Senescence dynamics define therapeutic windows for Duchenne muscular dystrophy in DBA/2-mdx mice

Aina Calls-Cobos1,2, Aida Beà Tàrrega1,2, Andrés Cisneros1,2

  • 1Altos Labs, San Diego Institue of Science, San Diego, USA.

Skeletal Muscle
|May 2, 2026
PubMed
Abstract

Insights

Cellular senescence drives Duchenne muscular dystrophy (DMD) muscle damage. Senolytic therapy timing is crucial, with early intervention improving skeletal muscle function and late intervention benefiting cardiac health.

Area of Science:

  • Biomedical Science
  • Cellular Biology
  • Musculoskeletal Research

Background:

  • Duchenne muscular dystrophy (DMD) involves progressive muscle degeneration, inflammation, and fibrosis.
  • Cellular senescence is implicated in chronic muscle damage in DMD, but its role and therapeutic potential are not fully understood.

Purpose of the Study:

  • To investigate the temporal dynamics of cellular senescence in DMD.
  • To evaluate the efficacy of senolytic therapy in a mouse model of DMD.

Main Methods:

  • Analyzed senescent cell burden in skeletal and cardiac muscles of DBA/2-mdx mice.
  • Administered dasatinib and quercetin (D+Q) senolytics during early or late disease stages.
  • Assessed muscle strength, cardiac function, fibrosis, and gene expression changes.

Main Results:

  • Senescent cells peaked early in skeletal muscle and late in cardiac muscle.
  • Early D+Q treatment improved skeletal muscle strength, reduced fibrosis, and enhanced fiber size.
  • Late D+Q treatment reduced cardiac senescence and fibrosis but did not improve skeletal muscle pathology.

Conclusions:

  • Cellular senescence is a dynamic, targetable feature in DMD with tissue- and age-specific patterns.
  • Temporally optimized senolytic strategies may complement existing DMD treatments.