首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >G protein-coupled bile acid receptor 1 stimulation mediates arterial vasodilation through a KCa1.1 (BKCa)-dependent mechanisms
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G protein-coupled bile acid receptor 1 stimulation mediates arterial vasodilation through a KCa1.1 (BKCa)-dependent mechanisms

机译:G蛋白偶联胆汁酸受体1刺激通过KCa1.1(BKCa)依赖性机制介导动脉血管舒张

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摘要

Bile acids (BAs) and BA receptors, including G protein-coupled bile acid receptor 1 (GPBAR1), represent novel targets for the treatment of metabolic and inflammatory disorders. However, BAs elicit myriad effects on cardiovascular function, although this has not been specifically ascribed to GPBAR1. This study was designed to test whether stimulation of GPBAR1 elicits effects on cardiovascular function that are mechanism based that can be identified in acute ex vivo and in vivo cardiovascular models, to delineate whether effects were due to pathways known to be modulated by BAs, and to establish whether a therapeutic window between in vivo cardiovascular liabilities and on-target efficacy could be defined. The results demonstrated that the infusion of three structurally diverse and selective GPBAR1 agonists produced marked reductions in vascular tone and blood pressure in dog, but not in rat, as well as reflex tachycardia and a positive inotropic response, effects that manifested in an enhanced cardiac output. Changes in cardiovascular function were unrelated to modulation of the levothyroxine/thyroxine axis and were nitric oxide independent. A direct effect on vascular tone was confirmed in dog isolated vascular rings, whereby concentration-dependent decreases in tension that were tightly correlated with reductions in vascular tone observed in vivo and were blocked by iberiotoxin. Compound concentrations in which cardiovascular effects occurred, both ex vivo and in vivo, could not be separated from those necessary for modulation of GPBAR1-mediated efficacy, resulting in project termination. These results are the first to clearly demonstrate direct and potent peripheral arterial vasodilation due to GPBAR1 stimulation in vivo through activation of large conductance Ca21 activated potassium channel KCa1.1.
机译:胆汁酸(BAs)和BA受体,包括G蛋白偶联的胆汁酸受体1(GPBAR1),代表了治疗代谢性疾病和炎性疾病的新靶标。然而,BAs对心血管功能具有多种作用,尽管尚未将其归因于GPBAR1。本研究旨在测试对GPBAR1的刺激是否会引起对心血管功能的影响,这种机制是可以在急性离体和体内心血管模型中确定的机制,从而确定这种作用是否是由于已知由BAs调节的途径引起的,以及确定是否可以定义体内心血管功能和靶标疗效之间的治疗窗口。结果表明,输注三种结构多样且选择性的GPBAR1激动剂可使狗(而非大鼠)的血管紧张度和血压显着降低,并且反射性心动过速和正性肌力反应降低,这表现为心输出量增加。心血管功能的变化与左甲状腺素/甲状腺素轴的调节无关,并且与一氧化氮无关。在犬离体的血管环中证实了对血管紧张度的直接影响,由此,浓度依赖性的张力降低与体内观察到的血管紧张度降低紧密相关,并被纤毛毒素阻断。体内和体外发生心血管效应的化合物浓度无法与调节GPBAR1介导的功效所必需的浓度分开,从而导致项目终止。这些结果是第一个清楚地证明通过激活大电导Ca21激活的钾通道KCa1.1激活GPBAR1在体内引起直接和有效的外周动脉血管舒张的结果。

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