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Published on: December 23, 2014
Vessel wall-related risk factors in acute vascular events
L Badimon1, J J Badimon, M Cohen
1Division of Cardiology, Massachusetts General Hospital, Harvard Medical School, Boston.
Insights
Local factors like blood flow (rheology) and plaque damage significantly influence clot formation (thrombogenicity) after atherosclerotic plaque rupture, impacting unstable angina and myocardial infarction severity.
Area of Science:
- Cardiovascular Medicine
- Thrombosis Research
- Atherosclerosis
Background:
- Unstable angina and myocardial infarction often involve eccentric coronary stenoses with irregular borders, indicating plaque rupture and thrombosis.
- Angioscopy and autopsy confirm plaque rupture and thrombus formation as key pathological events.
Purpose of the Study:
- To investigate the local risk factors influencing thrombogenicity following atherosclerotic plaque disruption.
- To understand how rheological factors, plaque damage, residual thrombus, and systemic factors contribute to clinical syndromes.
Main Methods:
- Utilized an ex vivo perfusion chamber, an in vivo swine model, and human subjects for study.
- Examined the relationship between stenotic lesion severity, shear rate, and platelet deposition.
- Assessed the role of plaque damage (collagen type I, tissue factor) and residual thrombus in thrombus formation.
Main Results:
- Higher local shear rates at severe stenotic lesions after plaque rupture enhance platelet deposition and thrombus formation.
- The degree of plaque damage, including exposed collagen type I and tissue factor, significantly increases thrombus formation.
- Residual thrombus, particularly thrombin bound to fibrin, contributes to reocclusion after reperfusion.
Conclusions:
- Specific local risk factors at the time of plaque disruption critically determine thrombogenicity.
- Rheological factors, plaque damage severity, and residual thrombus characteristics are key determinants of clinical outcomes in acute coronary syndromes.
Abstract:
Angiography in patients with unstable angina or myocardial infarction with subtotal coronary occlusion often reveals eccentric stenoses with irregular borders, suggesting ruptured atherosclerotic plaques and thrombosis, as documented by angioscopy and at autopsy. We have studied these processes in an ex vivo perfusion chamber, an in vivo swine model, and in human subjects. Our results, and those of other investigators, suggest that specific local risk factors at the time of plaque disruption influence the degree of thrombogenicity and, therefore, the various clinical syndromes. These risk factors can be divided into 2 groups: local vessel wall-related factors, and local (focal action) systemic factors. These risk factors include the following: 1) Rheological factors. It has been demonstrated that the more severe the stenotic lesion after plaque rupture, the higher the local shear rate with enhanced platelet deposition and thrombus formation; platelet deposition and thrombosis are particularly likely if the rupture includes the apex of the stenotic plaque, because of the high shear rate induced. 2) Degree of plaque damage. Plaque rupture produces a rough surface and stimulates an occlusive thrombus, which is enhanced depending on the degree of damage or amount of collagen type I and macrophage-dependent tissue factor exposed. 3) Residual thrombus. After spontaneous or pharmacological reperfusion, the surface of the residual thrombus is very thrombogenic and may contribute to reocclusion; this is partially due to thrombin bound to fibrin in the original thrombus. 4) Systemic factors. There is clinical and experimental evidence to suggest that 3 systemic factors at the time of plaque rupture may enhance thrombogenicity.(ABSTRACT TRUNCATED AT 250 WORDS)
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