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  4. N-Acetylcysteine Reduces Skeletal Muscles Oxidative Stress And Improves Grip Strength In Dysferlin-Deficient Bla/J Mice
 
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N-Acetylcysteine Reduces Skeletal Muscles Oxidative Stress And Improves Grip Strength In Dysferlin-Deficient Bla/J Mice

Date Issued
2020-06-16
Author(s)
Cárdenas, Ana  
Facultad de Ciencias  
Jara, Carlos  
Facultad de Medicina  
Rodríguez, Viviana  
Facultad de Ciencias Sociales  
Paz García-Campos
Ximena Báez‐Matus
Marilyn Paz-Araos
César Astorga
A. Luis
Jorge A. Bevilacqua
Pablo Caviedes
DOI
10.3390/ijms21124293
WoS ID
WOS:000554623800001
Abstract
Dysferlinopathy is an autosomal recessive muscular dystrophy resulting from mutations in the dysferlin gene. Absence of dysferlin in the sarcolemma and progressive muscle wasting are hallmarks of this disease. Signs of oxidative stress have been observed in skeletal muscles of dysferlinopathy patients, as well as in dysferlin-deficient mice. However, the contribution of the redox imbalance to this pathology and the efficacy of antioxidant therapy remain unclear. Here, we evaluated the effect of 10 weeks diet supplementation with the antioxidant agent N-acetylcysteine (NAC, 1%) on measurements of oxidative damage, antioxidant enzymes, grip strength and body mass in 6 months-old dysferlin-deficient Bla/J mice and wild-type (WT) C57 BL/6 mice. We found that quadriceps and gastrocnemius muscles of Bla/J mice exhibit high levels of lipid peroxidation, protein carbonyls and superoxide dismutase and catalase activities, which were significantly reduced by NAC supplementation. By using the Kondziela’s inverted screen test, we further demonstrated that NAC improved grip strength in dysferlin deficient animals, as compared with non-treated Bla/J mice, without affecting body mass. Together, these results indicate that this antioxidant agent improves skeletal muscle oxidative balance, as well as muscle strength and/or resistance to fatigue in dysferlin-deficient animals.
Subjects

Biochemistry And Mole...

Chemistry, Multidisci...

Catalysis

Computer Science Appl...

Inorganic Chemistry

Medicine

Molecular Biology

Organic Chemistry

Physical And Theoreti...

Spectroscopy

OCDE Subjects

Natural Sciences::Phy...

Quartile (Date Issued)
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