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Publication : Beneficial versus adverse effects of long-term use of clenbuterol in mdx mice.

First Author  Dupont-Versteegden EE Year  1995
Journal  Muscle Nerve Volume  18
Issue  12 Pages  1447-59
PubMed ID  7477069 Mgi Jnum  J:30387
Mgi Id  MGI:77900 Doi  10.1002/mus.880181216
Citation  Dupont-Versteegden EE, et al. (1995) Beneficial versus adverse effects of long-term use of clenbuterol in mdx mice. Muscle Nerve 18(12):1447-59
abstractText  Long-term administration of the beta 2-adrenergic agonist clenbuterol in mdx mice was used to test the hypothesis that increasing contractile protein content in skeletal muscle will decrease the progression of muscular dystrophy. C57BL/10SNJ (control) and dystrophic (mdx) mice were given clenbuterol (1.0-1.5 mg/kg body weight/day) in the drinking water. Ventilatory function and morphological and functional characteristics of soleus (SOL) and diaphragm (DIA) muscles were evaluated. Clenbuterol administration was associated with increased SOL muscle weight, and SOL muscle weight to body weight ratio in control and mdx mice at both ages. There was a 22% increase in myosin concentration of mdx DIA at 1 year of age, correlating well with increased normalized active tension in mdx DIA at this age. Also, absolute tetanic tension increased in control and mdx SOL with clenbuterol at both ages. Ventilatory function was significantly impaired in mdx mice at both ages and clenbuterol administration did not alleviate this. Clenbuterol treatment was associated with a 30-40% increase in fatigability in DIA and SOL muscles of control and mdx mice at both ages. Furthermore, 1-year-old mdx mice receiving clenbuterol exhibited deformities in hindlimbs and spine. These results suggest that long-term clenbuterol treatment has a positive effect on muscle growth and force generation, but has adverse side effects such as increased muscle fatigability and development of deformities.
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