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局部生成的血管紧张素II对豚鼠离体心房去甲肾上腺素能传递的影响。

Effects of locally generated angiotensin II on noradrenergic transmission in guinea-pig isolated atria.

作者信息

Ziogas J, Story D F, Rand M J

出版信息

Eur J Pharmacol. 1984 Oct 30;106(1):11-8. doi: 10.1016/0014-2999(84)90672-1.

Abstract

The extent to which cardiac neuroeffector function may be modulated by angiotensin II (AII) generated locally from angiotensin I (AI) was investigated in guinea-pig spontaneously beating isolated atria radiolabelled with [3H]noradrenaline. AI and AII were equipotent in increasing the rate and force of atrial contractions with a threshold concentration between 0.1 and 1.0 nM. In contrast, AI was approximately twenty times less potent than AII in enhancing the stimulation-induced (S-I) efflux of radioactivity. The actions of AI and AII on rate and force of atrial contractions, as well as those on S-I efflux of radioactivity, were substantially blocked by the AII receptor antagonist saralasin. On the other hand, the converting enzyme inhibitors captopril and MK-422 selectively blocked the actions of AI without affecting those of AII. These results suggest that significant local conversion of AI to AII occurs in guinea-pig isolated atria. This locally generated AII can act on myocardial AII receptors to increase rate and force of atrial contractions, and on AII receptors located on sympathetic nerve terminals to facilitate sympathetic neurotransmission. The lower potency of AI compared to AII in modulating transmitter release, in contrast to the equal potency of the peptides in mediating chronotropic and inotropic responses, may be due to conversion of AI to AII at sites remote from the neuroeffector junction.

摘要

在以[3H]去甲肾上腺素进行放射性标记的豚鼠自发性搏动离体心房中,研究了局部由血管紧张素I(AI)生成的血管紧张素II(AII)对心脏神经效应器功能的调节程度。AI和AII在增加心房收缩频率和力度方面具有同等效力,阈值浓度在0.1至1.0 nM之间。相比之下,在增强刺激诱导的(S-I)放射性外流方面,AI的效力约为AII的二十分之一。AI和AII对心房收缩频率和力度的作用,以及对S-I放射性外流的作用,均被AII受体拮抗剂沙拉新基本阻断。另一方面,转化酶抑制剂卡托普利和MK-422选择性地阻断了AI的作用,而不影响AII的作用。这些结果表明,在豚鼠离体心房中发生了AI向AII的显著局部转化。这种局部生成的AII可作用于心肌AII受体以增加心房收缩频率和力度,并作用于位于交感神经末梢的AII受体以促进交感神经传递。与这两种肽在介导变时性和变力性反应方面的同等效力相比,AI在调节递质释放方面效力较低,可能是由于AI在远离神经效应器接头的部位转化为AII所致。

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