ID | 115483 |
Title Alternative | Pitavastatin and Vascular Stress
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Author |
Mitsuhashi, Takeshi
Tokushima University
Uemoto, Ryoko
Tokushima University
Ishikawa, Kazue
Tokushima University
Yoshida, Sumiko
Tokushima University
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Ikeda, Yasumasa
Tokushima University
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Yagi, Shusuke
Tokushima University
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Matsumoto, Toshio
Tokushima University
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Keywords | Pitavastatin
Pleiotropic effect
Atherogenesis
Ischemia
eNOS
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Content Type |
Journal Article
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Description | Aim: Statins have a protective impact against cardiovascular diseases through not only lipid-lowering effects but also pleiotropic effects, including activation of the endothelial nitric oxide synthase (eNOS) system. We aimed to clarify the protective effects of a statin against atherogenesis and ischemia in eNOS-/- mice.
Methods: Study 1. eNOS-/- Apolipoprotein E (ApoE)-/- mice were treated with a vehicle or pitavastatin (0.3 mg/kg/day) for 4 weeks. Study 2. eNOS-/- mice were also treated with a vehicle or the same dose of pitavastatin for 2 weeks prior to hind-limb ischemia. Results: In Study 1, pitavastatin attenuated plaque formation and medial fibrosis of the aortic root with decreased macrophage infiltration in eNOS-/- ApoE-/- mice. PCR array analysis showed reductions in aortic gene expression of proatherogenic factors, including Ccl2 and Ccr2 in pitavastatin-treated double mutant mice. In addition, pitavastatin activated not only atherogenic p38MAPK and JNK but also anti-atherogenic ERK1/2 and ERK5 in the aorta of the double mutant mice. In Study 2, pitavastatin prolonged hind-limb survival after the surgery with increased BCL2-to-BAX protein ratio and inactivated JNK. Enhanced expression of anti-apoptotic genes, including Vegf, Api5, Atf5, Prdx2, and Dad1, was observed in the ischemic limb of pitavastatin-treated eNOS-/- mice. Furthermore, pitavastatin activated both aortic and skeletal muscle AMPK in the eNOS-deficient vascular injury models. Conclusion: Pitavastatin exerts eNOS-independent protective effects against atherogenesis and hind-limb ischemia in mice, which may occur via modifications on key molecules such as AMPK and diverse molecules. |
Journal Title |
Journal of Atherosclerosis and Thrombosis
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ISSN | 18803873
13403478
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Publisher | Japan Atherosclerosis Society
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Volume | 25
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Issue | 1
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Start Page | 65
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End Page | 80
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Published Date | 2018-01-01
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Rights | Copyright©2018 Japan Atherosclerosis Society
This article is distributed under the terms of the latest version of CC BY-NC-SA defined by the Creative Commons Attribution License.(https://creativecommons.org/licenses/by-nc-sa/4.0/) |
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DOI (Published Version) | |
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language |
eng
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TextVersion |
Publisher
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departments |
Medical Sciences
Institute of Advanced Medical Sciences
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