| Literature DB >> 24368419 |
Andrea Henriques-Pons1, Qing Yu, Sree Rayavarapu, Tatiana V Cohen, Beryl Ampong, Hee Jae Cha, Vanessa Jahnke, Jack Van der Meulen, Daqing Wang, Weiwen Jiang, Ekambar R Kandimalla, Sudhir Agrawal, Chistopher F Spurney, Kanneboyina Nagaraju.
Abstract
Although the cause of Duchenne muscular dystrophy (DMD) is known, the specific factors that initiate and perpetuate disease progression are not well understood. We hypothesized that leaky dystrophin-deficient skeletal muscle releases endogenous danger signals (TLR ligands), which bind to Toll-like receptors (TLRs) on muscle and immune cells and activate downstream processes that facilitate degeneration and regeneration in dystrophic skeletal muscle. Here, we demonstrate that dystrophin-deficient mouse muscle cells show increased expression of several cell-surface and endosomal TLRs. In vitro screening identified ssRNA as a relevant endogenous TLR7 ligand. TLR7 activation led to myd88-dependent production of pro-inflammatory cytokines in dystrophin-deficient muscle cells, and cause significant degeneration/regeneration in vivo in mdx mouse muscle. Also, knockout of the central TLR adaptor protein, myd88 in mdx mice significantly improved skeletal and cardiac muscle function. Likewise, proof-of-concept experiments showed that treating young mdx mice with a TLR7/9 antagonist significantly reduced skeletal muscle inflammation and increased muscle force, suggesting that blocking this pathway may have therapeutic potential for DMD.Entities:
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Year: 2013 PMID: 24368419 PMCID: PMC3990161 DOI: 10.1093/hmg/ddt656
Source DB: PubMed Journal: Hum Mol Genet ISSN: 0964-6906 Impact factor: 6.150