Suppr超能文献

血管紧张素转换酶抑制剂对冠状动脉微循环中缓激肽舒张反应的增强作用:受体水平的相互作用。

Potentiation by ACE inhibitors of the dilator response to bradykinin in the coronary microcirculation: interaction at the receptor level.

作者信息

Hecker M, Pörsti I, Bara A T, Busse R

机构信息

Center of Physiology, JWG-University Clinic, Frankfurt/Main, Germany.

出版信息

Br J Pharmacol. 1994 Jan;111(1):238-44. doi: 10.1111/j.1476-5381.1994.tb14050.x.

Abstract
  1. To examine the possibility that angiotensin-converting enzyme (ACE) inhibitors modulate the action of bradykinin at the receptor level, their effect on the dilator response to bradykinin was studied in the isolated saline-perfused heart of the rabbit. 2. Continuous infusion of bradykinin (10 nM) elicited a transient decrease in coronary perfusion pressure (CPP) and increased prostacyclin (PGI2) release which returned to baseline values within 30 min. 3. Subsequent co-infusion of ramiprilat (> or = 10 nM) or moexiprilat, but not of the less potent ACE inhibitor n-octyl-ramipril (RA-octyl), caused another fall in CPP and an increase in PGI2 release, the magnitude and time course of which were almost identical to the first response to bradykinin. No change in CPP or PGI2 release was observed when the ACE inhibitors were administered in the absence of exogenous bradykinin. 4. Infusion of D-Arg[Hyp3]-bradykinin (10 nM), a specific B2-receptor agonist which was significantly more resistant to degradation by ACE than bradykinin, produced virtually identical changes in CPP and PGI2 release when compared to bradykinin. Subsequent co-infusion of ramiprilat was similarly effective in restoring the fall in CPP and increase in PGI2 release elicited by D-Arg[Hyp3]-bradykinin as in the presence of bradykinin. 5. In concentrations which should block the degradation of bradykinin by ACE in the coronary vascular bed, two ACE substrates, hippuryl-L-histidyl-L-leucine (0.2 mM) and angiotensin I (0.3 microM), were unable to elicit a significant change in CPP or PGI2 release while ramiprilat and another ACE inhibitor, quinaprilat, were still active in the presence of these substrates. 6. To reveal the potential B2-receptor action of ramiprilat, its effect on the constrictor response to bradykinin was studied in the rabbit isolated jugular vein. Ramiprilat (0.1 MicroM), but not RA-octyl (1 MicroM),potentiated the endothelium-independent, B2-receptor-mediated constrictor response to bradykinin, but not that to the thromboxane-mimetic U46619 (9,11-dideoxy-ll alpha,9 alpha-epoxymethano-prostaglandin F2.).Moreover, ramiprilat but not RA-octyl caused a concentration-dependent, B2-receptor antagonist sensitive increase in tone when administered alone.7. These findings suggest that an interaction of ACE inhibitors with the B2-receptor or its signal transduction pathway rather than an accumulation of bradykinin within the vascular wall is responsible for the restoration of the endothelial response to bradykinin (dilatation, PGI2 release) in the coronary vascular bed of the rabbit.
摘要
  1. 为研究血管紧张素转换酶(ACE)抑制剂在受体水平调节缓激肽作用的可能性,在兔离体盐水灌注心脏中研究了它们对缓激肽舒张反应的影响。2. 持续输注缓激肽(10 nM)引起冠状动脉灌注压(CPP)短暂下降,并增加前列环素(PGI2)释放,30分钟内恢复至基线值。3. 随后联合输注雷米普利拉(≥10 nM)或莫昔普利拉,但效力较弱的ACE抑制剂正辛基雷米普利(RA - octyl)则不会,导致CPP再次下降和PGI2释放增加,其幅度和时间进程与对缓激肽的首次反应几乎相同。在无外源性缓激肽时给予ACE抑制剂,未观察到CPP或PGI2释放有变化。4. 输注D - Arg[Hyp3] - 缓激肽(10 nM),一种比缓激肽对ACE降解显著更具抗性的特异性B2受体激动剂,与缓激肽相比,在CPP和PGI2释放方面产生几乎相同的变化。随后联合输注雷米普利拉在恢复由D - Arg[Hyp3] - 缓激肽引起的CPP下降和PGI2释放增加方面同样有效,如同存在缓激肽时一样。5. 在应能阻断冠状动脉血管床中缓激肽被ACE降解的浓度下,两种ACE底物,马尿酰 - L - 组氨酰 - L - 亮氨酸(0.2 mM)和血管紧张素I(0.3 μM),未能引起CPP或PGI2释放的显著变化,而雷米普利拉和另一种ACE抑制剂喹那普利拉在这些底物存在时仍有活性。6. 为揭示雷米普利拉潜在的B2受体作用,在兔离体颈静脉中研究了其对缓激肽收缩反应的影响。雷米普利拉(0.1 μM),而非RA - octyl(1 μM),增强了对缓激肽的不依赖内皮、由B2受体介导的收缩反应,但对血栓素类似物U46619(9,11 - 二脱氧 - 11α,9α - 环氧甲撑 - 前列腺素F2)的收缩反应无增强作用。此外,雷米普利拉单独给药时引起浓度依赖性、对B2受体拮抗剂敏感的张力增加,而RA - octyl则无此作用。7. 这些发现表明,ACE抑制剂与B2受体或其信号转导途径的相互作用而非血管壁内缓激肽的蓄积,是兔冠状动脉血管床中内皮对缓激肽反应(舒张、PGI2释放)恢复的原因。

相似文献

引用本文的文献

本文引用的文献

6

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验