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Published on: August 20, 2019
The Endothelium as a Hub for Cellular Communication in Atherogenesis: Is There Directionality to the Message?
Kathryn L Howe1,2,3,4, Myron Cybulsky1,3,5, Jason E Fish1,2,3,5
1Toronto General Hospital Research Institute, University Health Network, Toronto, ON, Canada.
Insights
Endothelial cell communication is central to atherosclerosis. Understanding these cell signaling pathways offers potential for targeted therapies against cardiovascular diseases like heart attack and stroke.
Area of Science:
- Cardiovascular Biology
- Cellular Communication
- Atherosclerosis Research
Background:
- Endothelial cells form the inner lining of blood vessels, acting as a crucial interface.
- They play key roles in maintaining vascular health and driving disease processes like atherosclerosis.
- Atherosclerosis involves plaque buildup beneath the endothelium, leading to serious events like myocardial infarction and stroke.
Purpose of the Study:
- To review traditional and novel modes of endothelial cell communication in atherosclerosis.
- To explore how endothelial cell plasticity and transcriptomics influence cell-cell interactions during disease.
- To discuss the potential of targeting endothelial communication for therapeutic interventions.
Main Methods:
- Review of existing literature on endothelial cell communication.
- Analysis of traditional signaling molecules (cytokines, chemokines, nitric oxide).
- Examination of novel communication methods (extracellular vesicles) and transcriptomic data.
Main Results:
- Endothelial cells communicate with various cell types, including immune cells and smooth muscle cells.
- Cellular communication strategies evolve with endothelial cell plasticity during atherogenesis.
- Exploiting endothelial cell-specific signaling offers therapeutic potential but has challenges.
Conclusions:
- Endothelial cell communication is a dynamic and critical process in atherosclerosis.
- Targeting these communication pathways presents a promising avenue for novel therapeutics.
- Further research into directional communication may reveal new biomarkers and treatment strategies.
Abstract:
Endothelial cells line every blood vessel and thereby serve as an interface between the blood and the vessel wall. They have critical functions for maintaining homeostasis and orchestrating vascular pathogenesis. Atherosclerosis is a chronic disease where cholesterol and inflammatory cells accumulate in the artery wall below the endothelial layer and ultimately form plaques that can either progress to occlude the lumen or rupture with thromboembolic consequences - common outcomes being myocardial infarction and stroke. Cellular communication lies at the core of this process. In this review, we discuss traditional (e.g., cytokines, chemokines, nitric oxide) and novel (e.g., extracellular vesicles) modes of endothelial communication with other endothelial cells as well as circulating and vessel wall cells, including monocytes, macrophages, neutrophils, vascular smooth muscle cells and other immune cells, in the context of atherosclerosis. More recently, the growing appreciation of endothelial cell plasticity during atherogenesis suggests that communication strategies are not static. Here, emerging data on transcriptomics in cells during the development of atherosclerosis are considered in the context of how this might inform altered cell-cell communication. Given the unique position of the endothelium as a boundary layer that is activated in regions overlying vascular inflammation and atherosclerotic plaque, there is a potential to exploit the unique features of this group of cells to deliver therapeutics that target the cellular crosstalk at the core of atherosclerotic disease. Data are discussed supporting this concept, as well as inherent pitfalls. Finally, we briefly review the literature for other regions of the body (e.g., gut epithelium) where cells similarly exist as a boundary layer but provide discrete messages to each compartment to govern homeostasis and disease. In this light, the potential for endothelial cells to communicate in a directional manner is explored, along with the implications of this concept - from fundamental experimental design to biomarker potential and therapeutic targets.
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