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Updated: Feb 1, 2026

Mitochondrial Isolation from Skeletal Muscle
Published on: March 30, 2011
Nuclear localized Akt limits skeletal muscle derived fibrotic signaling
Eleonora Guadagnin1, Debalina Bagchi1, Indranil Sinha2
1Department of Orthopedic Surgery, Boston, MA, USA.
Abstract:
Skeletal muscle regeneration following injury is a complex multi-stage process involving the recruitment of inflammatory cells, the activation of muscle resident fibroblasts, and the differentiation of activated myoblasts into myocytes. Dysregulation of these cellular processes is associated with ineffective myofiber repair and excessive deposition of extracellular matrix proteins leading to fibrosis. PI3K/Akt signaling is a critical integrator of intra- and intercellular signals connecting nutrient availability to cell survival and growth. Activation of the PI3K/Akt pathway in skeletal muscle leads to hypertrophic growth and a reversal of the changes in body composition associated with obesity and advanced age. Though the molecular mechanisms mediating these effects are incompletely understood, changes in paracrine signaling are thought to play a key role. Here, we utilized modified RNA to study the biological role of the transient translocation of Akt to the myonuclei of maturing myotubes. Using a conditioned medium model system, we show that ectopic myonuclear Akt suppresses fibrogenic paracrine signaling in response to oxidative stress, and that interventions that increase or restore myonuclear Akt may impair fibrosis.
Insights
Myonuclear Akt signaling suppresses fibrosis during skeletal muscle repair. Enhancing myonuclear Akt may prevent fibrotic changes, promoting better muscle regeneration.
Area of Science:
- Muscle regeneration
- Cellular signaling
- Fibrosis
Background:
- Skeletal muscle regeneration involves complex cellular processes.
- Dysregulation leads to fibrosis, hindering myofiber repair.
- PI3K/Akt signaling is crucial for muscle growth and survival.
Purpose of the Study:
- Investigate the role of Akt translocation to myonuclei in skeletal muscle.
- Understand Akt's function in regulating fibrogenic paracrine signaling.
Main Methods:
- Utilized modified RNA technology.
- Employed a conditioned medium model system.
- Studied ectopic myonuclear Akt in maturing myotubes.
Main Results:
- Ectopic myonuclear Akt suppresses fibrogenic paracrine signaling under oxidative stress.
- Increased or restored myonuclear Akt may inhibit fibrosis.
Conclusions:
- Myonuclear Akt plays a protective role against skeletal muscle fibrosis.
- Targeting myonuclear Akt could be a therapeutic strategy for muscle repair.
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