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Updated: Jul 16, 2026

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology
Published on: May 6, 2014
Atorvastatin modulates the profile of proteins released by human atherosclerotic plaques
M Carmen Durán1, Jose L Martín-Ventura, Shabaz Mohammed
1Department of Immunology, Fundación Jiménez Díaz, Autónoma University, Madrid, Spain.
Insights
Statins, a class of cholesterol-lowering drugs, can alter the protein secretions of atherosclerotic plaques. This study identified specific proteins, including Cathepsin D, modulated by atorvastatin, suggesting new therapeutic targets for atherosclerosis.
Area of Science:
- Proteomics
- Cardiovascular Research
- Drug Discovery
Background:
- The precise mechanisms by which statins reduce cardiovascular events are not fully understood.
- Statins are known to influence inflammatory protein levels in atherosclerosis patients.
- It remains unclear if statins affect proteins secreted by atherosclerotic plaques.
Purpose of the Study:
- To investigate whether statins modulate the secretomes of cultured atherosclerotic plaques.
- To identify specific proteins released by plaques that are affected by atorvastatin.
- To explore potential new therapeutic targets for statin-based treatments.
Main Methods:
- Secretomes from atherosclerotic plaques incubated with and without atorvastatin were analyzed.
- Two-dimensional electrophoresis and Mass Spectrometry (MS) were used for protein identification.
- Plaque samples from patients treated with and without atorvastatin prior to surgery were compared.
Main Results:
- 54 proteins (83 isoforms) were identified; 24 increased and 20 decreased in plaque supernatants.
- Cathepsin D was identified as a key protein potentially involved in plaque instability.
- 66% of differentially released proteins returned to normal levels after atorvastatin treatment.
- Plaques from atorvastatin-treated patients showed reduced Cathepsin D expression.
Conclusions:
- Statins can modulate the protein secretome of atherosclerotic plaques.
- Cathepsin D is a potential therapeutic target for statin intervention in atherosclerosis.
- This proteomic study reveals new insights into statin mechanisms and identifies novel therapeutic targets.
Abstract:
The mechanisms by which hydroxymethylglutaryl CoenzymeA reductase inhibitors (statins) reduce atherosclerotic cardiovascular morbidity and mortality remain poorly understood. Statins have been shown to modulate the levels of different inflammatory proteins both in carotid atherosclerotic plaques and in the blood of patients with atherosclerosis. In this work, we hypothesize that statins could also modulate the levels of the proteins secreted by cultured atherosclerotic plaques. Thus, the secretomes obtained from complicated atherosclerotic plaques incubated in the presence/absence of atorvastatin (10 micromol/l, 24 h) were analysed and compared by two-dimensional electrophoresis, considering the fibrous adjacent areas as controls. In total, 54 proteins (83 protein isoforms) were identified by Mass Spectrometry (MS): 24 proteins were increased and 20 proteins decreased in atheroma plaque supernatants compared to controls. Some of these proteins, like Cathepsin D, could play a significant role in plaque instability, becoming a potential target for therapeutical treatment. Interestingly, 66% of the proteins differentially released by atherosclerotic plaques reverted to control values after administration of atorvastatin, among them, Cathepsin D. Moreover, plaques obtained from patients who received atorvastatin treatment prior to carotid endarterectomy showed decreased Cathepsin D expression relative to plaques from non-treated patients. In conclusion, this proteomic approach has shown that statins are able to modulate the secretome of atherosclerotic plaques, and new therapeutical targets for statins have been characterised.
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