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神经肽Y是豚鼠离体左心房迷走性而非交感性变力反应的节前抑制剂。

Neuropeptide Y is a prejunctional inhibitor of vagal but not sympathetic inotropic responses in guinea-pig isolated left atria.

作者信息

Serone A P, Angus J A

机构信息

Department of Pharmacology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Br J Pharmacol. 1999 May;127(2):383-90. doi: 10.1038/sj.bjp.0702565.

Abstract
  1. The effects of NPY and related peptides were examined on basal contractile force and nerve-mediated inotropic responses to electrical field stimulation of the guinea-pig isolated left atrium. 2. Electrical field stimulus (EFS)-inotropic response curves were constructed by applying 1-64 trains of four field pulses (200 Hz, 0.1 ms duration, 100 V) across isolated left atria (paced at 4 Hz, 2 ms, 1-4 V) within the atrial refractory period. Curves were constructed in presence of vehicle, propranolol (1 microM) or atropine (1 microM) to determine appropriate stimulus conditions. 3. The effects of PYY (1-10,000 nM), NPY (0.01-10 microM), N-Ac-[Leu28,31]NPY(24-36) (N-A[L]NPY(24-36); 0.01-10 microM) and clonidine (0.1-1000 nM) were examined on the positive and negative inotropic responses to EFS (eight trains, four pulses per refractory period). 4. NPY-related peptides had no effect on basal force of contraction nor on the inotropic concentration-response curves to bethanechol or isoprenaline. All three peptides inhibited vagally-mediated negative inotropic responses; rank order of potency PYY>NPY> or =N-A[L]NPY(24-36) was consistent with an action at prejunctional Y2-receptors. Clonidine concentration-dependently inhibited sympathetic inotropic responses. However, PYY, NPY and N-A[L]NPY(24-36) failed to mediate any significant inhibition of the positive inotropic response to EFS. 5. These data demonstrate that NPY is an effective inhibitor of vagal but not sympathetically-mediated inotropic responses in the guinea-pig isolated left atria. This may suggest that endogenously co-released NPY is important in mediating cross talk between efferent components of the autonomic nervous system modulating cardiac contractility, acting overall to sustain positive inotropic responses.
摘要
  1. 研究了神经肽Y(NPY)及相关肽对豚鼠离体左心房基础收缩力以及电场刺激介导的变力反应的影响。2. 通过在心房不应期内对离体左心房施加1 - 64串四个电场脉冲(200 Hz,0.1 ms持续时间,100 V)构建电场刺激(EFS)-变力反应曲线(心房以4 Hz、2 ms、1 - 4 V起搏)。在存在溶媒、普萘洛尔(1 μM)或阿托品(1 μM)的情况下构建曲线以确定合适的刺激条件。3. 研究了肽YY(PYY,1 - 10,000 nM)、NPY(0.01 - 10 μM)、N - 乙酰 - [亮氨酸28,31]NPY(24 - 36)(N - A[L]NPY(24 - 36);0.01 - 10 μM)和可乐定(0.1 - 1000 nM)对EFS(八串,每个不应期四个脉冲)的正性和负性变力反应的影响。4. NPY相关肽对基础收缩力以及对氨甲酰甲胆碱或异丙肾上腺素的变力浓度 - 反应曲线均无影响。所有三种肽均抑制迷走神经介导的负性变力反应;效力顺序为PYY > NPY > 或 = N - A[L]NPY(24 - 3,与对突触前Y2受体的作用一致。可乐定浓度依赖性地抑制交感神经变力反应。然而,PYY、NPY和N - A[L]NPY(24 - 36)未能介导对EFS正性变力反应的任何显著抑制。5. 这些数据表明,在豚鼠离体左心房中,NPY是迷走神经介导而非交感神经介导的变力反应的有效抑制剂。这可能表明内源性共同释放的NPY在介导调节心脏收缩力的自主神经系统传出成分之间的相互作用中很重要,总体上起到维持正性变力反应的作用。

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