Rizzi A, Calò G, Trevisani M, Tognetto M, Fabbri L, Mapp C, Guerrini R, Salvadori S, Regoli D, Geppetti P
Department of Experimental and Clinical Medicine, University of Ferrara, Italy.
Life Sci. 1999;64(13):PL157-63. doi: 10.1016/s0024-3205(99)00045-4.
We studied the action of nociceptin (NC) on the atropine-resistant contractions of the guinea pig isolated bronchus evoked by the electrical field stimulation (EFS), an effect that is mediated by the activation of excitatory non adrenergic-non cholinergic (eNANC) nerves and the subsequent release of tachykinins. The functional site by which NC acts in this preparation was investigated using few different NC receptor agonists and the newly discovered NC receptor antagonist, [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 ([F/G]NC(1-13)NH2). NC inhibited in a concentration dependent manner (pEC50 7.14; Em - 87 +/- 3% of control values) EFS induced contractions. NC effect was mimicked by the NC analogues, NCNH2 and NC(1-13)NH2, but not by NC(1-9)NH2. NC (1 microM) did not affect the contractile effects of exogenously applied neurokinin A (1 microM). [F/G]NC(1-13)NH2 (10 microM) completely prevented the inhibition induced by NC (1 microM), whereas naloxone (1 microM) was found inactive. Both naloxone and ([F/G]NC(1-13)NH2 were per se inactive on basal resting tone as well as on the electrically induced contractions. The present findings show that NC inhibits the atropine-resistant EFS-induced contraction in the guinea pig bronchus by inhibiting eNANC nerves, and suggest the presence of NC receptors, distinct from opioid receptors, on the nerves of the guinea pig bronchus.
我们研究了孤啡肽(NC)对电场刺激(EFS)诱发的豚鼠离体支气管阿托品抵抗性收缩的作用,该作用由兴奋性非肾上腺素能-非胆碱能(eNANC)神经的激活及随后速激肽的释放介导。使用几种不同的NC受体激动剂和新发现的NC受体拮抗剂[Phe1psi(CH2-NH)Gly2]NC(1-13)NH2([F/G]NC(1-13)NH2)研究了NC在此制剂中的作用功能位点。NC以浓度依赖性方式抑制(pEC50 7.14;Em - 对照值的87 +/- 3%)EFS诱导的收缩。NC类似物NCNH2和NC(1-13)NH2可模拟NC的作用,但NC(1-9)NH2则不能。NC(1 microM)不影响外源性应用的神经激肽A(1 microM)的收缩作用。[F/G]NC(1-13)NH2(10 microM)完全阻断了NC(1 microM)诱导的抑制作用,而纳洛酮(1 microM)则无活性。纳洛酮和[F/G]NC(1-13)NH2本身对基础静息张力以及电诱导的收缩均无活性。本研究结果表明,NC通过抑制eNANC神经来抑制豚鼠支气管中阿托品抵抗性EFS诱导的收缩,并提示豚鼠支气管神经上存在不同于阿片受体的NC受体。