Literature DB >> 20114040

Effect of olmesartan and pravastatin on experimental cerebral aneurysms in rats.

Naoto Kimura1, Hiroaki Shimizu, Hany Eldawoody, Toshio Nakayama, Atsushi Saito, Teiji Tominaga, Akira Takahashi.   

Abstract

The major initiation process of intracranial aneurysms is thought to involve endothelial dysfunction due to hemodynamic stress. Angiotensin II type 1 receptor blockers and statins improve vascular endothelium function. The effects of olmesartan and pravastatin were investigated on the development of experimental aneurysms in rats. Eighty-three rats underwent aneurysm induction. Seven groups of 10-14 rats were treated with low or high dose olmesartan, low or high dose pravastatin, low doses of olmesartan and pravastatin, hydralazine, or no drug (control) for 12weeks, when rats were sacrificed for vascular corrosion casting and scanning electron microscopy. Aneurysmal changes at the anterior cerebral-olfactory artery bifurcation were divided into stages 0 (no abnormality) to III (saccular aneurysm). Systolic arterial blood pressure was elevated over 170mmHg in the control, low dose pravastatin, and high dose pravastatin groups, but not in the other groups. The control group demonstrated aneurysmal changes in 100% and stage III in 50% of rats. Aneurysmal changes were observed in most rats in the other groups, but the incidence of stage III was 10% or less. The staging pattern showed significant differences between the groups (P=0.028). Pravastatin reduced both stages III and II+III and olmesartan ameliorated stage III, implying that these may prevent aneurysmal formation through acting on different steps. (209 words). Copyright 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20114040     DOI: 10.1016/j.brainres.2010.01.044

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  13 in total

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Review 2.  Biology of intracranial aneurysms: role of inflammation.

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Review 3.  The development and the use of experimental animal models to study the underlying mechanisms of CA formation.

Authors:  Tomohiro Aoki; Masaki Nishimura
Journal:  J Biomed Biotechnol       Date:  2010-12-28

Review 4.  Endogenous animal models of intracranial aneurysm development: a review.

Authors:  Vincent M Tutino; Hamidreza Rajabzadeh-Oghaz; Sricharan S Veeturi; Kerry E Poppenberg; Muhammad Waqas; Max Mandelbaum; Nicholas Liaw; Adnan H Siddiqui; Hui Meng; John Kolega
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5.  Sustained expression of MCP-1 by low wall shear stress loading concomitant with turbulent flow on endothelial cells of intracranial aneurysm.

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Review 6.  Preemptive Medicine for Cerebral Aneurysms.

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Journal:  Neurol Med Chir (Tokyo)       Date:  2016-04-06       Impact factor: 1.742

Review 7.  Unruptured Cerebral Aneurysms in Elderly Patients.

Authors:  Tomohito Hishikawa; Isao Date
Journal:  Neurol Med Chir (Tokyo)       Date:  2017-04-19       Impact factor: 1.742

Review 8.  Nonsteroidal Anti-Inflammatory Drugs: A Potential Pharmacological Treatment for Intracranial Aneurysm.

Authors:  Courtney L Fisher; Stacie L Demel
Journal:  Cerebrovasc Dis Extra       Date:  2019-04-30

Review 9.  Molecular mechanisms of the formation and progression of intracranial aneurysms.

Authors:  Hiroharu Kataoka
Journal:  Neurol Med Chir (Tokyo)       Date:  2015-02-20       Impact factor: 1.742

Review 10.  Biology of Saccular Cerebral Aneurysms: A Review of Current Understanding and Future Directions.

Authors:  Vernard S Fennell; M Yashar S Kalani; Gursant Atwal; Nikolay L Martirosyan; Robert F Spetzler
Journal:  Front Surg       Date:  2016-07-25
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