Dynamic Epicardial Contribution to Cardiac Interstitial c-Kit and Sca1 Cellular Fractions

C Pogontke, J A Guadix,A M Sánchez-Tévar,R Muñoz-Chápuli, A Ruiz-Villalba,J M Pérez-Pomares

FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY(2022)

引用 0|浏览13
暂无评分
摘要
Background: The cardiac interstitial cellular fraction is composed of multiple cell types. Some of these cells are known to express some well-known stem cell markers such as c-Kit and Sca1, but they are no longer accepted to be true cardiac stem cells. Although their existence in the cardiac interstitium has not been disputed, their dynamic throughout development, specific embryonic origin, and potential heterogeneity remain unknown. In this study, we hypothesized that both c-Kit(POS) and Sca1(POS) cardiac interstitial cell (CIC) subpopulations are related to the Wilms' tumor 1 (Wt1) epicardial lineage.Methods: In this study, we have used genetic cell lineage tracing methods, immunohistochemistry, and FACS techniques to characterize cardiac c-Kit(POS) and Sca1(POS) cells.Results: Our data show that approximately 50% of cardiac c-Kit(POS) cells are derived from the Wt1-lineage at E15.5. This subpopulation decreased along with embryonic development, disappearing from P7 onwards. We found that a large proportion of cardiac c-Kit(POS) cells express specific markers strongly suggesting they are blood-borne cells. On the contrary, the percentage of Sca1(POS) cells within the Wt1-lineage increases postnatally. In accordance with these findings, 90% of adult epicardial-derived endothelial cells and 60% of mEFSK4(POS) cardiac fibroblasts expressed Sca1.Conclusion: Our study revealed a minor contribution of the Wt1-epicardial lineage to c-Kit(POS) CIC from embryonic stages to adulthood. Remarkably, a major part of the adult epicardial-derived cell fraction is enriched in Sca1, suggesting that this subpopulation of CICs is heterogeneous from their embryonic origin. The study of this heterogeneity can be instrumental to the development of diagnostic and prognostic tests for the evaluation of cardiac homeostasis and cardiac interstitium response to pathologic stimuli.
更多
查看译文
关键词
cardiac interstitium, epicardium, blood-borne cells, Sca1+cells, c-Kit+ (CD117+) cells
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要