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Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy

Mutations in the DYSF gene, encoding dysferlin, cause muscular dystrophies in man. We compared 4 dysferlinopathic mouse strains: SJL/J and B10.SJL-Dysf(im)/AwaJ (B10.SJL), and A/J and B6.A-Dysf(prmd)/GeneJ (B6.A/J). The former but not the latter two are overtly myopathic and weaker at 3 months of ag...

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Autores principales: Roche, Joseph A., Ru, Lisa W., Bloch, Robert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303924/
https://www.ncbi.nlm.nih.gov/pubmed/22431915
http://dx.doi.org/10.1155/2012/134031
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author Roche, Joseph A.
Ru, Lisa W.
Bloch, Robert J.
author_facet Roche, Joseph A.
Ru, Lisa W.
Bloch, Robert J.
author_sort Roche, Joseph A.
collection PubMed
description Mutations in the DYSF gene, encoding dysferlin, cause muscular dystrophies in man. We compared 4 dysferlinopathic mouse strains: SJL/J and B10.SJL-Dysf(im)/AwaJ (B10.SJL), and A/J and B6.A-Dysf(prmd)/GeneJ (B6.A/J). The former but not the latter two are overtly myopathic and weaker at 3 months of age. Following repetitive large-strain injury (LSI) caused by lengthening contractions, all except B6.A/J showed ~40% loss in contractile torque. Three days later, torque in SJL/J, B10.SJL and controls, but not A/J, recovered nearly completely. B6.A/J showed ~30% torque loss post-LSI and more variable recovery. Pre-injury, all dysferlinopathic strains had more centrally nucleated fibers (CNFs) and all but A/J showed more inflammation than controls. At D3, all dysferlinopathic strains showed increased necrosis and inflammation, but not more CNFs; controls were unchanged. Dystrophin-null DMD(mdx) mice showed more necrosis and inflammation than all dysferlin-nulls. Torque loss and inflammation on D3 across all strains were linearly related to necrosis. Our results suggest that (1) dysferlin is not required for functional recovery 3 days after LSI; (2) B6.A/J mice recover from LSI erratically; (3) SJL/J and B10.SJL muscles recover rapidly, perhaps due to ongoing myopathy; (4) although they recover function to different levels, all 4 dysferlinopathic strains show increased inflammation and necrosis 3 days after LSI.
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spelling pubmed-33039242012-03-19 Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy Roche, Joseph A. Ru, Lisa W. Bloch, Robert J. J Biomed Biotechnol Research Article Mutations in the DYSF gene, encoding dysferlin, cause muscular dystrophies in man. We compared 4 dysferlinopathic mouse strains: SJL/J and B10.SJL-Dysf(im)/AwaJ (B10.SJL), and A/J and B6.A-Dysf(prmd)/GeneJ (B6.A/J). The former but not the latter two are overtly myopathic and weaker at 3 months of age. Following repetitive large-strain injury (LSI) caused by lengthening contractions, all except B6.A/J showed ~40% loss in contractile torque. Three days later, torque in SJL/J, B10.SJL and controls, but not A/J, recovered nearly completely. B6.A/J showed ~30% torque loss post-LSI and more variable recovery. Pre-injury, all dysferlinopathic strains had more centrally nucleated fibers (CNFs) and all but A/J showed more inflammation than controls. At D3, all dysferlinopathic strains showed increased necrosis and inflammation, but not more CNFs; controls were unchanged. Dystrophin-null DMD(mdx) mice showed more necrosis and inflammation than all dysferlin-nulls. Torque loss and inflammation on D3 across all strains were linearly related to necrosis. Our results suggest that (1) dysferlin is not required for functional recovery 3 days after LSI; (2) B6.A/J mice recover from LSI erratically; (3) SJL/J and B10.SJL muscles recover rapidly, perhaps due to ongoing myopathy; (4) although they recover function to different levels, all 4 dysferlinopathic strains show increased inflammation and necrosis 3 days after LSI. Hindawi Publishing Corporation 2012 2012-02-06 /pmc/articles/PMC3303924/ /pubmed/22431915 http://dx.doi.org/10.1155/2012/134031 Text en Copyright © 2012 Joseph A. Roche et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Roche, Joseph A.
Ru, Lisa W.
Bloch, Robert J.
Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title_full Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title_fullStr Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title_full_unstemmed Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title_short Distinct Effects of Contraction-Induced Injury In Vivo on Four Different Murine Models of Dysferlinopathy
title_sort distinct effects of contraction-induced injury in vivo on four different murine models of dysferlinopathy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303924/
https://www.ncbi.nlm.nih.gov/pubmed/22431915
http://dx.doi.org/10.1155/2012/134031
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