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Aneurysm formation in experimental atherosclerosis: relationship to plaque evolution
C K Zarins1, S Glagov, D Vesselinovitch
1Department of Surgery, University of Chicago, IL 60637.
Journal of Vascular Surgery
|September 1, 1990
Summary
Atherosclerosis in primates can lead to aneurysm formation, particularly in the aorta and major arteries, after prolonged exposure to an atherogenic diet. This occurs even with cholesterol-lowering treatments, suggesting a link between atherosclerosis and aneurysm development.
Area of Science:
- Cardiovascular Research
- Primate Models of Atherosclerosis
- Vascular Biology
Background:
- Diet-induced atherosclerosis is a significant concern in primate research.
- Aneurysm formation is a potential complication of advanced atherosclerosis.
- Understanding the relationship between atherosclerosis and aneurysms is crucial for cardiovascular health.
Purpose of the Study:
- To investigate the occurrence of aneurysms in non-human primates with experimentally induced atherosclerosis.
- To determine the duration of atherogenic diet exposure required for aneurysm development.
- To explore the histological characteristics of aneurysms in this model.
Main Methods:
- Review of cynomolgus monkeys (n=268) and rhesus monkeys (n=175) fed atherogenic diets.
- Analysis of animals on normal, atherogenic, and regression diets with cholestyramine.
- Histological examination of affected arterial tissues.
Main Results:
- No aneurysms were observed in animals on normal diets or fed atherogenic diets for ≤12 months.
- Aneurysms formed in 13% of cynomolgus monkeys and 1% of rhesus monkeys after 16-24 months on an atherogenic regimen.
- Affected arteries included the aorta, innominate, carotid, iliac, and femoral arteries, with histological evidence of medial thinning and architectural loss.
Conclusions:
- Aneurysm formation is a manifestation of prolonged diet-induced atherosclerosis in primates.
- Aneurysms can develop even during cholesterol-lowering therapy, indicating a complex pathogenesis.
- Medial atrophy and plaque changes contribute to the development of aneurysms in this experimental model.