Skip to main navigation Skip to search Skip to main content

Inhibition of miR-25 ameliorates cardiac and skeletal muscle dysfunction in aged mdx/utrn haploinsufficient (+/−) mice

  • Sacha V. Kepreotis
  • , Jae Gyun Oh
  • , Mina Park
  • , Jimeen Yoo
  • , Cholong Lee
  • , Mark Mercola
  • , Roger J. Hajjar
  • , Dongtak Jeong

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Dystrophic cardiomyopathy is a significant feature of Duchenne muscular dystrophy (DMD). Increased cardiomyocyte cytosolic calcium (Ca2+) and interstitial fibrosis are major pathophysiological hallmarks that ultimately result in cardiac dysfunction. MicroRNA-25 (miR-25) has been identified as a suppressor of both sarcoplasmic reticulum calcium ATPase 2a (SERCA2a) and mothers against decapentaplegic homolog-7 (Smad7) proteins. In this study, we created a gene transfer using an miR-25 tough decoy (TuD) RNA inhibitor delivered via recombinant adeno-associated virus serotype 9 (AAV9) to evaluate the effect of miR-25 inhibition on cardiac and skeletal muscle function in aged dystrophin/utrophin haploinsufficient mice mdx/utrn (+/−), a validated transgenic murine model of DMD. We found that the intravenous delivery of AAV9 miR-25 TuD resulted in strong and stable inhibition of cardiac miR-25 levels, together with the restoration of SERCA2a and Smad7 expression. This was associated with the amelioration of cardiomyocyte interstitial fibrosis as well as recovered cardiac function. Furthermore, the direct quadricep intramuscular injection of AAV9 miR-25 TuD significantly restored skeletal muscle Smad7 expression, reduced tissue fibrosis, and enhanced skeletal muscle performance in mdx/utrn (+/−) mice. These results imply that miR-25 TuD gene transfer may be a novel therapeutic approach to restore cardiomyocyte Ca2+ homeostasis and abrogate tissue fibrosis in DMD.

Original languageEnglish
Article number102174
JournalMolecular Therapy Nucleic Acids
Volume35
Issue number2
DOIs
StatePublished - 11 Jun 2024

Keywords

  • Duchenne muscular dystrophy
  • MT: Non-coding RNAs
  • SERCA2a
  • Smad7
  • TuD
  • cardiac dysfunction
  • fibrosis
  • gene therapy
  • mdx/utrn (+/−) mouse
  • miR-25
  • skeletal muscle
  • tough decoy

Fingerprint

Dive into the research topics of 'Inhibition of miR-25 ameliorates cardiac and skeletal muscle dysfunction in aged mdx/utrn haploinsufficient (+/−) mice'. Together they form a unique fingerprint.

Cite this