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Updated: Jul 8, 2026

Pluripotent Stem Cell Derived Cardiac Cells for Myocardial Repair
Published on: February 3, 2017
Skeletal muscle derived stem cells for myocardial repair
Husnain K Haider1, Lei Ye, Muhammad Ashraf
1Department of Pathology and Laboratory of Medicine, 231-Albert Sabin Way, University of Cincinnati Ohio-45267-0529, USA. haiderkh@ucmail.uc.edu
Insights
Skeletal muscle derived myoblasts (SkMs) show promise for heart cell therapy after myocardial infarction. Further research is needed to address challenges like cell survival and phenotype adoption for effective myocardial repair.
Area of Science:
- Regenerative Medicine
- Cardiovascular Research
- Biotechnology
Background:
- Heart failure following myocardial infarction presents significant therapeutic challenges due to myocyte death and cardiac remodeling.
- Limited endogenous repair mechanisms necessitate external interventions for effective myocardial repair.
Purpose of the Study:
- To review the merits and limitations of skeletal muscle derived myoblasts (SkMs) for heart cell therapy.
- To explore strategies for enhancing SkM efficacy in myocardial repair through genetic and pharmacological manipulation.
Main Methods:
- Analysis of pre-clinical studies and clinical trials (Phase I and II) on SkM engraftment for infarcted hearts.
- Review of genetic and pharmacological approaches to improve SkM therapeutic potential.
- Inclusion of recent patent reviews on SkM-based heart repair.
Main Results:
- SkM cell therapy has demonstrated safety and effectiveness in treating infarcted hearts.
- Key challenges include acute donor cell death, failure of SkMs to adopt a cardiac phenotype, and transient arrhythmias.
- Genetic and pharmacological modifications show potential for enhancing therapeutic efficacy.
Conclusions:
- SkMs offer a viable, cost-effective option for heart cell therapy.
- Addressing donor cell survival, phenotype plasticity, and arrhythmogenicity is crucial for widespread clinical application.
- Further optimization through genetic and pharmacological means is essential for maximizing SkM-based myocardial repair.
Abstract:
Treatment of patients with heart failure secondary to myocardial infarction remains a therapeutic challenge. Extensive myocyte death in the heart and post-ischemic remodeling accentuate progressive expansion of the scar area and compromise left ventricular contractile function. The scarcity of resident stem cells in the heart and limited proliferative capacity of adult cardiomyocytes warrant novel strategies of outside intervention to supplement the inept intrinsic repair mechanism. Heart cell therapy using patient's own skeletal muscle derived myoblasts (SkMs) provides a relatively simple and inexpensive therapeutic option. Phase-I and II clinical trials supported by plethora of pre-clinical studies have shown the safety and effectiveness of SkMs engraftment in the treatment of infarcted heart. However, before widespread application of this approach in the clinical settings, there remain some fundamental issues including extensive donor cell death during acute phase after SkMs engraftment, failure of SkMs to adopt cardiac phenotype and transient ventricular arrhythmias subsequent to SkMs transplantation which require serious considerations. This review will provide profound analysis of merits and limitations of SkMs as the choice cells for heart cell therapy and will summarize the potential of genetic and pharmacological manipulation SkMs to enhance their therapeutic efficacy for myocardial repair. Present article also includes recent patent review coverage on this topic.
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