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February 25, 2026The FASEB Journal0 citationsOpen Access

Senescent‐Like Myofibers Contribute to Anti‐Regenerative Cytokine Signaling in Duchenne Muscular Dystrophy

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MIMasanari IkedaYTYukie TanakaHSHidetoshi Sugihara

Key Points

  • The aim is to understand how p16 contributes to the worsening of muscle degeneration in Duchenne muscular dystrophy.
  • Performed RNA-seq analysis on DMD rat skeletal muscles to assess gene expression
  • Investigated the impact of p16 ablation on muscle regeneration using grafted extensor digitorum longus muscle
  • Evaluated changes in systemic blood cytokine profiles related to p16 expression
  • p16 ablation significantly improved muscle regeneration in grafted muscles of DMD rats
  • p16 was found to induce upregulation of cytokine gene expression in DMD skeletal muscles
  • Cytokines secreted by senescent-like myofibers were linked to the anti-regenerative environment in DMD

Abstract

Duchenne muscular dystrophy (DMD) is a genetic muscular disease characterized by progressive muscle degeneration. p16 is expressed in skeletal muscles and induces cellular senescence in a rat model of DMD, whereas its ablation enhances muscle regeneration. However, the mechanism underlying this phenomenon remains unclear. This study aimed to elucidate the mechanism for p16-induced DMD exacerbation. RNA-seq analysis revealed p16-dependent upregulation of cytokine gene expression in DMD rat skeletal muscles, which also altered the systemic blood cytokine profile. Furthermore, the effect of an altered humoral environment on muscle regeneration was assessed using the transplanted extensor digitorum longus muscle. Regeneration of grafted muscles from wild-type rats was suppressed in DMD rats but was significantly improved by p16 ablation. Notably, p16 was expressed in the myofibers of DMD rats, and enzymatically isolated myofibers from DMD rats also showed p16-dependent cytokine expression. Thus, cytokines secreted by senescent-like myofibers mediate the anti-regenerative niche in DMD rats, uncovering a novel mechanism for disease progression and potential therapeutic targets.

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Cite This Study

Ikeda et al. (2026) studied this question.

synapsesocial.com/papers/699e9152f5123be5ed04ebechttps://doi.org/10.1096/fj.202500098r
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