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Updated: Jan 18, 2026

Induction of Endothelial Differentiation in Cardiac Progenitor Cells Under Low Serum Conditions
Published on: January 7, 2019
Heart-derived endogenous stem cells
Keiko Inouye1, Garrison White1, Sadia Khan1
1Department of Translational Research, College of Osteopathic Medicine of the Pacific, Western University of Health Sciences, Pomona, CA, 91766-1854, USA.
Insights
Resident cardiac-derived stromal cells (CSCs) show promise for heart repair after injury. This review explores various CSC types and their potential for regenerative cardiology, highlighting areas for clinical application.
Area of Science:
- Cardiovascular Research
- Regenerative Medicine
- Stem Cell Biology
Background:
- Regenerative cardiology aims to heal ischemic heart injury.
- Stem cell therapy shows potential but lacks ideal sources.
- Endogenous cardiac-derived stromal cells (CSCs) offer therapeutic advantages.
Purpose of the Study:
- To review the therapeutic potential of diverse endogenous CSCs for cardiac repair.
- To examine CSC phenotypes and their role in healing mechanisms.
- To identify areas for improving CSC translation to clinical practice.
Main Methods:
- Review of emerging research on endogenous CSCs.
- Analysis of CSCs' differentiation, paracrine signaling, and regenerative capabilities.
- Examination of specific CSC subtypes (e.g., c-kit+, Sca-1+, cardiosphere-derived cells).
Main Results:
- CSCs possess innate differentiation potential, especially into cardiomyocytes (CM).
- CSCs promote cardiac healing via angiogenesis, paracrine signaling, and cell replenishment.
- Diverse CSC phenotypes exist, each with unique regenerative properties.
Conclusions:
- Endogenous CSCs represent a promising cell source for regenerative cardiology.
- Further research into CSC clonogenicity and translational potential is needed.
- Optimizing CSC applications is crucial for clinical cardiac management.
Abstract:
Regenerative cardiology has emerged as a novel strategy to improve cardiac healing following ischemic injury. While stem-cell-mediated cardiac regeneration has garnered much attention as a promising strategy, its value remains debated owing to the lack of ideal stem cell source candidates. Resident/endogenous cardiac-derived stromal cells (CSCs) exhibit superior therapeutic potential due to their innate abilities to differentiate into cardiac cells, especially cardiomyocytes (CM). Emerging research has highlighted diverse endogenous CSCs phenotypes and sub-types as candidates for cardiac repair. Interestingly, CSCs promote healing through angiogenesis and regenerative paracrine signaling along with replenishing CM, and CM-like cells in the ischemic heart. Unfortunately, the clonogenic properties and translational potential of CSCs are minimally explored. This review examines the healing promise of a myriad CSCs such as c-kit + cardiac cells, Sca-1 + cells, cardiosphere-derived cells, side population cells, Bm1 + cells, cardiac atrial appendage cells, cardiac adipose cells, epicardial cells, and Isl1 + cells. Also, the review highlights the areas of improvement regarding the therapeutic applications of CSC to extrapolate into the clinical arena of cardiac management.
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