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Updated: Jun 22, 2026

Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice
Published on: September 26, 2018
A meprin inhibitor suppresses atherosclerotic plaque formation in ApoE-/- mice
Pan Gao1, Rui-wei Guo, Jian-fei Chen
1Department of Cardiology, No 2 Hospital Affiliated to Third Military Medical University, Xinqiao Hospital, Chongqing 400037, China.
Abstract:
Meprin is a member of the astacin family of zinc metalloendopeptidases. It is widely distributed in the body, and hydrolyzes and inactivates several endogenous vasoactive peptides, some of which could alter various functions of cells in the arterial wall. We assessed the influence of chronic meprin inhibition by daily administration of actinonin (5mg/kg body weight per day; i.p.) on the development of atherosclerotic changes in ApoE(-/-) mice. Mice were fed a high-fat (21% fat), cholesterol-rich (1% cholesterol) Western-type diet for 16 weeks starting at 10 weeks of age. At 20 weeks of age, randomly selected ApoE(-/-) mice were treated with Western-type diet chow pellets supplemented with commercially available actinonin (meprin-I group) for 6 weeks; the diet of control ApoE(-/-) mice was supplemented with saline (placebo group). There was no difference in body weight, hemodynamic data and serum lipids between the two groups at the end of the dietary period. Meprin-I treatment was found to elevate levels of natriuretic peptides (NPs) in plasma and the vascular wall by radioimmunoassay. Meprin-I treatment also decreased plaque volume and suppressed lipid deposition in carotid arteries. Meprin-I treatment reduced production of reactive oxygen species (ROS) and apoptosis (which are associated with atherosclerosis) in the vascular wall. In in vitro experiments, meprin-I treatment increased NP function on cell apoptosis, proliferation, and intracellular ROS generation in the THP-1 cell line and primary vascular smooth muscle cells (VSMC). These results suggest that the meprin inhibitor actinonin may have a protective role in atherosclerosis, and that meprin inhibition may be therapeutically useful in atherosclerosis prevention. Suppression of degradation in the arteries of endogenously released NPs (particularly atrial natriuretic peptide and brain natriuretic peptide), or other kinins known to have anti-atherosclerotic actions, may at least partially contribute to the inhibitory effects of meprin-I on atherosclerotic changes.
Insights
Meprin inhibition using actinonin reduced atherosclerosis development in mice. This protective effect may stem from increased natriuretic peptides and reduced oxidative stress and apoptosis in blood vessels.
Area of Science:
- Biochemistry
- Cardiovascular Biology
- Pharmacology
Background:
- Meprin, a zinc metalloendopeptidase, degrades vasoactive peptides influencing arterial wall functions.
- Atherosclerosis involves complex cellular changes in the arterial wall.
Purpose of the Study:
- To investigate the impact of chronic meprin inhibition on atherosclerosis development in apolipoprotein E-deficient (ApoE(-/-)) mice.
- To explore the therapeutic potential of meprin inhibition in preventing atherosclerosis.
Main Methods:
- ApoE(-/-) mice were fed a Western-type diet and treated with actinonin (meprin inhibitor) or placebo for 6 weeks.
- Body weight, hemodynamics, serum lipids, natriuretic peptide levels, plaque volume, lipid deposition, reactive oxygen species (ROS), and apoptosis were assessed.
- In vitro studies used THP-1 cells and primary vascular smooth muscle cells (VSMC).
Main Results:
- Meprin inhibition elevated plasma and vascular natriuretic peptide (NP) levels.
- Actinonin treatment reduced atherosclerotic plaque volume and lipid deposition in carotid arteries.
- Meprin inhibition decreased vascular ROS production and apoptosis, and enhanced NP function in vitro.
Conclusions:
- Meprin inhibitor actinonin demonstrates a protective role against atherosclerosis in ApoE(-/-) mice.
- Meprin inhibition may offer a therapeutic strategy for atherosclerosis prevention.
- Suppression of natriuretic peptide degradation by meprin inhibition likely contributes to its anti-atherosclerotic effects.
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