内皮素ET(B)受体激动剂[125I]BQ-3020主要与牛牵牵阴茎肌肉和阴茎动脉的神经结合。

U M Parkkisenniemi, A Palkama, I Virtanen, E Klinge
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摘要

初步药理实验表明,牛牵牵阴茎肌肉中存在调节松弛的内皮素ET(B)受体,其中至少部分位于抑制性氮能神经上。目前的工作是通过受体放射自显影和额外的药理学实验来检验这一假设。在牵张阴茎肌和阴茎动脉中,ETB受体选择性激动剂[125I]BQ-3020的特异性结合主要发生在神经干和小神经分支上。跖背动脉的情况也一样,因为它的神经支配不同而被作为参考。在整个神经中,银颗粒均匀地分布在雪旺细胞的细胞核及其之间的间隙上。在牵开阴茎中也有少量与平滑肌的特异性结合。在检查的任何组织中均未观察到特异性内皮结合。药理学研究证实,由ET(B)受体选择性激动剂sarafotoxin S6c诱导的牵张阴茎肌肉松弛,易受河河毒素的影响,也易受一氧化氮合酶的抑制。松弛还表现为不一致、虚弱和快速反应。刺激或阻断ET(B)受体不影响电场刺激引起的牵开阴茎亚极大松弛。放射自显影显示,在所研究的所有三种牛组织中,ET(B)受体均位于与传出神经类型无关的神经上。药理学实验不支持牛牵牵阴茎肌肉神经元ET(B)受体对阴茎勃起介导的氮能神经功能有重要的直接影响的概念。
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The endothelin ET(B) receptor agonist [125I]BQ-3020 binds predominantly to nerves in the bovine retractor penis muscle and penile artery.

Preliminary pharmacological experiments have suggested that in the bovine retractor penis muscle there are relaxation-mediating endothelin ET(B) receptors, at least part of which are located on the inhibitory nitrergic nerves. The present work was undertaken to test this hypothesis by means of receptor autoradiography and additional pharmacological experiments. In the retractor penis muscle and the penile artery, specific binding of the ETB receptor-selective agonist [125I]BQ-3020 took place predominantly to nerve trunks and minor nerve branches. The situation was the same in the dorsal metatarsal artery, that was included as a reference because of its different innervation. Throughout the nerves the silver grains were evenly distributed over the nuclei of Schwann cells and the spaces between them. In the retractor penis there was also a small amount of specific binding to smooth muscle. No specific endothelial binding was observed in any of the tissues examined. The pharmacological studies confirmed that the relaxation of the retractor penis muscle induced by the ET(B) receptor-selective agonist, sarafotoxin S6c, is susceptible to tetrodotoxin as well as to inhibition of nitric oxide synthase. The relaxation was also characterized by inconsistency, weakness and tachyphylaxis. The electrical field stimulation-induced submaximal relaxation of the retractor penis was unaffected by stimulation or blockade of ET(B) receptors. The autoradiography suggests that in all the three bovine tissues studied there are ET(B) receptors located on nerves independently of the type of efferent nerve. The pharmacological experiments do not support the concept that in the bovine retractor penis muscle neuronal ET(B) receptors exert important immediate effects on the functioning of the penile erection-mediating nitrergic nerves.

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