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一氧化氮在介导大鼠阿片肽的血管舒张反应中的作用。

Role of nitric oxide in mediating vasodilator responses to opioid peptides in the rat.

作者信息

Champion Hunter C, Bivalacqua Trinity J, Zadina James E, Kastin Abba J, Hyman Albert L, Kadowitz Philip J

机构信息

Department of Medicine, The Johns Hopkins Hospital, Baltimore, Maryland, USA.

出版信息

Clin Exp Pharmacol Physiol. 2002 Mar;29(3):229-32. doi: 10.1046/j.1440-1681.2002.03634.x.

Abstract
  1. Endomorphins 1 and 2, endogenous ligands for the mu-opioid receptor, and nociceptin (orphanin FQ; OFQ), an endogenous ligand for the ORL1 receptor, have vasodilator activity in the vascular bed of the hindquarters of the rat. In the present study, the role of nitric oxide (NO), vasodilator prostaglandins and the opening of KATP channels in mediating vasodilator responses to these novel agonists was investigated in the rat. 2. Under constant-flow conditions, injections of endomorphins 1 and 2, PL017 ([N-MePhe3,D-Pro4]-morphiceptin), nociceptin and Tyr-D-Ala-Gly-MePhe-Gly(ol)-enkephalin (DAMGO) produced dose-dependent decreases in hindquarters perfusion pressure. Vasodilator responses to endomorphin 1 and 2, acetylcholine and adrenomedullin, were attenuated by the NO synthase inhibitor NG-nitro-L-arginine methyl ester (L-NAME) at a time when vasodilator responses to nociceptin, adrenomedullin and the NO donor diethylamine/NO were not altered. 3. Vasodilator responses to endomorphins 1 and 2, nociceptin, PL017 and DAMGO were not altered after administration of sodium meclofenamate at a time when vasodilator responses to arachidonic acid were reduced significantly or after administration of U-37883A at a time when vasodilator responses to levcromakalim were reduced significantly. 4. The results of these studies indicate that vasodilator responses to endomorphins 1 and 2, PL017 and DAMGO are mediated, in large part, by the release of NO, whereas vasodilator responses to nociceptin are mediated by an L-NAME-insensitive mechanism. Moreover, these results demonstrate that the vasodilator responses to these peptides are not due to the release of vasodilator prostaglandins or the opening of KATP channels in the hindquarters vascular bed of the rat.
摘要
  1. 内吗啡肽1和2是μ-阿片受体的内源性配体,孤啡肽(痛敏肽;OFQ)是ORL1受体的内源性配体,它们在大鼠后肢血管床中具有血管舒张活性。在本研究中,探讨了一氧化氮(NO)、血管舒张性前列腺素以及KATP通道开放在介导对这些新型激动剂的血管舒张反应中的作用。2. 在恒流条件下,注射内吗啡肽1和2、PL017([N-甲基苯丙氨酸3,D-脯氨酸4]-吗啡肽)、孤啡肽和酪氨酰-D-丙氨酰-甘氨酰-甲基苯丙氨酰-甘氨醇-脑啡肽(DAMGO)可使后肢灌注压呈剂量依赖性降低。在一氧化氮合酶抑制剂NG-硝基-L-精氨酸甲酯(L-NAME)作用下,内吗啡肽1和2、乙酰胆碱及肾上腺髓质素的血管舒张反应减弱,而此时孤啡肽、肾上腺髓质素及一氧化氮供体二乙胺/一氧化氮的血管舒张反应未改变。3. 在给予甲氯芬那酸钠后,对花生四烯酸的血管舒张反应显著降低,而对内吗啡肽1和2、孤啡肽、PL017及DAMGO的血管舒张反应未改变;在给予U-37883A后,对左卡尼汀的血管舒张反应显著降低,而对上述肽类的血管舒张反应也未改变。4. 这些研究结果表明,内吗啡肽1和2、PL017及DAMGO的血管舒张反应在很大程度上是由一氧化氮释放介导的,而孤啡肽的血管舒张反应是由一种对L-NAME不敏感的机制介导的。此外,这些结果表明,这些肽类的血管舒张反应并非由于血管舒张性前列腺素的释放或大鼠后肢血管床中KATP通道的开放所致。

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