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Updated: May 21, 2026

The Rabbit Model of Accelerated Atherosclerosis: A Methodological Perspective of the Iliac Artery Balloon Injury
Published on: October 3, 2017
Doxycycline stabilizes vulnerable plaque via inhibiting matrix metalloproteinases and attenuating inflammation in
Mei Dong1, Lin Zhong, Wen Qiang Chen
1The Key Laboratory of Cardiovascular Remodeling and Function Research, Chinese Ministry of Education and Chinese Ministry of Health, Shandong University Qilu Hospital, Jinan, Shandong, China.
Abstract:
Enhanced matrix metalloproteinases (MMPs) activity is implicated in the process of atherosclerotic plaque instability. We hypothesized that doxycycline, a broad MMPs inhibitor, was as effective as simvastatin in reducing the incidence of plaque disruption. Thirty rabbits underwent aortic balloon injury and were fed a high-fat diet for 20 weeks. At the end of week 8, the rabbits were divided into three groups for 12-week treatment: a doxycycline-treated group that received oral doxycycline at a dose of 10 mg/kg/d, a simvastatin-treated group that received oral simvastatin at a dose of 5 mg/kg/d, and a control group that received no treatment. At the end of week 20, pharmacological triggering was performed to induce plaque rupture. Biochemical, ultrasonographic, pathologic, immunohistochemical and mRNA expression studies were performed. The results showed that oral administration of doxycycline resulted in a significant increase in the thickness of the fibrous cap of the aortic plaque whereas there was a substantial reduction of MMPs expression, local and systemic inflammation, and aortic plaque vulnerability. The incidence of plaque rupture with either treatment (0% for both) was significantly lower than that for controls (56.0%, P<0.05). There was no significant difference between doxycycline-treated group and simvastatin-treated group in any serological, ultrasonographic, pathologic, immunohistochemical and mRNA expression measurement except for the serum lipid levels that were higher with doxycycline than with simvastatin treatment. In conclusion, doxycycline at a common antimicrobial dose stabilizes atherosclerotic lesions via inhibiting matrix metalloproteinases and attenuating inflammation in a rabbit model of vulnerable plaque. These effects were similar to a large dose of simvastatin and independent of serum lipid levels.
Insights
Doxycycline, an MMP inhibitor, stabilizes atherosclerotic plaques by reducing inflammation and vulnerability, similar to simvastatin, but without affecting lipid levels.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Biochemistry
Background:
- Enhanced matrix metalloproteinases (MMPs) activity contributes to atherosclerotic plaque instability.
- MMPs play a crucial role in the pathogenesis of vulnerable plaques.
Purpose of the Study:
- To investigate the efficacy of doxycycline, a broad-spectrum MMP inhibitor, in stabilizing atherosclerotic plaques compared to simvastatin.
- To evaluate the impact of doxycycline on plaque disruption, inflammation, and MMP expression in a rabbit model.
Main Methods:
- Aortic balloon injury and high-fat diet induced atherosclerosis in 30 rabbits.
- Treatment groups: doxycycline (10 mg/kg/d), simvastatin (5 mg/kg/d), and control for 12 weeks.
- Pharmacological triggering of plaque rupture followed by biochemical, ultrasonographic, and pathological analyses.
Main Results:
- Doxycycline significantly increased fibrous cap thickness and reduced MMP expression, inflammation, and plaque vulnerability.
- Both doxycycline and simvastatin completely prevented plaque rupture (0%) compared to controls (56.0%, P<0.05).
- No significant differences between treatments except for higher serum lipid levels in the doxycycline group.
Conclusions:
- Doxycycline stabilizes atherosclerotic lesions by inhibiting MMPs and reducing inflammation, similar to simvastatin.
- Doxycycline's plaque-stabilizing effects are independent of its impact on serum lipid levels.
- Doxycycline represents a potential therapeutic strategy for vulnerable atherosclerotic plaques.
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