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Isolation, Characterization, and Differentiation of Cardiac Stem Cells from the Adult Mouse Heart
Published on: January 7, 2019
Heterogeneity of Adult Cardiac Stem Cells
Mariangela Scalise1, Fabiola Marino1, Eleonora Cianflone1
1Molecular and Cellular Cardiology Laboratory, Department of Experimental and Clinical Medicine, Magna Graecia University, Catanzaro, Italy.
Insights
The adult heart has cardiomyocyte renewal and cardiac stem cells (CSCs) for repair, but their regenerative significance after injury remains debated. Research reviews CSC biology and their role in heart homeostasis and repair.
Area of Science:
- Cardiovascular Biology
- Regenerative Medicine
- Stem Cell Biology
Background:
- The traditional view of the adult heart lacking regenerative capacity has been challenged by evidence of cardiomyocyte renewal.
- Adult hearts harbor multipotent cardiac stem/progenitor cells (CSCs) that can refresh cardiac and vascular tissues post-injury.
- CSC transplantation shows regenerative potential for chronic heart failure (CHF).
Purpose of the Study:
- To critically review existing data on adult CSC biology.
- To evaluate the role of CSCs in myocardial cell homeostasis and repair.
- To address contradictory findings regarding CSCs' contribution to cardiomyocyte regeneration.
Main Methods:
- Literature review and critical analysis of published studies on cardiac stem cells.
- Examination of evidence for cardiomyocyte turnover and CSC function in adult hearts.
- Analysis of genetic fate mapping studies and cell marker heterogeneity.
Main Results:
- Evidence supports cardiomyocyte renewal and the existence of CSCs in the adult heart.
- The extent of endogenous cardiomyocyte regeneration and the significance of CSCs in extensive heart damage are disputed.
- Conflicting methodologies and cell marker heterogeneity have led to the identification of multiple cardiac progenitor populations.
Conclusions:
- While adult hearts exhibit some regenerative capacity via cardiomyocyte renewal and CSCs, their contribution to repairing significant damage is unclear.
- Contradictory findings necessitate further research to clarify the precise role and therapeutic potential of CSCs in cardiac repair.
- Understanding CSC heterogeneity and refining detection methods are crucial for advancing cardiac regenerative strategies.
Abstract:
Cardiac biology and heart regeneration have been intensively investigated and debated in the last 15 years. Nowadays, the well-established and old dogma that the adult heart lacks of any myocyte-regenerative capacity has been firmly overturned by the evidence of cardiomyocyte renewal throughout the mammalian life as part of normal organ cell homeostasis, which is increased in response to injury. Concurrently, reproducible evidences from independent laboratories have convincingly shown that the adult heart possesses a pool of multipotent cardiac stem/progenitor cells (CSCs or CPCs) capable of sustaining cardiomyocyte and vascular tissue refreshment after injury. CSC transplantation in animal models displays an effective regenerative potential and may be helpful to treat chronic heart failure (CHF), obviating at the poor/modest results using non-cardiac cells in clinical trials. Nevertheless, the degree/significance of cardiomyocyte turnover in the adult heart, which is insufficient to regenerate extensive damage from ischemic and non-ischemic origin, remains strongly disputed. Concurrently, different methodologies used to detect CSCs in situ have created the paradox of the adult heart harboring more than seven different cardiac progenitor populations. The latter was likely secondary to the intrinsic heterogeneity of any regenerative cell agent in an adult tissue but also to the confusion created by the heterogeneity of the cell population identified by a single cell marker used to detect the CSCs in situ. On the other hand, some recent studies using genetic fate mapping strategies claimed that CSCs are an irrelevant endogenous source of new cardiomyocytes in the adult. On the basis of these contradictory findings, here we critically reviewed the available data on adult CSC biology and their role in myocardial cell homeostasis and repair.
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