INHIBITION OF THE ANGIOTENSIN-CONVERTING ENZYME BY PERINDOPRILAT AND RELEASE OF NITRIC-OXIDE

被引:16
作者
DESTA, B [1 ]
VANHOUTTE, PM [1 ]
BOULANGER, CM [1 ]
机构
[1] BAYLOR COLL MED,CTR EXPTL THERAPEUT,HOUSTON,TX 77030
关键词
NITRIC OXIDE; CARBOXYPEPTIDASE; HOE-140; B-2; RECEPTORS; B-1;
D O I
10.1016/0895-7061(95)00026-L
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Experiments were designed to investigate the mechanism underlying the endothelium-dependent relaxations to perindoprilat, a converting enzyme inhibitor, in canine coronary arteries previously exposed to bradykinin. Rings suspended in organ chambers were exposed to bradykinin for 3 min and washed extensively for 250 min. In rings previously exposed to the peptide, bradykinin induced relaxations which were augmented in the presence of perindoprilat; this response was not affected by indomethacin, but nitro-L-arginine induced a rightward shift of the relaxation to the pep;ide without affecting its maximal effect. In canine coronary arteries previously exposed to the peptide, perindoprilat caused endothelium-dependent relaxations (IC50 = 7.83), which had been observed previously at concentrations where the converting enzyme inhibitor did not augment the response to bradykinin. Carboxypeptidase B, but not aprotinin, impaired the relaxation to perindoprilat, suggesting a contribution of bradykinin. The relaxation to perindoprilat was not affected by the B-1 antagonist Leu(8)-des-Arg(9)-bradykinin. However, the bradykinin B-2 antagonist HOE-140 displayed a noncompetitive antagonism against the response to perindoprilat. The response to the converting enzyme inhibitor was not affected by indomethacin but was impaired significantly by nitro-L-arginine. The present findings suggest that in canine coronary arteries previously exposed to bradykinin, the relaxation to perindopriIat is mediated mainly by endothelium-derived nitric oxide. In addition, the response to perindopriIat may be due to factors other than just protection of bound bradykinin from degradation.
引用
收藏
页码:S1 / S6
页数:6
相关论文
共 17 条
[1]  
Furchgott RF, Zawadzki JV, The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine, Nature, 288, pp. 373-376, (1980)
[2]  
Furchgott RF, Vanhoutte PM, Endothelium-derived relaxing and contracting factors, FASEB J, 3, pp. 2007-2018, (1990)
[3]  
Luscher TF, Vanhoutte PM, The Endothelium: Modulator of Cardiovascular Function, pp. 1-228, (1990)
[4]  
Moncada S, Palmer RMJ, Higgs EA, Nitric oxide
[5]  
physiology, pathophysiology and pharmacology, Pharmacol Rev, 43, pp. 109-142, (1991)
[6]  
Nagao T, Vanhoutte PM, Endothelium-derived hyper polarizing factor, Am J Resp Cell Mol Biol, 8, pp. 1-6, (1993)
[7]  
Vanhoutte PM, Auch-Schwelk W, Biondi ML, Et al., Why are converting enzyme inhibitors vasodilators?, British Journal of Clinical Pharmacology, 28, pp. 95S-104S, (1989)
[8]  
Vanhoutte PM, Boulanger CM, Vidal M, Mombouli J-V, Endothelium-derived mediators and the renin angiotensin system, pp. 1-15, (1993)
[9]  
Kerth PA, Vanhoutte PM, Effects of perindoprilat on endothelium-dependent relaxation and contractions in isolated blood vessels, Am J Hypertens, 4, pp. 226S-234S, (1991)
[10]  
Mombouli J-V, Nephtali M, Vanhoutte PM, Effects of the converting enzyme inhibitor cilazaprilat on endothelium-dependent responses, Hypertension, 18, pp. 22-29, (1991)