kg-1) of extensor digitorum longus (EDL) and soleus muscles. For mdx and...

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Negamycin-therapy in Skeletal and Cardiac Muscles of mdx Mice

The ability of aminoglycoside antibiotics to promote read-through of nonsense mutations has attracted interest in these drugs as potential therapeutic agents in genetic diseases. However, the toxicity of aminoglycoside antibiotics may result in severe side effects during long-term treatment. In this study, we report that negamycin, a dipeptide antibiotic, also restores dystrophin expression in ...

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Redox modulation of maximum force production of fast-and slow-twitch skeletal muscles of rats and mice.

We used intact fast-twitch extensor digitorum longus (EDL) and slow-twitch soleus muscles from rats and mice to test the hypothesis that exogenous application of an oxidant would increase maximum isometric force production (P(o)) of slow-twitch muscles to a greater extent than fast-twitch skeletal muscles. Exposure to an oxidant, hydrogen peroxide (H(2)O(2); 100 microM to 5 mM, 30 min), affecte...

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Hormonal Receptors in Skeletal Muscles of Dystrophic Mdx Mice

INTRODUCTION Several evidences show that muscles have an endocrine function. Glucocorticoid, estrogen, progesterone, and testosterone receptors have already been found in normal skeletal muscles, but not in dystrophic muscles. METHODS The gene expression of hormone receptors was compared between dystrophic and healthy muscles in mdx and C57BL6 mice strains. RESULTS The mdx mice showed a sig...

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ژورنال

عنوان ژورنال: The Journal of Physiology

سال: 2001

ISSN: 0022-3751,1469-7793

DOI: 10.1111/j.1469-7793.2001.00591.x