PRIME PubMed

+

Antihypertensive, insulin-sensitising and renoprotective effects of a novel, potent and long-acting angiotensin II type 1 receptor blocker, azilsartan medoxomil, in rat and dog models.
Eur J Pharmacol 2011 Nov 01; 669(1-3):84-93.EJ

Abstract

The pharmacological profile of a novel angiotensin II type 1 receptor blocker, azilsartan medoxomil, was compared with that of the potent angiotensin II receptor blocker olmesartan medoxomil. Azilsartan, the active metabolite of azilsartan medoxomil, inhibited the binding of [(125)I]-Sar(1)-I1e(8)-angiotensin II to angiotensin II type 1 receptors. Azilsartan medoxomil inhibited angiotensin II-induced pressor responses in rats, and its inhibitory effects lasted 24h after oral administration. The inhibitory effects of olmesartan medoxomil disappeared within 24h. ID(50) values were 0.12 and 0.55 mg/kg for azilsartan medoxomil and olmesartan medoxomil, respectively. In conscious spontaneously hypertensive rats (SHRs), oral administration of 0.1-1mg/kg azilsartan medoxomil significantly reduced blood pressure at all doses even 24h after dosing. Oral administration of 0.1-3mg/kg olmesartan medoxomil also reduced blood pressure; however, only the two highest doses significantly reduced blood pressure 24h after dosing. ED(25) values were 0.41 and 1.3mg/kg for azilsartan medoxomil and olmesartan medoxomil, respectively. In renal hypertensive dogs, oral administration of 0.1-1mg/kg azilsartan medoxomil reduced blood pressure more potently and persistently than that of 0.3-3mg/kg olmesartan medoxomil. In a 2-week study in SHRs, azilsartan medoxomil showed more stable antihypertensive effects than olmesartan medoxomil and improved the glucose infusion rate, an indicator of insulin sensitivity, more potently (≥ 10 times) than olmesartan medoxomil. Azilsartan medoxomil also exerted more potent antiproteinuric effects than olmesartan medoxomil in Wistar fatty rats. These results suggest that azilsartan medoxomil is a potent angiotensin II receptor blocker that has an attractive pharmacological profile as an antihypertensive agent.

Links

Publisher Full Text (DOI)

Authors+Show Affiliations

Kusumoto KMetabolic Disease Drug Discovery Unit, Pharmaceutical Research Division, Takeda Pharmaceutical Company Ltd., Osaka, Japan. kusumoto_keiji@takeda.co.jp
Igata HNo affiliation info available
Ojima MNo affiliation info available
Tsuboi ANo affiliation info available
Imanishi MNo affiliation info available
Yamaguchi FNo affiliation info available
Sakamoto HNo affiliation info available
Kuroita TNo affiliation info available
Kawaguchi NNo affiliation info available
Nishigaki NNo affiliation info available
Nagaya HNo affiliation info available

MeSH

Angiotensin IIAngiotensin II Type 1 Receptor BlockersAnimalsAntihypertensive AgentsBenzimidazolesBlood GlucoseBlood PressureCHO CellsCricetinaeCricetulusDogsHypertensionHypertension, RenalImidazolesInsulinMaleOlmesartan MedoxomilOxadiazolesProtective AgentsProteinuriaRatsRats, Inbred SHRRats, Sprague-DawleyTetrazoles

Pub Type(s)

Comparative Study
Journal Article

Language

eng

PubMed ID

21816148
© 2000–2026 Unbound Medicine, Inc. All rights reserved
All content is protected by copyright and may not be used for AI model training or other unauthorized purposes.