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Updated: Aug 7, 2026

Embryonic Stem Cell-Derived Endothelial Cells for Treatment of Hindlimb Ischemia
Published on: January 23, 2009
Stem cell therapy for ischemic heart disease: beginning or end of the road?
Christof Stamm1, Andreas Liebold, Gustav Steinhoff
1Department of Cardiac Surgery, University of Rostock, Germany. christof.stamm@med.uni-rostock.de
Insights
Cardiac stem cell therapy shows promise for heart failure post-myocardial infarction. While challenges remain, clinical trials suggest autologous bone marrow progenitor cells are feasible and safe, improving heart function.
Area of Science:
- Regenerative Medicine
- Cardiology
- Stem Cell Biology
Background:
- Myocardial infarction often leads to heart failure, with limited therapeutic options beyond transplantation.
- Current treatments focus on managing reduced heart function, highlighting the need for novel approaches.
- Cardiac stem cell therapy offers potential for myocardial repair and improved cardiac function.
Purpose of the Study:
- To review the scientific basis of cardiac stem cell therapy from a clinical perspective.
- To discuss challenges in translating stem cell therapy into clinical practice.
- To evaluate the feasibility, safety, and efficacy of progenitor cell administration for ischemic heart disease.
Main Methods:
- Review of early reports on stem cell-induced myocardial repair in animal models.
- Analysis of clinical pilot trials investigating autologous bone marrow progenitor cells.
- Evaluation of data from controlled trials on cell-treated patients with ischemic heart disease.
Main Results:
- Stem/progenitor cells promote angiogenesis in ischemic myocardium.
- Initial enthusiasm for hematopoietic stem cell plasticity has waned; mesenchymal stem cells show more documented myogenic potential.
- Clinical trials demonstrate feasibility and safety of autologous bone marrow progenitor cell delivery.
- Controlled trials indicate a trend towards improved heart function in cell-treated patients.
Conclusions:
- Cardiac stem cell therapy holds promise for treating heart failure following myocardial infarction.
- While challenges in cell source, type, number, and application persist, clinical translation is advancing.
- Autologous bone marrow progenitor cells are a feasible and safe option, with early efficacy data suggesting functional benefits.
Abstract:
Despite improvements in emergency treatment, myocardial infarction is often the beginning of a downward spiral leading to congestive heart failure. Other than heart transplantation, current therapeutic means aim at enabling the organism to survive with a heart that is working at a fraction of its original capacity. It is therefore no surprise that cardiac stem cell therapy has raised many hopes. However, neither the ideal source and type of stem cell nor the critical cell number and mode of application have been defined so far. Early reports on myocardial repair by adult bone marrow stem cells from rodent models promoted an unparalleled boost of clinical and experimental cell therapy studies. The phenomenon of stem/progenitor cell-induced angiogenesis in ischemic myocardium has ever since been reproduced by numerous groups in a variety of small and large animal models. Myogenesis, however, is an altogether different matter. Many of the initial clinical studies were fueled by the suggestion that early hematopoietic stem cells have a plasticity high enough to enable cross-lineage differentiation into cells of cardiomyocyte phenotype, but the initial enthusiasm has largely faded. The myogenic potential of stroma cell-derived mesenchymal stem cells is much better documented in animal models, but transfer to the clinical setting faces a variety of obstacles. In clinical pilot trials, we and others have demonstrated the feasibility and safety of administering progenitor cells derived from autologous bone marrow to the myocardium of patients with ischemic heart disease. Clinical efficacy data are still rare, but the few controlled trials that have been completed uniformly show a tendency towards better heart function in cell-treated patients. This review is an attempt to describe the scientific basis for cardiac cell therapy from the point of view of the clinician, focusing on problems that arise with beginning translation into the clinical setting.
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