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神经释放的和外源性神经肽Y对心脏迷走神经效应的抑制作用。

Inhibition of cardiac vagal effects by neurally released and exogenous neuropeptide Y.

作者信息

Warner M R, Levy M N

机构信息

Division of Investigative Medicine, Case Western Reserve University Medical School, Cleveland, Ohio.

出版信息

Circ Res. 1989 Dec;65(6):1536-46. doi: 10.1161/01.res.65.6.1536.

Abstract

Neuropeptide Y (NPY) attenuates vagal effects on cardiac cycle length, presumably by inhibiting the release of acetylcholine from vagal nerve endings. We sought to determine if NPY inhibited the vagal effects on atrioventricular (AV) interval and atrial contraction in a manner similar to its inhibition of the vagal effects on cycle length. In 19 anesthetized dogs we measured the vagal effects on cycle length, AV interval, and atrial contraction before and after 3-minute trains of sympathetic stimulation or before and after exogenous NPY (20 micrograms/kg i.v.). Three minutes after 10-Hz sympathetic stimulation, the vagal effects on cycle length and AV interval were attenuated by 52 +/- 9% and 63 +/- 8%, respectively. Phentolamine significantly augmented this attenuation, but propranolol had no appreciable effect. In the control group of animals or in the group that received phentolamine, the vagal effects on atrial contraction measured before and after sympathetic stimulation were not significantly different. In these two groups, however, the basal atrial contraction was reduced substantially after the cessation of sympathetic stimulation. Propranolol prevented this reduction in atrial contraction. After propranolol, the vagal effects on atrial contraction 3 minutes after sympathetic stimulation were attenuated by 31 +/- 6%. Exogenous NPY had no direct effect on cycle length, AV interval, or atrial contraction, but exogenous NPY did persistently inhibit the vagal effects on each of these cardiac processes. Three minutes after NPY was given, the vagal effects on cycle length, AV interval, and atrial contraction were inhibited by 62 +/- 7%, 69 +/- 5%, and 68 +/- 5%, respectively. We conclude that NPY attenuates the vagal effects on the atrial myocardium and on the sinus and AV nodes. In the absence of beta-blockade, the inhibitory effect of neurally released NPY on the vagally induced decreases in atrial contraction may be masked by the reduction in the atrial contraction that occurs after sympathetic stimulation.

摘要

神经肽Y(NPY)可能通过抑制迷走神经末梢乙酰胆碱的释放来减弱迷走神经对心动周期长度的影响。我们试图确定NPY是否以类似于其抑制迷走神经对周期长度影响的方式,抑制迷走神经对房室(AV)间期和心房收缩的影响。在19只麻醉犬中,我们测量了在3分钟的交感神经刺激前后或外源性NPY(20微克/千克静脉注射)前后,迷走神经对周期长度、AV间期和心房收缩的影响。10赫兹交感神经刺激3分钟后,迷走神经对周期长度和AV间期的影响分别减弱了52±9%和63±8%。酚妥拉明显著增强了这种减弱作用,但普萘洛尔没有明显效果。在对照组动物或接受酚妥拉明的组中,交感神经刺激前后测量的迷走神经对心房收缩的影响没有显著差异。然而,在这两组中,交感神经刺激停止后基础心房收缩显著降低。普萘洛尔可防止心房收缩的这种降低。给予普萘洛尔后,交感神经刺激3分钟后迷走神经对心房收缩的影响减弱了31±6%。外源性NPY对周期长度、AV间期或心房收缩没有直接影响,但外源性NPY确实持续抑制迷走神经对这些心脏过程中每一个的影响。给予NPY 3分钟后,迷走神经对周期长度、AV间期和心房收缩的影响分别被抑制了62±7%、69±5%和68±5%。我们得出结论,NPY减弱了迷走神经对心房心肌以及窦房结和房室结的影响。在没有β受体阻滞剂的情况下,神经释放的NPY对迷走神经诱导的心房收缩减少的抑制作用可能被交感神经刺激后发生的心房收缩减少所掩盖。

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