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Updated: Aug 23, 2026

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis
Published on: October 25, 2024
Evolving concepts in the triad of atherosclerosis, inflammation and thrombosis
Roberto Corti1, Randolph Hutter, Juan Jose Badimon
1Zena and Michael A. Wiener Cardiovascular Institute, The Mount Sinai School of Medicine, New York, NY 10029, USA.
Insights
Atherosclerotic plaque composition, not stenosis, predicts rupture risk. Key factors include lipid core, tissue factor, and inflammation, influencing treatment strategies for atherothrombosis.
Area of Science:
- Cardiovascular Medicine
- Pathology
- Immunology
Background:
- Atherothrombosis is a leading cause of morbidity and mortality.
- Plaque composition, particularly lipid core size and fibrous cap integrity, is crucial for rupture risk.
- Inflammation plays a central role throughout atherosclerotic development.
Purpose of the Study:
- To highlight the critical role of atherosclerotic plaque composition in predicting rupture and thrombogenicity.
- To emphasize the inflammatory processes involved in atherothrombosis.
- To guide future preventive and therapeutic strategies for atherothrombosis.
Main Methods:
- Review of recent developments in atherothrombosis research.
- Analysis of atherosclerotic plaque characteristics and their association with clinical outcomes.
- Examination of the inflammatory pathways and cellular interactions in lesion development.
Main Results:
- Plaque lipid core, tissue factor (TF) content, and inflammatory cells (macrophages) are key predictors of rupture.
- Thin fibrous caps, degraded by matrix metalloproteinases (MMPs), increase lesion vulnerability.
- Inflammatory mediators (selectins, VCAM, ICAM, MCP-1, M-CSF, IL-2) drive lesion initiation and progression.
Conclusions:
- Understanding plaque vulnerability is essential for shifting treatment strategies.
- Inflammation, thrombosis, and atherosclerosis are interconnected in atherothrombosis.
- Targeting inflammatory processes and plaque composition holds promise for improved prevention and therapy.
Abstract:
Recent developments into antherothrombosis, the leading cause of morbidity and mortality in Western Society, may help to change our treatment strategy to a more casual approach. The composition of the atherosclerotic plaque, rather than the percent stenosis, appears to be a critical predictor for both risk of plaque rupture and subsequent thrombogenicity. A large lipid core, rich in tissue factor (TF) and inflammatory cells including macrophages, and a thin fibrous cap with compromise of its structural integrity by matrix degrading enzymes, such as metalloproteinases (MMPs), render a lesion susceptible to rupture and subsequent acute thrombosis. Thrombosis may lead to a complete occlusion or, in the case of mural thrombus or intraplaque hemorrhage, to plaque progression. Disruption of a vulnerable or unstable plaque (type IV and Va lesions of the AHA classification) with a subsequent change in plaque geometry and thrombosis may result in an acute coronary syndrome. The high-risk plaque tend to be relatively small, but soft or vulnerable to "passive" disruption because of high lipid content. Inflammatory processes are important components of all stages of atherosclerotic development, including plaque initiation and disruption. As such the early steps in atherosclerotic lesion formation are the over expression of endothelial adhesive protein (i.e. selectins, VCAM and ICAM), chemotactic factors (MCP-1), growth factors (M-CSF), and cytokines (IL-2) that will facilitate the recruitment, internalization and survival of blood-borne inflammatory cells into the vascular wall. Macrophages, following what appears to be a defense mission by protecting the vessel wall from excess lipid accumulation, may eventually undergo apoptosis with release of MMPs and TF. Specific cell recruitment in the vessel wall and build-up of the extracellular matrix are coordinated by a wide variety of stimulators and inhibitors. Active interaction of immune competent cells within the atherosclerotic lesions appears to play a pivotal role in the control of atherosclerotic plaque evolution and, therefore, deserves particular attention from the research community with the ultimate goal of improving preventive and therapeutic medical approaches. Inflammation, thrombosis and atherosclerosis are interdependent and define a triad within the complex pathogenic process of atherothrombosis.
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