HDAC inhibitors tune miRNAs in extracellular vesicles of dystrophic muscle-resident mesenchymal cells.
Martina SandonàSilvia ConsalviLuca TucciaroneMarco De BardiManuel ScimecaDaniela Francesca AngeliniValentina BuffaAdele D'AmicoEnrico Silvio BertiniSara CazzanigaPaolo BetticaMarina BouchéAntonella BongiovanniPier Lorenzo PuriValentina SacconePublished in: EMBO reports (2020)
We show that extracellular vesicles (EVs) released by mesenchymal cells (i.e., fibro-adipogenic progenitors-FAPs) mediate microRNA (miR) transfer to muscle stem cells (MuSCs) and that exposure of dystrophic FAPs to HDAC inhibitors (HDACis) increases the intra-EV levels of a subset of miRs, which cooperatively target biological processes of therapeutic interest, including regeneration, fibrosis, and inflammation. Increased levels of miR-206 in EVs released by FAPs of muscles from Duchenne muscular dystrophy (DMD) patients or mdx mice exposed to HDACi are associated with enhanced regeneration and decreased fibrosis. Consistently, EVs from HDACi-treated dystrophic FAPs can stimulate MuSC activation and expansion ex vivo, and promote regeneration, while inhibiting fibrosis and inflammation of dystrophic muscles, upon intramuscular transplantation in mdx mice, in vivo. AntagomiR-mediated blockade of individual miRs reveals a specific requirement of miR-206 for EV-induced expansion of MuSCs and regeneration of dystrophic muscles, and indicates that cooperative activity of HDACi-induced miRs accounts for the net biological effect of these EVs. These data point to pharmacological modulation of EV content as novel strategy for therapeutic interventions in muscular dystrophies.
Keyphrases
- stem cells
- duchenne muscular dystrophy
- cell proliferation
- induced apoptosis
- long non coding rna
- oxidative stress
- long noncoding rna
- cell cycle arrest
- diabetic rats
- high glucose
- cell therapy
- newly diagnosed
- muscular dystrophy
- end stage renal disease
- ejection fraction
- high fat diet induced
- signaling pathway
- physical activity
- bone marrow
- histone deacetylase
- patient safety
- drug induced
- type diabetes
- wound healing
- endoplasmic reticulum stress
- electronic health record
- mesenchymal stem cells
- liver fibrosis
- adipose tissue
- insulin resistance
- machine learning
- body composition
- artificial intelligence