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.

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