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Updated: Jan 2, 2026

Direct Reprogramming of Human Fibroblasts into Myoblasts to Investigate Therapies for Neuromuscular Disorders
Published on: April 3, 2021
Myoblast transfer in Duchenne muscular dystrophy
G Karpati1, D Ajdukovic, D Arnold
1Montreal Neurological Institute, Quebec, Canada.
Myoblast transfer therapy for Duchenne muscular dystrophy is safe but showed poor therapeutic efficiency in patients. Future strategies may improve myoblast engraftment and treatment outcomes.
Area of Science:
- Biomedical Engineering
- Regenerative Medicine
- Muscle Biology
Background:
- Duchenne muscular dystrophy (DMD) is a severe genetic disorder characterized by progressive muscle degeneration.
- Myoblast transfer therapy (MTT) has been explored as a potential treatment for DMD, aiming to replace damaged muscle fibers with healthy donor cells.
Purpose of the Study:
- To evaluate the safety and therapeutic efficiency of myoblast transfer in patients with Duchenne muscular dystrophy.
- To assess the engraftment and functional contribution of transplanted myoblasts in DMD muscle.
Main Methods:
- Eight DMD patients underwent myoblast transfer into one biceps muscle, with the contralateral biceps serving as a placebo control.
- Donor myoblasts were derived from paternal muscle biopsies, cultured, purified, and screened for contamination.
- Patients received cyclophosphamide for immunosuppression (6 or 12 months); the procedure was blinded.
Main Results:
- Myoblast transfer was found to be safe, with no serious complications reported.
- Therapeutic efficiency was poor, evidenced by minimal improvements in maximal voluntary force, dystrophin content, and MRI findings.
- No detectable donor-derived DNA or dystrophin messenger RNA was found in the injected muscle tissue.
Conclusions:
- Myoblast transfer is a safe procedure for Duchenne muscular dystrophy patients.
- Current protocols demonstrate poor therapeutic efficacy, necessitating further research into optimizing myoblast engraftment.
- Strategies such as using younger cells or employing myonecrotic and basal laminal fenestrating agents may enhance myoblast take and therapeutic outcomes.
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