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Updated: Jul 11, 2025

Isolation of Endocardial and Coronary Endothelial Cells from the Ventricular Free Wall of the Rat Heart
Published on: April 15, 2020
Endothelial heterogeneity and their relevance in cardiac development and coronary artery disease
1Cardiology Division, Department of Pathology, University of Pisa, Via Paradisa, 56124 Pisa, Italy.
Insights
Endothelial cells (ECs) exhibit heterogeneity in their secretory activity, releasing angiocrine factors (AFs) that influence tissue repair. Understanding EC heterogeneity is crucial for addressing endotheliopathy and coronary artery disease.
Area of Science:
- Vascular Biology
- Cellular Heterogeneity
- Endocrinology
Background:
- Endothelial cells (ECs) display significant structural and functional heterogeneity, impacting their secretory functions.
- The origins and regulatory mechanisms of this EC heterogeneity remain incompletely understood.
- ECs release paracrine factors, termed angiocrine factors (AFs), essential for tissue morphogenesis and repair.
Approach:
- This review discusses recent experimental findings on EC heterogeneity and AFs.
- Focuses on the role of AF heterogeneity in endotheliopathy.
- Examines the involvement in the pathogenesis of coronary artery disease.
Key Points:
- Tissue and organ-specific AF profiles reflect EC heterogeneity.
- AF heterogeneity influences EC responses to cardiovascular risk factors and pathological conditions.
- Endotheliopathy arises from dysregulated mechanisms governing EC and paracrine heterogeneity.
Conclusions:
- Investigating the cellular and molecular mechanisms regulating EC heterogeneity and endotheliopathy presents a significant research challenge.
- A deeper understanding of EC heterogeneity and AFs is vital for advancing cardiovascular disease research.
- This review highlights the critical role of ECs and their secreted factors in tissue homeostasis and disease pathogenesis.
Abstract:
Micro- and macrovascular endothelial cells (ECs) are characterized by structural and functional heterogeneity, which is also reflected in their secretory activity. The root of this heterogeneity and related regulatory mechanisms are still poorly understood. During embryogenesis, microvascular ECs participate in organogenesis prior to the development of the fetal circulation, suggesting that ECs are capable of releasing paracrine trophogens, termed angiocrine factors (AFs). These are angiocrine growth factors, adhesion molecules, and chemokines, which are intended to promote morphogenesis and repair of the adjacent parenchyma/stroma where the vessels are located. There is a tissue and organ-specificity of AFs that traces the heterogeneity of ECs. This AF heterogeneity also traces how ECs respond to pathological conditions or exposure to cardiovascular risk factors. The study of the mechanisms that regulate endothelial and paracrine heterogeneity and that contribute to endotheliopathy represents a broad and as yet understudied area of research. A better understanding of the cellular and molecular mechanisms that regulate this heterogeneity, leading to endotheliopathy is an exciting challenge. In this brief review we will discuss experimental advances in the heterogeneity of ECs and their AF, with a focus on their involvement in the pathogenesis of coronary artery disease.
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