Key result
Azilsartan medoxomil decreased blood pressure (116±7 vs 181±6 mm Hg) and attenuated kidney damage, inflammation, and oxidative stress in Zucker diabetic fatty rats over 8 weeks.
Why the study?
Does azilsartan medoxomil improve glycemic status and reduce kidney damage in a rat model of type 2 diabetes?
Does azilsartan medoxomil improve glycemic status and reduce kidney damage in a rat model of type 2 diabetes?
Absolute Event Rate: 116% vs 181%
In a rat model of type 2 diabetes, azilsartan medoxomil lowered blood pressure, improved glycemic status, and attenuated kidney damage through anti-inflammatory and antioxidative mechanisms.
Findings in Zucker rats are hypothesis-generating; leaves open whether azilsartan confers similar benefits in patients with type 2 diabetes.
BACKGROUND: Azilsartan medoxomil (AZL-M), an angiotensin II receptor blocker, demonstrates antihypertensive and organ protective effects in hypertension. We investigated the efficacy of AZL-M to ameliorate metabolic syndrome and kidney damage associated with type 2 diabetes using Zucker diabetic fatty (ZDF) rats. METHODS: ZDF rats were treated with vehicle or AZL-M for 8 weeks. Zucker diabetic lean (ZDL) rats were used as controls. Urine and plasma samples were collected for biochemical analysis, and kidney tissues were used for histopathological and immunohistopathological examination at the end of the 8-week protocol. RESULTS: ZDF rats were diabetic with hyperglycemia and impaired glucose tolerance, and AZL-M ameliorated the diabetic phenotype. ZDF rats were hypertensive compared with ZDL rats (181±6 vs. 129±7mm Hg), and AZL-M decreased blood pressure in ZDF rats (116±7mm Hg). In ZDF rats, there was marked renal damage with elevated proteinuria, albuminuria, nephrinuria, 2-4-fold higher tubular cast formation, and glomerular injury compared with ZDL rats. AZL-M treatment reduced renal damage in ZDF rats. ZDF rats demonstrated renal inflammation and oxidative stress with elevated urinary monocyte chemoattractant protein 1 excretion, renal infiltration of macrophages, and elevated kidney malondialdehyde levels. AZL-M reduced oxidative stress and inflammation in ZDF rats. CONCLUSIONS: Overall, we demonstrate that AZL-M attenuates kidney damage in type 2 diabetes. We further demonstrate that anti-inflammatory and antioxidative activities of AZL-M contribute to its kidney protective action.
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Khan et al. (2014) studied Type 2 diabetes, metabolic syndrome, and kidney damage. Azilsartan medoxomil (AZL-M) vs. Vehicle (ZDF rats) and Zucker diabetic lean (ZDL) rats was evaluated on Blood pressure. Azilsartan medoxomil decreased blood pressure (116±7 vs 181±6 mm Hg) and attenuated kidney damage, inflammation, and oxidative stress in Zucker diabetic fatty rats over 8 weeks.
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