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Decreased age-related cardiac dysfunction myocardial nitrative stress inflammatory gene expression and apoptosis in mice lacking fatty acid amide hydrolase

机译:缺乏脂肪酸酰胺水解酶的小鼠与年龄有关的心脏功能障碍心肌硝化应激炎症基因表达和细胞凋亡减少

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摘要

Recent studies have uncovered important cross talk between inflammation, generation of reactive oxygen and nitrogen species, and lipid metabolism in the pathogenesis of cardiovascular aging. Inhibition of the endocannabinoid anandamide metabolizing enzyme, the fatty acid amide hydrolase (FAAH), is emerging as a promising novel approach for the treatment of various inflammatory disorders. In this study, we have investigated the age-associated decline of cardiac function and changes in inflammatory gene expression, nitrative stress, and apoptosis in FAAH knockout (FAAH−/−) mice and their wild-type (FAAH+/+) littermates. Additionally, we have explored the effects of anandamide on TNF-α-induced ICAM-1 and VCAM-1 expression and monocyte-endothelial adhesion in human coronary artery endothelial cells (HCAECs). There was no difference in the cardiac function (measured by the pressure-volume conductance catheter system) between 2- to 3-mo-old (young) FAAH−/− and FAAH+/+ mice. In contrast, the aging-associated decline in cardiac function and increased myocardial gene expression of TNF-α, gp91phox, matrix metalloproteinase (MMP)-2, MMP-9, caspase-3 and caspase-9, myocardial inducible nitric oxide synthase protein expression, nitrotyrosine formation, poly (ADP-ribose)polymerase cleavage and caspase-3/9 activity, observed in 28- to 31-mo-old (aging) FAAH+/+ mice, were largely attenuated in knockouts. There was no difference in the myocardial cannabinoid CB1 and CB2 receptor gene expression between young and aging FAAH−/− and FAAH+/+ mice. Anandamide dose dependently attenuated the TNF-α-induced ICAM-1 and VCAM-1 expression, NF-κB activation in HCAECs, and the adhesion of monocytes to HCAECs in a CB1-and CB2-dependent manner. These findings suggest that pharmacological inhibition of FAAH may represent a novel protective strategy against chronic inflammation, oxidativeitrative stress, and apoptosis associated with cardiovascular aging and atherosclerosis.
机译:最近的研究发现在心血管衰老的发病机理中,炎症,活性氧和氮物种的产生以及脂质代谢之间存在重要的相互影响。抑制内源性大麻素anandamide代谢酶,脂肪酸酰胺水解酶(FAAH)成为治疗各种炎性疾病的一种有希望的新方法。在这项研究中,我们研究了与年龄相关的心脏功能下降以及FAAH基因敲除(FAAH -// )小鼠及其野生型(AFAH)小鼠炎症基因表达,硝化应激和凋亡的变化。 FAAH + / + )同窝。此外,我们探讨了金刚烷酰胺对人冠状动脉内皮细胞(HCAEC)中TNF-α诱导的ICAM-1和VCAM-1表达以及单核细胞内皮粘附的影响。 2至3个月大(年轻)的FAAH -// 和FAAH + / +之间的心脏功能(通过压力容量导导管系统测量)没有差异小鼠。相反,衰老相关的心脏功能下降和TNF-α,gp91phox,基质金属蛋白酶(MMP)-2,MMP-9,caspase-3和caspase-9,心肌诱导型一氧化氮合酶蛋白表达的心肌基因表达增加。在28到31个月大(衰老)FAAH + / + 小鼠中观察到的酪氨酸,硝基酪氨酸形成,多聚(ADP-核糖)聚合酶裂解和caspase-3 / 9活性大大减弱淘汰赛。 FAAH -/-和FAAH + / + 小鼠与衰老小鼠的心肌大麻素CB1和CB2受体基因表达没有差异。 Anandamide剂量依赖性地减弱HCAECs中TNF-α诱导的ICAM-1和VCAM-1表达,NF-κB活化以及单核细胞对HCAECs的粘附,其作用依赖于CB1和CB2。这些发现表明,FAAH的药理学抑制作用可能代表了针对慢性炎症,氧化/硝化应激以及与心血管衰老和动脉粥样硬化相关的细胞凋亡的新型保护策略。

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