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猪冠状动脉对C型利钠肽的非内皮依赖性舒张和超极化作用。

Endothelium-independent relaxation and hyperpolarization to C-type natriuretic peptide in porcine coronary arteries.

作者信息

Barton M, Bény J L, d'Uscio L V, Wyss T, Noll G, Lüscher T F

机构信息

Cardiology, University Hospital Zürich, Switzerland.

出版信息

J Cardiovasc Pharmacol. 1998 Mar;31(3):377-83. doi: 10.1097/00005344-199803000-00008.

Abstract

Endothelial cells produce C-type natriuretic peptide (CNP), which has been proposed as an endothelium-derived hyperpolarizing factor. In porcine coronary arteries, we investigated the vasodilatory effects of CNP and compared them with endothelium-dependent relaxations and hyperpolarizations to bradykinin. Isolated epicardial porcine coronary arteries were studied in organ chambers, and concentration-response curves to CNP and bradykinin were obtained. Membrane potential was measured in endothelial cells and smooth muscle of intact porcine coronary arteries during stimulation with CNP or bradykinin. In precontracted porcine coronary arteries with or without endothelium, CNP (10[-10]-10[-6] M) evoked relaxations (maximum, 42 +/- 4%) smaller than those evoked by bradykinin (100 +/- 1%), blunted in preparations contracted by KCl instead of U46619 (9,11-dideoxy-11a,9a-epoxymethano-prostaglandin F2alpha; p < 0.05) and unaffected by inhibition of NO synthase (NS). CNP evoked hyperpolarization of vascular smooth muscle of similar magnitude in endothelium-intact (-4.4 +/- 1 mV) and endothelium-denuded (-4.6 +/- 1 mV) porcine coronary arteries. Bradykinin (10[-10]-10[-6] M) evoked concentration-dependent relaxations in preparations with endothelium only. Although atrial natriuretic peptide-receptor antagonist HS-142-1 (25 microM) slightly reduced the sensitivity to bradykinin (log shift at IC50, twofold; p < 0.05), it had no effect on the maximal response to bradykinin. Inhibition of NO synthase partially attenuated, whereas high potassium chloride (30 mM) markedly inhibited relaxations to bradykinin (p < 0.05). Hyperpolarization to bradykinin was much more pronounced than that to CNP (-17 +/- 3 mV; p < 0.05 vs. CNP) and was observed in endothelium-intact preparations only and unaffected by HS-142-1. In conclusion, in contrast to bradykinin, CNP induces endothelium-independent and weaker relaxation and hyperpolarization of coronary artery vascular smooth muscle, suggesting that CNP is an unlikely mediator of endothelium-dependent hyperpolarization of porcine coronary arteries.

摘要

内皮细胞产生C型利钠肽(CNP),有人提出它是一种内皮源性超极化因子。在猪冠状动脉中,我们研究了CNP的血管舒张作用,并将其与内皮依赖性舒张和对缓激肽的超极化作用进行了比较。在器官浴槽中研究分离的猪心外膜冠状动脉,获得了对CNP和缓激肽的浓度-反应曲线。在用CNP或缓激肽刺激完整猪冠状动脉的内皮细胞和平滑肌时,测量膜电位。在有或无内皮的预收缩猪冠状动脉中,CNP(10[-10]-10[-6]M)引起的舒张(最大,42±4%)小于缓激肽引起的舒张(100±1%),在用氯化钾而非U46619(9,11-二脱氧-11α,9α-环氧甲撑前列腺素F2α)收缩的标本中舒张作用减弱(p<0.05),且不受一氧化氮合酶(NS)抑制的影响。CNP在有内皮(-4.4±1mV)和无内皮(-4.6±1mV)的猪冠状动脉中引起相似程度血管平滑肌的超极化。缓激肽(10[-10]-10[-6]M)仅在有内皮标本中引起浓度依赖性舒张。虽然心房利钠肽受体拮抗剂HS-142-1(25μM)略微降低了对缓激肽的敏感性(IC50处的对数位移,两倍;p<0.05),但对缓激肽的最大反应无影响。一氧化氮合酶的抑制部分减弱了舒张,而高氯化钾(30mM)显著抑制了对缓激肽的舒张(p<0.05)。对缓激肽的超极化比对CNP的超极化更明显(-17±3mV;与CNP相比p<0.05),且仅在有内皮的标本中观察到,不受HS-142-1影响。总之,与缓激肽不同,CNP诱导冠状动脉血管平滑肌的内皮非依赖性且较弱的舒张和超极化,提示CNP不太可能是猪冠状动脉内皮依赖性超极化的介质。

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