医学
射血分数保留的心力衰竭
内科学
二甲双胍
安普克
内分泌学
AMP活化蛋白激酶
肺动脉高压
心力衰竭
代谢综合征
骨骼肌
胰岛素抵抗
SIRT3
蛋白激酶A
药理学
射血分数
糖尿病
锡尔图因
胰岛素
激酶
生物化学
化学
乙酰化
基因
作者
Yen‐Chun Lai,Diana M. Tabima,John J. Dubé,Kara S. Hughan,Rebecca Vanderpool,Dmitry A. Goncharov,Claudette M. St. Croix,Adolfo Garcı́a-Ocaña,Elena A. Goncharova,Stevan P. Tofovic,Ana L. Mora,Mark T. Gladwin
出处
期刊:Circulation
[Lippincott Williams & Wilkins]
日期:2016-01-27
卷期号:133 (8): 717-731
被引量:235
标识
DOI:10.1161/circulationaha.115.018935
摘要
Background— Pulmonary hypertension associated with heart failure with preserved ejection fraction (PH-HFpEF) is an increasingly recognized clinical complication of metabolic syndrome. No adequate animal model of PH-HFpEF is available, and no effective therapies have been identified to date. A recent study suggested that dietary nitrate improves insulin resistance in endothelial nitric oxide synthase null mice, and multiple studies have reported that both nitrate and its active metabolite, nitrite, have therapeutic activity in preclinical models of pulmonary hypertension. Methods and Results— To evaluate the efficacy and mechanism of nitrite in metabolic syndrome associated with PH-HFpEF, we developed a 2-hit PH-HFpEF model in rats with multiple features of metabolic syndrome attributable to double-leptin receptor defect (obese ZSF1) with the combined treatment of vascular endothelial growth factor receptor blocker SU5416. Chronic oral nitrite treatment improved hyperglycemia in obese ZSF1 rats by a process that requires skeletal muscle SIRT3-AMPK-GLUT4 signaling. The glucose-lowering effect of nitrite was abolished in SIRT3-deficient human skeletal muscle cells, and in SIRT3 knockout mice fed a high-fat diet, as well. Skeletal muscle biopsies from humans with metabolic syndrome after 12 weeks of oral sodium nitrite and nitrate treatment (IND#115926) displayed increased activation of SIRT3 and AMP-activated protein kinase. Finally, early treatments with nitrite and metformin at the time of SU5416 injection reduced pulmonary pressures and vascular remodeling in the PH-HFpEF model with robust activation of skeletal muscle SIRT3 and AMP-activated protein kinase. Conclusions— These studies validate a rodent model of metabolic syndrome and PH-HFpEF, suggesting a potential role of nitrite and metformin as a preventative treatment for this disease.
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