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Published on: January 25, 2019
Cardiac Stem Cells for Myocardial Regeneration: They Are Not Alone
Yin Yee Leong1, Wai Hoe Ng1, Georgina M Ellison-Hughes2,3
1Advanced Medical and Dental Institute, Universiti Sains Malaysia, Penang, Malaysia.
Insights
Cardiac regenerative medicine explores stem cells for heart failure. Combining different stem cell types enhances heart repair more effectively than single-cell treatments in animal models.
Area of Science:
- Cardiology
- Regenerative Medicine
- Stem Cell Biology
Background:
- Heart failure is a leading global cause of mortality.
- Cardiac regenerative medicine aims to repair heart damage using stem cells.
- Current challenges include stem cell survival, engraftment, and functional integration.
Purpose of the Study:
- To review stem cell candidates for heart regeneration.
- To summarize findings on stem cell interactions in cardiac repair.
- To explore potential synergistic effects of combined stem cell therapies.
Main Methods:
- Review of existing literature on stem cell therapies for heart failure.
- Analysis of preclinical and clinical trial data.
- Focus on stem cell survival, phenotype retention, and in vivo activation.
Main Results:
- Single-cell therapies face challenges in achieving significant cardiac regeneration.
- Co-administration of multiple stem cell types shows enhanced regeneration in animal models.
- Interactions between various stem cells and the extracellular matrix are crucial for repair.
Conclusions:
- Combined stem cell strategies may offer a more effective approach to cardiac regeneration.
- Further research is needed to optimize multi-cell therapies for heart failure.
- Understanding stem cell interactions is key to advancing cardiac regenerative medicine.
Abstract:
Heart failure is the number one killer worldwide with ~50% of patients dying within 5 years of prognosis. The discovery of stem cells, which are capable of repairing the damaged portion of the heart, has created a field of cardiac regenerative medicine, which explores various types of stem cells, either autologous or endogenous, in the hope of finding the "holy grail" stem cell candidate to slow down and reverse the disease progression. However, there are many challenges that need to be overcome in the search of such a cell candidate. The ideal cells have to survive the harsh infarcted environment, retain their phenotype upon administration, and engraft and be activated to initiate repair and regeneration in vivo. Early bench and bedside experiments mostly focused on bone marrow-derived cells; however, heart regeneration requires multiple coordinations and interactions between various cell types and the extracellular matrix to form new cardiomyocytes and vasculature. There is an observed trend that when more than one cell is coadministered and cotransplanted into infarcted animal models the degree of regeneration is enhanced, when compared to single-cell administration. This review focuses on stem cell candidates, which have also been tested in human trials, and summarizes findings that explore the interactions between various stem cells in heart regenerative therapy.
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