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Hemodynamic profile responsiveness to anandamide and baroreflex sensitivity of mice lacking fatty acid amide hydrolase

机译:缺乏脂肪酸酰胺水解酶的小鼠的血流动力学特征对anandamide的反应性和压力反射敏感性

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摘要

The endocannabinoid anandamide exerts neurobehavioral, cardiovascular, and immune-regulatory effects through cannabinoid receptors (CB). Fatty acid amide hydrolase (FAAH) is an enzyme responsible for the in vivo degradation of anandamide. Recent experimental studies have suggested that targeting the endocannabinergic system by FAAH inhibitors is a promising novel approach for the treatment of anxiety, inflammation, and hypertension. In this study, we compared the cardiac performance of FAAH knockout (FAAH−/−) mice and their wild-type (FAAH+/+) littermates and analyzed the hemodynamic effects of anandamide using the Millar pressure-volume conductance catheter system. Baseline cardiovascular parameters, systolic and diastolic function at different preloads, and baroreflex sensitivity were similar in FAAH−/− and FAAH+/+ mice. FAAH−/− mice displayed increased sensitivity to anandamide-induced, CB1-mediated hypotension and decreased cardiac contractility compared with FAAH+/+ littermates. In contrast, the hypotensive potency of synthetic CB1 agonist HU-210 and the level of expression of myocardial CB1 were similar in the two strains. The myocardial levels of anandamide and oleoylethanolamide, but not 2-arachidonylglycerol, were increased in FAAH−/− mice compared with FAAH+/+ mice. These results indicate that mice lacking FAAH have a normal hemodynamic profile, and their increased responsiveness to anandamide-induced hypotension and cardiodepression is due to the decreased degradation of anandamide rather than an increase in target organ sensitivity to CB1 agonists.
机译:内源性大麻素anandamide通过大麻素受体(CB)发挥神经行为,心血管和免疫调节作用。脂肪酸酰胺水解酶(FAAH)是负责体内降解anandamide的酶。最近的实验研究表明,通过FAAH抑制剂靶向内啡肽能系统是一种有前途的新颖方法,可用于治疗焦虑症,炎症和高血压。在这项研究中,我们比较了FAAH基因敲除(FAAH -// )小鼠及其野生型(FAAH + / + )同窝仔小鼠的心脏性能,并分析了其血流动力学效应使用Millar压力-体积导流导管系统分析Anandamide。 FAAH -// 和FAAH + / + 小鼠的基线心血管参数,不同预负荷下的收缩和舒张功能以及压力反射敏感性相似。与FAAH + / + 同窝仔猪相比,FAAH -// 小鼠对由anandamide诱导的CB1介导的低血压敏感性增强,心脏收缩力降低。相比之下,两种菌株中合成CB1激动剂HU-210的降压能力和心肌CB1的表达水平相似。与FAAH + / + 小鼠相比,FAAH -/-小鼠的心脏中的anandamide和油酰乙醇酰胺的水平升高,但2-花生四烯酸甘油不升高。这些结果表明,缺乏FAAH的小鼠具有正常的血液动力学特征,其对anandamide引起的低血压和心脏抑制的反应性增强是由于anandamide的降解降低,而不是靶器官对CB1激动剂的敏感性增加。

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