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Updated: Mar 20, 2026

Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice
Published on: September 26, 2018
Insulin decreases atherosclerotic plaque burden and increases plaque stability via nitric oxide synthase in
Yusaku Mori1, Simon Chiang2, Michelle P Bendeck3
1Department of Physiology, Faculty of Medicine, University of Toronto, Toronto, Ontario, Canada; Division of Diabetes, Metabolism, and Endocrinology, Showa University School of Medicine, Shinagawa, Tokyo, Japan;
Abstract:
It has been argued whether insulin accelerates or prevents atherosclerosis. Although results from in vitro studies have been conflicting, recent in vivo mice studies demonstrated antiatherogenic effects of insulin. Insulin is a known activator of endothelial nitric oxide synthase (NOS), leading to increased production of NO, which has potent antiatherogenic effects. We aimed to examine the role of NOS in the protective effects of insulin against atherosclerosis. Male apolipoprotein E-null mice (8 wk old) fed a high-cholesterol diet (1.25% cholesterol) were assigned to the following 12-wk treatments: control, insulin (0.05 U/day via subcutaneous pellet), N(ω)-nitro-l-arginine methyl ester hydrochloride (l-NAME, via drinking water at 100 mg/l), and insulin plus l-NAME. Insulin reduced atherosclerotic plaque burden in the descending aorta by 42% compared with control (plaque area/aorta lumen area: control, 16.5 ± 1.9%; insulin, 9.6 ± 1.3%, P < 0.05). Although insulin did not decrease plaque burden in the aortic sinus, macrophage accumulation in the plaque was decreased by insulin. Furthermore, insulin increased smooth muscle actin and collagen content and decreased plaque necrosis, consistent with increased plaque stability. In addition, insulin treatment increased plasma NO levels, decreased inducible NOS staining, and tended to increase phosphorylated vasodilator-stimulated phosphoprotein staining in the plaques of the aortic sinus. All these effects of insulin were abolished by coadministration of l-NAME, whereas l-NAME alone showed no effect. Insulin also tended to increase phosphorylated endothelial NOS and total neuronal NOS staining, effects not modified by l-NAME. In conclusion, we demonstrate that insulin treatment decreases atherosclerotic plaque burden and increases plaque stability through NOS-dependent mechanisms.
Insights
Insulin reduces atherosclerosis by activating nitric oxide synthase (NOS), decreasing plaque burden and increasing stability. These protective effects are dependent on NOS activity, as shown in mouse models.
Area of Science:
- Cardiovascular Biology
- Endocrinology
- Pharmacology
Background:
- Insulin's role in atherosclerosis is debated, with conflicting in vitro and supportive in vivo findings.
- Insulin activates endothelial nitric oxide synthase (NOS), increasing nitric oxide (NO) production, a known antiatherogenic factor.
Purpose of the Study:
- To investigate the role of NOS in mediating insulin's protective effects against atherosclerosis.
- To determine if insulin's antiatherogenic actions are dependent on NOS activation.
Main Methods:
- Male apolipoprotein E-null mice on a high-cholesterol diet were treated with insulin, a NOS inhibitor (l-NAME), or both for 12 weeks.
- Atherosclerotic plaque burden, macrophage accumulation, plaque stability markers, and NOS expression were assessed.
Main Results:
- Insulin significantly reduced atherosclerotic plaque burden in the descending aorta and decreased macrophage accumulation.
- Insulin treatment increased plaque stability by enhancing smooth muscle actin and collagen content and reducing necrosis.
- All observed protective effects of insulin were abolished by coadministration of l-NAME, indicating a NOS-dependent mechanism.
Conclusions:
- Insulin treatment exerts significant antiatherogenic effects by reducing atherosclerotic plaque burden and enhancing plaque stability.
- These beneficial effects of insulin are mediated through nitric oxide synthase (NOS)-dependent pathways.
- Targeting NOS may represent a therapeutic strategy to leverage insulin's protective cardiovascular effects.
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