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Activation of neuronal endothelin B receptors mediates pressor response through alpha‐1 adrenergic receptors

机译:神经内皮素B受体的激活通过α-1肾上腺素受体介导升压反应

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摘要

Abnormalities in activity of the endothelin (ET) system have been widely reported in a number of cardiovascular disease states such as hypertension and heart failure. Although the vascular responses to ET are well established, the interaction between ET and other important modulators of blood pressure, such as the sympathetic nervous system, are less understood. Previous reports implicate ET signaling through ET type B (ETB) receptors in increasing neuronal activity. Therefore, we hypothesized that activation of ETB receptors on sympathetic nerves would increase blood pressure through an adrenergic‐mediated mechanism. Thus, we used anesthetized ETB‐deficient rats, which only express functional ETB receptors on adrenergic neurons, and genetic controls, which express functional ETB receptors in vascular tissue and kidney epithelium. We determined the pressor response to the selective ETB receptor agonist sarafotoxin c (S6c). Separate groups of rats were treated with the α 1‐adrenergic receptor antagonist prazosin or the β‐adrenergic receptor antagonist propranolol to elucidate the role of adrenergic signaling in mediating the blood pressure response. We observed a dose‐dependent pressor response to S6c in ETB‐deficient rats that was reversed by prazosin treatment and augmented by propranolol. In genetic control rats, the effects of S6c on sympathetic neurons were mostly masked by the direct activity of ETB receptor activation on the vasculature. Heart rate was mostly unaffected by S6c across all groups and treatments. These results suggest that ETB activation on sympathetic neurons causes an increase in blood pressure mediated through α 1‐adrenergic receptor signaling.
机译:在许多心血管疾病状态如高血压和心力衰竭中,已经广泛报道了内皮素(ET)系统活性异常。尽管对ET的血管反应已得到很好的确立,但对ET和其他重要的血压调节剂(如交感神经系统)之间的相互作用却知之甚少。以前的报道暗示通过B型ET(ETB)受体的ET信号传导会增加神经元活动。因此,我们假设交感神经上ETB受体的激活将通过肾上腺素介导的机制增加血压。因此,我们使用了麻醉的ETB缺乏大鼠,仅在肾上腺素能神经元上表达功能性ETB受体,并使用了在血管组织和肾上皮中表达功能性ETB受体的遗传对照。我们确定了对选择性ETB受体激动剂sarafotoxin c(S6c)的升压反应。用α1-肾上腺素能受体拮抗剂哌唑嗪或β-肾上腺素能受体拮抗剂普萘洛尔对大鼠进行单独治疗,以阐明肾上腺素能信号传导在调节血压反应中的作用。我们观察到在ETB缺乏的大鼠中,对S6c的剂量依赖性升压反应被哌唑嗪治疗所逆转,并被普萘洛尔增强。在基因控制的大鼠中,S6c对交感神经元的作用大部分被ETB受体激活直接作用于脉管系统所掩盖。在所有组和治疗中,S6c对心率几乎没有影响。这些结果表明,交感神经元上的ETB激活导致通过α1-肾上腺素受体信号传导介导的血压升高。

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