Generation of Cardiomyocytes From Vascular Adventitia-Resident Stem Cells
Subba Rao Mekala1, Philipp Wörsdörfer1, Jochen Bauer1
1From the Institute of Anatomy and Cell Biology II (S.R.M., P.W., J.B., O.S., N.W., L.R., K.L., G.E., C.K.K., F.E., V.P., S.K., S.E.).
Insights
Researchers identified vascular adventitia stem cells as a novel source for generating cardiomyocytes. These cells, supported by endothelial cells and macrophages, offer potential for cardiac repair after myocardial infarction.
Area of Science:
- Cardiovascular Biology
- Stem Cell Research
- Regenerative Medicine
Background:
- Regeneration of lost cardiomyocytes is crucial for treating heart failure.
- Endogenous cardiac regeneration remains limited, posing a therapeutic challenge for myocardial infarction.
- Identifying endogenous cardiomyocyte progenitors and their niche is essential for cardiac regeneration strategies.
Purpose of the Study:
- To investigate the vascular wall as a potential source of cardiac progenitor cells.
- To identify specific cell populations within the vascular wall capable of differentiating into cardiomyocytes.
- To explore the therapeutic potential of vascular adventitia-resident stem cells for cardiac repair.
Main Methods:
- Generation of spontaneously beating mouse aortic wall-derived cardiomyocytes without genetic manipulation.
- Isolation and characterization of Flk1+CD34+Sca-1-CD44- aortic wall-derived cells (AoCs).
- In vivo studies involving implantation of labeled AoCs into chick embryonic hearts and analysis of cells post-myocardial infarction in mice.
Main Results:
- A specific subpopulation of aortic wall-derived cells (Flk1+CD34+Sca-1-CD44-) generated cardiomyocytes, endothelial cells, and macrophages.
- Implanted AoCs acquired a cardiomyocyte-like phenotype (αSRA expression) in vivo.
- Coronary adventitial Flk1+ and CD34+ cells proliferated, migrated into the myocardium post-myocardial infarction, and expressed Isl-1+, indicating cardiovascular progenitor potential.
Conclusions:
- Flk1+CD34+ vascular adventitia-resident stem cells represent a novel endogenous source for cardiomyocyte generation.
- Endothelial cells and macrophages play a supportive role in this cardiomyocyte differentiation process.
- Targeting coronary adventitia-resident stem cells and supportive cells offers a new therapeutic avenue for cardiac regeneration and heart failure prevention.
Rationale:
Regeneration of lost cardiomyocytes is a fundamental unresolved problem leading to heart failure. Despite several strategies developed from intensive studies performed in the past decades, endogenous regeneration of heart tissue is still limited and presents a big challenge that needs to be overcome to serve as a successful therapeutic option for myocardial infarction.
Objective:
One of the essential prerequisites for cardiac regeneration is the identification of endogenous cardiomyocyte progenitors and their niche that can be targeted by new therapeutic approaches. In this context, we hypothesized that the vascular wall, which was shown to harbor different types of stem and progenitor cells, might serve as a source for cardiac progenitors.
Methods And Results:
We describe generation of spontaneously beating mouse aortic wall-derived cardiomyocytes without any genetic manipulation. Using aortic wall-derived cells (AoCs) of WT (wild type), αMHC (α-myosin heavy chain), and Flk1 (fetal liver kinase 1)-reporter mice and magnetic bead-associated cell sorting sorting of Flk1+ AoCs from GFP (green fluorescent protein) mice, we identified Flk1+CD (cluster of differentiation) 34+Sca-1 (stem cell antigen-1)-CD44- AoCs as the population that gives rise to aortic wall-derived cardiomyocytes. This AoC subpopulation delivered also endothelial cells and macrophages with a particular accumulation within the aortic wall-derived cardiomyocyte containing colonies. In vivo, cardiomyocyte differentiation capacity was studied by implantation of fluorescently labeled AoCs into chick embryonic heart. These cells acquired cardiomyocyte-like phenotype as shown by αSRA (α-sarcomeric actinin) expression. Furthermore, coronary adventitial Flk1+ and CD34+ cells proliferated, migrated into the myocardium after mouse myocardial infarction, and expressed Isl-1+ (insulin gene enhancer protein-1) indicative of cardiovascular progenitor potential.
Conclusions:
Our data suggest Flk1+CD34+ vascular adventitia-resident stem cells, including those of coronary adventitia, as a novel endogenous source for generating cardiomyocytes. This process is essentially supported by endothelial cells and macrophages. In summary, the therapeutic manipulation of coronary adventitia-resident cardiac stem and their supportive cells may open new avenues for promoting cardiac regeneration and repair after myocardial infarction and for preventing heart failure.
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