Literature DB >> 31696230

Expression profiling in exercised mdx suggests a role for extracellular proteins in the dystrophic muscle immune response.

Chantal A Coles1,2, Lavinia Gordon1, Liam C Hunt1, Tracie Webster3, Adam T Piers1,2, Christopher Kintakas1,4, Keryn Woodman1,2, Su L Touslon2, Gayle M Smythe5, Jason D White1,2, Shireen R Lamandé1,6.   

Abstract

Duchenne muscular dystrophy (DMD) is a lethal muscle wasting disorder caused by mutations in the DMD gene that leads to the absence or severe reduction of dystrophin protein in muscle. The mdx mouse, also dystrophin deficient, is the model most widely used to study the pathology and test potential therapies, but the phenotype is milder than human DMD. This limits the magnitude and range of histological damage parameters and molecular changes that can be measured in pre-clinical drug testing. We used 3 weeks of voluntary wheel running to exacerbate the mdx phenotype. In mdx mice, voluntary exercise increased the amount of damaged necrotic tissue and macrophage infiltration. Global gene expression profiling revealed that exercise induced additional and larger gene expression changes in mdx mice and the pathways most impacted by exercise were all related to immune function or cell-extracellular matrix (ECM) interactions. When we compared the matrisome and inflammation genes that were dysregulated in mdx with those commonly differentially expressed in DMD, we found the exercised mdx molecular signature more closely resembled that of DMD. These gene expression changes in the exercised mdx model thus provide more scope to assess the effects of pre-clinical treatments. Our gene profiling comparisons also highlighted upregulation of ECM proteins involved in innate immunity pathways, proteases that can release them, downstream receptors and signaling molecules in exercised mdx and DMD, suggesting that the ECM could be a major source of pro-inflammatory molecules that trigger and maintain the immune response in dystrophic muscle.
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Year:  2020        PMID: 31696230     DOI: 10.1093/hmg/ddz266

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  6 in total

1.  The Donnan-dominated resting state of skeletal muscle fibers contributes to resilience and longevity in dystrophic fibers.

Authors:  Catherine E Morris; Joshua J Wheeler; Béla Joos
Journal:  J Gen Physiol       Date:  2021-11-03       Impact factor: 4.000

2.  Resveratrol Promotes Hypertrophy in Wildtype Skeletal Muscle and Reduces Muscle Necrosis and Gene Expression of Inflammatory Markers in Mdx Mice.

Authors:  Keryn G Woodman; Chantal A Coles; Shireen R Lamandé; Jason D White
Journal:  Molecules       Date:  2021-02-06       Impact factor: 4.411

Review 3.  The new challenge of "exercise + X″ therapy for Duchenne muscular dystrophy-Individualized identification of exercise tolerance and precise implementation of exercise intervention.

Authors:  Yuhui Su; Yafeng Song
Journal:  Front Physiol       Date:  2022-08-05       Impact factor: 4.755

4.  Identification of the Exercise and Time Effects on Human Skeletal Muscle through Bioinformatics Methods.

Authors:  Mufang Feng; Jie Ji; Xiaoliu Li; Xinming Ye
Journal:  Genet Res (Camb)       Date:  2022-08-21       Impact factor: 1.375

5.  Treatment of Dystrophic mdx Mice with an ADAMTS-5 Specific Monoclonal Antibody Increases the Ex Vivo Strength of Isolated Fast Twitch Hindlimb Muscles.

Authors:  Alex B Addinsall; Leonard G Forgan; Natasha L McRae; Rhys W Kelly; Penny L McDonald; Bryony McNeill; Daniel R McCulloch; Nicole Stupka
Journal:  Biomolecules       Date:  2020-03-07

6.  Beneficial impacts of neuromuscular electrical stimulation on muscle structure and function in the zebrafish model of Duchenne muscular dystrophy.

Authors:  Elisabeth A Kilroy; Amanda C Ignacz; Kaylee L Brann; Claire E Schaffer; Devon Varney; Sarah S Alrowaished; Kodey J Silknitter; Jordan N Miner; Ahmed Almaghasilah; Tashawna L Spellen; Alexandra D Lewis; Karissa Tilbury; Benjamin L King; Joshua B Kelley; Clarissa A Henry
Journal:  Elife       Date:  2022-03-24       Impact factor: 8.140

  6 in total

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