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Published on: April 13, 2015
Development and diseases of the coronary microvasculature and its communication with the myocardium
Kristýna Neffeová1, Veronika Olejníčková1,2, Ondřej Naňka1
1Institute of Anatomy, First Faculty of Medicine, Charles University, Prague, Czech Republic.
Insights
This review details coronary microvasculature development and signaling, highlighting its crucial role in heart health and disease. Understanding these pathways is key for treating conditions from congenital heart defects to adult cardiac events.
Area of Science:
- Cardiovascular Biology
- Developmental Biology
- Molecular Physiology
Background:
- The coronary microvasculature is vital for delivering oxygen and nutrients to the heart muscle (myocardium).
- Its development is intricately linked with cardiomyocyte growth and communication.
- Challenges in visualization have historically limited research into this critical vascular network.
Purpose of the Study:
- To provide a comprehensive overview of coronary microvasculature formation during embryonic development.
- To elucidate the signaling mechanisms, including hypoxia, VEGF, NOTCH, angiopoietin, and PDGF, involved in microvasculature development.
- To discuss the implications of coronary microvasculature pathologies in congenital heart diseases and adult cardiovascular conditions.
Main Methods:
- Review of existing literature on coronary microvasculature development and function.
- Analysis of signaling pathways governing endothelial cell-cardiomyocyte interactions.
- Discussion of current and emerging imaging techniques for microvasculature visualization.
Main Results:
- Coronary microvasculature density is established based on diffusion distances.
- Specific signaling factors mediate the crosstalk between cardiomyocytes and endothelial cells.
- Microvasculature dysfunction is implicated in congenital heart diseases, sudden cardiac death in adults, and worsened COVID-19 outcomes.
Conclusions:
- The coronary microvasculature plays a fundamental role in cardiac health throughout life.
- Dysregulation of its formation and function contributes significantly to various cardiovascular diseases.
- Further research into microvasculature development and pathology is essential for improving patient outcomes.
Abstract:
We review the current understanding of formation and development of the coronary microvasculature which supplies oxygen and nutrients to the heart myocardium and removes waste. We emphasize the close relationship, mutual development, and communication between microvasculature endothelial cells and surrounding cardiomyocytes. The first part of the review is focused on formation of microvasculature during embryonic development. We summarize knowledge about establishing the heart microvasculature density based on diffusion distance. Then signaling mechanisms which are involved in forming the microvasculature are discussed. This includes details of cardiomyocyte-endothelial cell interactions involving hypoxia, VEGF, NOTCH, angiopoietin, PDGF, and other signaling factors. The microvasculature is understudied due to difficulties in its visualization. Therefore, currently available imaging methods to delineate the coronary microvasculature in development and in adults are discussed. The second part of the review is dedicated to the importance of the coronary vasculature in disease. Coronary microvasculature pathologies are present in many congenital heart diseases (CHD), especially in pulmonary atresia, and worsen outcomes. In CHDs, where the development of the myocardium is impaired, microvasculature is also affected. In adult patients coronary microvascular disease is one of the main causes of sudden cardiac death, especially in women. Coronary microvasculature pathologies affect myocardial ischemia and vice versa; myocardial pathologies such as cardiomyopathies are closely connected with coronary microvasculature dysfunction. Microvasculature inflammation also worsens the outcomes of COVID-19 disease. Our review stresses the importance of coronary microvasculature and provides an overview of its formation and signaling mechanisms and the importance of coronary vasculature pathologies in CHDs and adult diseases. This article is categorized under: Cardiovascular Diseases > Stem Cells and Development Congenital Diseases > Molecular and Cellular Physiology Cardiovascular Diseases > Molecular and Cellular Physiology.
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