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Extracellular microRNAs are dynamic non-vesicular biomarkers of muscle turnover
Author(s) -
Thomas C. Roberts,
Caroline Godfrey,
Graham McClorey,
Pieter Vader,
Deborah A. Briggs,
Chris Gardiner,
Yoshitsugu Aoki,
I L Sargent,
Jennifer E. Morgan,
Matthew J. A. Wood
Publication year - 2013
Publication title -
nucleic acids research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 9.008
H-Index - 537
eISSN - 1362-4954
pISSN - 0305-1048
DOI - 10.1093/nar/gkt724
Subject(s) - biology , extracellular , dystrophin , duchenne muscular dystrophy , skeletal muscle , microrna , myogenin , muscular dystrophy , microbiology and biotechnology , itga7 , mdx mouse , extracellular vesicles , extracellular matrix , extracellular vesicle , microvesicles , myocyte , myogenesis , endocrinology , genetics , gene
Extracellular microRNAs (miRNAs) are promising biomarkers of the inherited muscle wasting condition Duchenne muscular dystrophy, as they allow non-invasive monitoring of either disease progression or response to therapy. In this study, serum miRNA profiling reveals a distinct extracellular miRNA signature in dystrophin-deficient mdx mice, which shows profound dose-responsive restoration following dystrophin rescue. Extracellular dystrophy-associated miRNAs (dystromiRs) show dynamic patterns of expression that mirror the progression of muscle pathology in mdx mice. Expression of the myogenic miRNA, miR-206 and the myogenic transcription factor myogenin in the tibialis anterior muscle were found to positively correlate with serum dystromiR levels, suggesting that extracellular miRNAs are indicators of the regenerative status of the musculature. Similarly, extracellular dystromiRs were elevated following experimentally-induced skeletal muscle injury and regeneration in non-dystrophic mice. Only a minority of serum dystromiRs were found in extracellular vesicles, whereas the majority were protected from serum nucleases by association with protein/lipoprotein complexes. In conclusion, extracellular miRNAs are dynamic indices of pathophysiological processes in skeletal muscle.

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