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Published on: January 21, 2018
Cell therapy for heart failure: a comprehensive overview of experimental and clinical studies, current challenges,
Santosh K Sanganalmath1, Roberto Bolli
1Division of Cardiovascular Medicine and Institute of Molecular Cardiology, University of Louisville, KY, USA.
Insights
Stem cell therapy offers potential for heart failure (HF) myocardial regeneration, addressing the root cause of cardiac tissue loss. While promising, further research is needed to resolve key issues before clinical effectiveness is established.
Area of Science:
- Regenerative Medicine
- Cardiology
- Stem Cell Biology
Background:
- Heart failure (HF) prognosis remains poor despite advances; current treatments are palliative and do not regenerate lost cardiac tissue.
- Stem cell therapy presents a paradigm shift, aiming for myocardial regeneration rather than just damage control in HF.
- Research since 1998 shows various stem cells can improve cardiac function and reduce infarct size in preclinical and clinical HF studies.
Purpose of the Study:
- To critically review experimental and clinical studies on stem/progenitor cells for chronic heart failure (HF).
- To discuss current controversies, unresolved issues, challenges, and future directions in stem cell therapy for HF.
Main Methods:
- Comprehensive review of preclinical and clinical research on stem cell use in heart failure.
- Focus on studies investigating stem cell efficacy in chronic HF settings.
Main Results:
- Numerous studies support stem cell potential to improve cardiac function and reduce infarct size in HF.
- No stem cell therapy has been conclusively proven effective to date.
Conclusions:
- Stem cell therapy holds promise for myocardial regeneration in HF, a novel approach to treating the underlying cause.
- Significant challenges remain, including understanding mechanisms, optimizing cell types, dosage, delivery, and ensuring long-term engraftment for effective HF treatment.
Abstract:
Despite significant therapeutic advances, the prognosis of patients with heart failure (HF) remains poor, and current therapeutic approaches are palliative in the sense that they do not address the underlying problem of the loss of cardiac tissue. Stem cell-based therapies have the potential to fundamentally transform the treatment of HF by achieving what would have been unthinkable only a few years ago-myocardial regeneration. For the first time since cardiac transplantation, a therapy is being developed to eliminate the underlying cause of HF, not just to achieve damage control. Since the initial report of cell therapy (skeletal myoblasts) in HF in 1998, research has proceeded at lightning speed, and numerous preclinical and clinical studies have been performed that support the ability of various stem cell populations to improve cardiac function and reduce infarct size in both ischemic and nonischemic cardiomyopathy. Nevertheless, we are still at the dawn of this therapeutic revolution. Many important issues (eg, mechanism(s) of action of stem cells, long-term engraftment, optimal cell type(s), and dose, route, and frequency of cell administration) remain to be resolved, and no cell therapy has been conclusively shown to be effective. The purpose of this article is to critically review the large body of work performed with respect to the use of stem/progenitor cells in HF, both at the experimental and clinical levels, and to discuss current controversies, unresolved issues, challenges, and future directions. The review focuses specifically on chronic HF; other settings (eg, acute myocardial infarction, refractory angina) are not discussed.
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