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Updated: Jul 15, 2026

Induction of Endothelial Differentiation in Cardiac Progenitor Cells Under Low Serum Conditions
Published on: January 7, 2019
Stem cells and the regeneration of the aging cardiovascular system
Victoria L T Ballard1, Jay M Edelberg
1Department of Medicine, Weill Medical College of Cornell University, New York, USA.
Insights
Aging impairs cardiovascular stem cell function, hindering heart repair and increasing cardiovascular disease risk in older adults. Understanding these age-related changes is crucial for developing new regenerative therapies.
Area of Science:
- Cardiovascular Biology
- Regenerative Medicine
- Gerontology
Background:
- Cardiovascular disease (CVD) remains a leading cause of mortality despite therapeutic advances.
- Aging impairs endogenous cardiovascular repair mechanisms, increasing CVD risk.
- Cell-based therapies offer a potential alternative for treating CVD.
Purpose of the Study:
- To investigate the impact of aging on cardiovascular stem cell (CSC) and cardiovascular progenitor cell (CPC) function.
- To explore the role of age-associated CSC/CPC dysfunction in cardiovascular pathophysiology in the geriatric population.
Main Methods:
- Review of existing evidence on CSC/CPC function and aging.
- Analysis of in vivo experimental data regarding CSC/CPC capabilities.
- Correlation of age-related CSC/CPC changes with cardiovascular disease severity.
Main Results:
- Cardiovascular stem cells and progenitor cells, including endothelial progenitor cells, can regenerate heart and vascular tissues.
- Endogenous CSC/CPC activity is insufficient to prevent CVD in older individuals.
- Aging negatively affects CSC/CPC function, contributing to impaired repair in the aging heart.
Conclusions:
- Age-associated decline in CSC/CPC function is a significant factor in the increased severity of cardiovascular disease in the elderly.
- Targeting age-related CSC/CPC dysfunction may offer novel therapeutic strategies for cardiovascular repair.
Abstract:
It is well established that cardiovascular repair mechanisms become progressively impaired with age and that advanced age is itself a significant risk factor for cardiovascular disease. Although therapeutic developments have improved the prognosis for those with cardiovascular disease, mortality rates have nevertheless remained virtually unchanged in the last twenty years. Clearly, there is a need for alternative strategies for the treatment of cardiovascular disease. In recent years, the idea that the heart is capable of regeneration has raised the possibility that cell-based therapies may provide such an alternative to conventional treatments. Cells that have the potential to generate cardiomyocytes and vascular cells have been identified in both the adult heart and peripheral tissues, and in vivo experiments suggest that these cardiovascular stem cells and cardiovascular progenitor cells, including endothelial progenitor cells, are capable of replacing damaged myocardium and vascular tissues. Despite these findings, the endogenous actions of cardiovascular stem cells and cardiovascular progenitor cells appear to be insufficient to protect against cardiovascular disease in older individuals. Because recent evidence suggests that cardiovascular stem cells and cardiovascular progenitor cells are subject to age-associated changes that impair their function, these changes may contribute to the dysregulation of endogenous cardiovascular repair mechanisms in the aging heart and vasculature. Here we present the evidence for the impact of aging on cardiovascular stem cell/cardiovascular progenitor cell function and its potential importance in the increased severity of cardiovascular pathophysiology observed in the geriatric population.
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