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首页> 外文期刊>Journal of the autonomic nervous system >NPY Y2 receptor agonist, N-acetyl (Leu28,Leu31)NPY24-36, reduces renal vasoconstrictor activity in anaesthetised dogs.
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NPY Y2 receptor agonist, N-acetyl (Leu28,Leu31)NPY24-36, reduces renal vasoconstrictor activity in anaesthetised dogs.

机译:NPY Y2受体激动剂N-乙酰(Leu28,Leu31)NPY24-36降低了麻醉犬的肾血管收缩活性。

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摘要

The actions of neuropeptide Y (NPY) at the autonomic neuroeffector junction have been attributed to two main receptor subtypes. At NPY Y1 receptors, located postsynaptically, NPY has been shown to produce vasoconstriction, or to potentiate the action of other vasoconstrictor agents. At NPY Y2 receptors, located presynaptically on nerve terminals, NPY inhibits the release of neurotransmitter from autonomic nerve terminals. In these experiments we have used the specific NPY Y2 receptor agonist, N-acetyl [Leu28,Leu31]NPY, which lacks local constrictor activity, and have demonstrated inhibition of nerve-evoked vasoconstriction in the renal circulation of anaesthetised dogs in a way that suggests an intra-renal regional specificity. Under control conditions stimulation of the renal sympathetic nerves over a range of frequencies (1-5 Hz) reduced renal vascular conductance and glomerular filtration rate (GFR). Following the injection of the selective NPY Y2 receptor agonist, N-acetyl [Leu28,Leu31]NPY24-36, nerve-evoked reductions in renal conductance were reduced by over 45%. At the lowest stimulation frequencies, reduced vasoconstrictor activity was associated with a marked increase in GFR in the presence N-acetyl [Leu28,Leu31]NPY24-36. At both higher levels of stimulation N-acetyl [Leu28,Leu31]NPY24-36 significantly inhibited vasoconstrictor activity and attenuated the nerve-evoked reductions in GFR. Full recovery of both variables was observed 20 min after N-acetyl [Leu28,Leu31]NPY24-36 injection. N-acetyl [Leu28,Leu31]NPY24-36 produced a similar inhibition of renal vasoconstrictor activity when the renal nerves were left intact and activated reflexly. These results suggest that NPY can act via NPY Y2 receptors to inhibit sympathetic vasoconstrictor activity in the renal circulation of dogs. On the basis of the demonstrated dissociation of effects on vascular conductance and GFR, we suggest that this might result from a preferential action of the NPY Y2 agonist on sympathetic nerves supplying the afferent arteriole of the kidney.
机译:神经肽Y(NPY)在自主神经效应连接处的作用已归因于两种主要的受体亚型。在突触后定位的NPY Y1受体上,NPY已显示产生血管收缩或增强其他血管收缩剂的作用。在突触前位于神经末梢的NPY Y2受体上,NPY抑制神经递质从植物神经末梢的释放。在这些实验中,我们使用了特定的NPY Y2受体激动剂N-乙酰基[Leu28,Leu31] NPY,该药物缺乏局部收缩剂活性,并且在麻醉犬的肾脏循环中显示出对神经诱发的血管收缩的抑制作用,这表明肾内区域特异性。在控制条件下,在一定频率范围(1-5 Hz)刺激肾交感神经会降低肾血管电导率和肾小球滤过率(GFR)。注射选择性NPY Y2受体激动剂N-乙酰基[Leu28,Leu31] NPY24-36后,神经诱发的肾电导性降低减少了45%以上。在最低刺激频率下,存在N-乙酰基[Leu28,Leu31] NPY24-36时,血管收缩活性降低与GFR显着增加有关。在两种较高的刺激水平下,N-乙酰基[Leu28,Leu31] NPY24-36均显着抑制血管收缩活性,并减弱神经诱发的GFR降低。在注射N-乙酰基[Leu28,Leu31] NPY24-36 20分钟后,两个变量均完全恢复。当肾神经完好无损并反射激活时,N-乙酰基[Leu28,Leu31] NPY24-36会产生类似的抑制肾血管收缩活性的作用。这些结果表明,NPY可以通过NPY Y2受体来抑制犬肾循环中的交感性血管收缩活性。根据已证明的对血管导度和GFR的分离,我们认为这可能是由于NPY Y2激动剂对供应肾脏传入小动脉的交感神经的优先作用所致。

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