cyp450环氧化酶衍生的环氧二碳三烯酸通过激活PGC-1 α参与肥胖诱导的糖尿病性心肌病心力衰竭的逆转

Cardiovascular pharmacology: open access Pub Date : 2018-01-01 Epub Date: 2018-02-08 DOI:10.4172/2329-6607.1000233
S P Singh, J A McClung, L Bellner, J Cao, M Waldman, J Schragenheim, M Arad, E Hochhauser, J R Falck, J A Weingarten, S J Peterson, N G Abraham
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引用次数: 33

摘要

我们之前已经证明,环氧二碳三烯酸(EET)激动剂具有多效性,并通过减少炎症分子和增加抗氧化信号来逆转心肌病。我们假设EET激动剂会增加过氧化物酶体增殖物激活受体γ辅助激活因子(PGC-1α), PGC-1α控制线粒体功能和HO-1的诱导,并负向调节促炎脂肪因子CCN3/NOV在心脏和心包组织中的表达。这一途径有望进一步改善左心室(LV)收缩功能,并增加胰岛素受体磷酸化。测量EET激动剂对氧气消耗、分数缩短、血糖水平、产热和线粒体信号蛋白的影响。对照组肥胖小鼠出现代谢综合征的体征,包括胰岛素抵抗、高血压、炎症、左室功能障碍和心包脂肪组织中NOV表达增加。EET激动剂干预降低了心包脂肪组织NOV的表达,而正常FS、PGC-1α、HO-1水平升高、胰岛素受体磷酸化和线粒体功能改善,这些有益作用被PGC-1α的缺失逆转。这些研究表明,EET激动剂增加胰岛素受体磷酸化,线粒体和产热基因表达,降低心脏和心包组织NOV水平,并改善代谢综合征肥胖小鼠模型的心肌病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CYP-450 Epoxygenase Derived Epoxyeicosatrienoic Acid Contribute To Reversal of Heart Failure in Obesity-Induced Diabetic Cardiomyopathy <i>via</i> PGC-1 <i>α</i> Activation.

CYP-450 Epoxygenase Derived Epoxyeicosatrienoic Acid Contribute To Reversal of Heart Failure in Obesity-Induced Diabetic Cardiomyopathy <i>via</i> PGC-1 <i>α</i> Activation.

CYP-450 Epoxygenase Derived Epoxyeicosatrienoic Acid Contribute To Reversal of Heart Failure in Obesity-Induced Diabetic Cardiomyopathy <i>via</i> PGC-1 <i>α</i> Activation.

CYP-450 Epoxygenase Derived Epoxyeicosatrienoic Acid Contribute To Reversal of Heart Failure in Obesity-Induced Diabetic Cardiomyopathy via PGC-1 α Activation.

We have previously shown that an Epoxyeicosatrienoic Acid (EET) -agonist has pleiotropic effects and reverses cardiomyopathy by decreasing inflammatory molecules and increasing antioxidant signaling. We hypothesized that administration of an EET agonist would increase Peroxisome proliferator-activated receptor-gamma coactivator (PGC-1α), which controls mitochondrial function and induction of HO-1 and negatively regulates the expression of the proinflammatory adipokines CCN3/NOV in cardiac and pericardial tissues. This pathway would be expected to further improve left ventricular (LV) systolic function as well as increase insulin receptor phosphorylation. Measurement of the effect of an EET agonist on oxygen consumption, fractional shortening, blood glucose levels, thermogenic and mitochondrial signaling proteins was performed. Control obese mice developed signs of metabolic syndrome including insulin resistance, hypertension, inflammation, LV dysfunction, and increased NOV expression in pericardial adipose tissue. EET agonist intervention decreased pericardial adipose tissue expression of NOV, while normalized FS, increased PGC-1α, HO-1 levels, insulin receptor phosphorylation and improved mitochondrial function, theses beneficial effect were reversed by deletion of PGC-1α. These studies demonstrate that an EET agonist increases insulin receptor phosphorylation, mitochondrial and thermogenic gene expression, decreased cardiac and pericardial tissue NOV levels, and ameliorates cardiomyopathy in an obese mouse model of the metabolic syndrome.

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