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痛敏肽/孤啡肽(N/OFQ)作为阿片受体样-1(NOP1)受体的配体,可抑制大鼠神经源性硬脑膜血管舒张。

The ORL-1 (NOP1) receptor ligand nociceptin/orphanin FQ (N/OFQ) inhibits neurogenic dural vasodilatation in the rat.

作者信息

Bartsch T, Akerman S, Goadsby P J

机构信息

Headache Group, Institute of Neurology, The National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK.

出版信息

Neuropharmacology. 2002 Nov;43(6):991-8. doi: 10.1016/s0028-3908(02)00148-x.

Abstract

The effects of the ORL-1 (NOP(1)) receptor ligand nociceptin (N/OFQ) and the nociceptin antagonists [Nphe(1)]N/OFQ-(1-13)-NH(2) (Nphe) and nocistatin (NST) on neurogenic dural vasodilatation (NDV) in the rat dura mater evoked by electrical stimulation of a closed cranial window were studied. The middle meningeal artery was visualised using intravital microscopy, and the vessel diameter analysed using a video dimension analyser. N/OFQ (1, 10, 100 nmol kg(-1); i.v., n=10) significantly and dose-dependently suppressed NDV maximally by 65% (P<0.01). Neither Nphe (100 nmol kg(-1); n=5) nor NST (100 nmol kg(-1); n=4) alone had an effect on NDV (P>0.05). Baseline vessel diameter was not significantly affected by application of N/OFQ, NST or Nphe. Application of the selective N/OFQ antagonist Nphe (10, 100 nmol kg(-1) i.v., n=8) dose-dependently and significantly (P<0.01) reversed the inhibition of NDV induced by application of N/OFQ (10 nmol kg(-1)). NST (10, 100 nmol kg(-1); n=7) failed to reverse the effects elicited by N/OFQ. Application of N/OFQ elicited a dose-dependent transient decrease in arterial blood pressure (P<0.01). Nphe dose-dependently reversed the cardiovascular effects induced by application of N/OFQ (10 nmol kg(-1)) (P<0.01),while NST did not alter the blood pressure reaction elicited by N/OFQ. The results show that N/OFQ inhibits NDV, an effect which is antagonised by Nphe, but not by NST. ORL-1 (NOP(1)) receptors located on trigeminal sensory fibres may be involved in the regulation of dural vessel diameter and hence may play a role in migraine pathophysiology.

摘要

研究了阿片受体样受体-1(ORL-1,即NOP(1))受体配体孤啡肽(N/OFQ)以及孤啡肽拮抗剂[苯丙氨酸(1)]N/OFQ-(1-13)-NH₂(Nphe)和孤啡肽原抑制肽(NST)对大鼠硬脑膜中电刺激封闭颅窗诱发的神经源性硬脑膜血管舒张(NDV)的影响。采用活体显微镜观察脑膜中动脉,并使用视频尺寸分析仪分析血管直径。N/OFQ(1、10、100 nmol·kg⁻¹;静脉注射,n = 10)显著且呈剂量依赖性地抑制NDV,最大抑制率达65%(P < 0.01)。单独使用Nphe(100 nmol·kg⁻¹;n = 5)或NST(100 nmol·kg⁻¹;n = 4)对NDV均无影响(P > 0.05)。应用N/OFQ、NST或Nphe对基线血管直径无显著影响。应用选择性N/OFQ拮抗剂Nphe(10、100 nmol·kg⁻¹静脉注射,n = 8)呈剂量依赖性且显著(P < 0.01)地逆转了应用N/OFQ(10 nmol·kg⁻¹)所诱导的NDV抑制作用。NST(10、100 nmol·kg⁻¹;n = 7)未能逆转N/OFQ所引发的效应。应用N/OFQ可引起动脉血压呈剂量依赖性的短暂下降(P < 0.01)。Nphe呈剂量依赖性地逆转了应用N/OFQ(10 nmol·kg⁻¹)所诱导的心血管效应(P < 0.01),而NST未改变N/OFQ所引发的血压反应。结果表明,N/OFQ抑制NDV,该效应可被Nphe拮抗,但不能被NST拮抗。位于三叉神经感觉纤维上的ORL-1(NOP(1))受体可能参与硬脑膜血管直径的调节,因此可能在偏头痛病理生理学中发挥作用。

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