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Published on: January 28, 2020
Adhesion Molecules as Prognostic Biomarkers in Coronary Artery Disease
Marios Sagris1, Panagiotis Theofilis1, Alexios S Antonopoulos1
11st Cardiology Department, "Hippokration" General Hospital, University of Athens Medical School, Athens, Greece.
Insights
Adhesion molecules play a key role in the development of atherosclerotic plaques in coronary artery disease (CAD). Understanding these molecules may lead to new targeted therapies for atherosclerosis.
Area of Science:
- Cardiovascular Science
- Molecular Biology
- Pathophysiology
Background:
- Atherosclerosis is a chronic inflammatory disease characterized by plaque buildup in arteries.
- Coronary artery disease (CAD) is a prevalent manifestation of atherosclerosis, significantly impacting patient quality of life and healthcare systems.
- Key risk factors include hyperlipidemia, diabetes, hypertension, and smoking, which affect the endothelium.
Approach:
- This review focuses on the pathophysiological role of adhesion molecules in atherosclerosis and CAD progression.
- It examines how these proteins mediate cell interactions, contributing to atherosclerotic plaque formation.
- The review also considers emerging therapeutic strategies, including nanoparticles, targeting endothelial inflammation and plaque stabilization.
Key Points:
- Adhesion molecules are crucial proteins mediating cell-cell and cell-extracellular matrix interactions, driving atherosclerotic plaque development.
- Their role in atherosclerosis and CAD progression has been increasingly recognized.
- Studies have investigated adhesion molecules in various cohorts and animal models.
Conclusions:
- Adhesion molecules are central to the pathogenesis of atherosclerosis and CAD.
- Targeting these molecules offers potential for novel, individualized treatment strategies.
- Nanoparticle-based approaches are being explored to modify risk factors and stabilize plaques.
Abstract:
Atherosclerosis is a progressive disease, culminating in the production of atherosclerotic plaques in arteries through intricate pathophysiological processes. The progression of this disorder is based on the effect of triggering factors -mainly hyperlipidemia, diabetes mellitus, arterial hypertension, and smoking- on the endothelium. Coronary artery disease (CAD) is an atherosclerotic disease with a higher prevalence among individuals. Pro- and anti-inflammatory cytokines are the main contributors to atherosclerotic plaque formation. CAD and its manifestations multifactorial affect patients' quality of life, burdening the global healthcare system. Recently, the role of adhesion molecules in CAD progression has been recognized. Physicians delve into the pathophysiologic basis of CAD progression, focusing on the effect of adhesion molecules. They are proteins that mediate cell-cell and cell-extracellular matrix interaction and adhesion, driving the formation of atherosclerotic plaques. Several studies have assessed their role in atherosclerotic disease in small cohorts and in experimental animal models as well. Furthermore, several agents, such as nanoparticles, have been introduced modifying the main atherosclerotic risk factors as well as targeting the endothelial inflammatory response and atherosclerotic plaque stabilization. In this review, we discuss the role of adhesion molecules in atherosclerosis and CAD progression, as well as the potential to be used as targeting moieties for individualized treatment.
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