ENDOTHELIAL MODULATION AND CHANGES IN ENDOTHELIN PRESSOR ACTIVITY DURING HYPOXIA IN THE RAT ISOLATED PERFUSED SUPERIOR MESENTERIC ARTERIAL BED

被引:21
作者
DOUGLAS, SA [1 ]
JAMES, S [1 ]
HILEY, CR [1 ]
机构
[1] UNIV CAMBRIDGE,DEPT PHARMACOL,TENNIS COURT RD,CAMBRIDGE CB2 1QJ,ENGLAND
关键词
ENDOTHELIN-1; ENDOTHELIN-3; SARAFOTOXIN S6B; HYPOXIA; VASOCONSTRICTION; ENDOTHELIUM; 5-HYDROXYTRYPTAMINE; L-ARGININE; (-)-NORADRENALINE; N-OMEGA-NITRO-L-ARGININE METHYL ESTER;
D O I
10.1111/j.1476-5381.1991.tb09808.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
1 The isolated superior mesenteric arterial bed of the rat, perfused with Krebs-Henseleit solution containing 10-mu-M indomethacin, was used to study the effects of reducing dissolved O2 tension on the pressor responses to endothelin-1, endothelin-3 and sarafotoxin S6b. The modulation of these responses by the endothelium was investigated by removing the intima with the detergent CHAPS and, for endothelin-1, by inhibiting nitric oxide production with N-omega-nitro-L-arginine methyl ester (L-NAME). Comparison was made with the effects of lowering O2 tension on the pressor responses to noradrenaline and 5-hydroxytryptamine. 2 Lowering the perfusate O2 tension from 551 +/- 2 mmHg to 14.0 +/- 0.5 mmHg did not change the ED50 for endothelin-1 but its maximal responses (R(max)) were increased by 2.1 and 2.7 fold, respectively, in the presence and absence of endothelium. The R(max) values for endothelin-3 were also greater in hypoxia either in the presence (by 2.3 fold) or absence of the endothelium (by 1.6 times) but those for sarafotoxin S6b were only enhanced significantly by hypoxia in the absence of the intima. Hypoxia reduced the potencies of endothelin-3 and sarafotoxin S6b whether or not endothelium was present. 3 Endothelial destruction, whether in hypoxic or oxygenated conditions, increased the R(max) values for endothelin-1 and endothelin-3; at both O2 tensions those for endothelin-3 increased more than those for endothelin-1. The ED50 for endothelin-1 was unchanged by destroying the endothelium but endothelin-3 was less potent in the absence of an endothelium than in its presence. Removal of the endothelium did not change the R(max) for sarafotoxin S6b but increased its potency in both hypoxic and oxygenated tissues. 4 In hypoxia, and in the presence of both the endothelium and 100-mu-M L-NAME, the R(max) for endothelin-1 was 1.6 times greater than that in hypoxia in the absence of L-NAME. Co-infusion of 100-mu-M L-arginine, but not of 100-mu-M D-arginine, with 100-mu-M L-NAME reversed this effect. The presence of L-NAME decreased the potency of endothelin-1. 5 Destroying the endothelium did not affect the R(max) for noradrenaline in either oxygenated conditions or hypoxia. Changing O2 tension when the endothelium was intact had no effect on the R(max) but it was 11% greater in oxygenated, than in hypoxic, endothelium denuded preparations. Endothelial destruction decreased the potency of noradrenaline in hypoxia but increased it in oxygenated tissues. In hypoxia, L-NAME had no effect on the ED50 relative to control preparations with endothelium but the R(max) was 30% greater. 6 5-Hydroxytryptamine gave very small pressor responses in the presence of endothelium in both oxygenated and hypoxic tissues but the R(max) was 1.7 times greater in hypoxia. L-NAME increased the R(max) by 9.8 times in oxygenated preparations and 6.3 fold in hypoxia. The ED50 values were the same in all conditions. 7 It is concluded that, although hypoxia generally increased the R(max) for the endothelin/sarafotoxin peptides, the changes could not be explained by a simple increase in receptor number since hypoxia decreased the potency of endothelin-3 and sarafotoxin S6b. Thus alterations in receptor binding or activation properties, or both, also occurred. The changes associated with hypoxia were not common to all vasoconstrictor agonists since, in the absence of endothelial function, hypoxia did not affect the R(max) values for either noradrenaline or 5-hydroxytryptamine. Also, the pressor responses to the peptides and both the amines can be modulated by the endothelium in hypoxia as well as in oxygenated conditions.
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收藏
页码:1441 / 1448
页数:8
相关论文
共 40 条
[1]   THE BINDING OF DOXEPIN TO HISTAMINE H1-RECEPTORS IN GUINEA-PIG AND RAT-BRAIN [J].
ACEVES, J ;
MARISCAL, S ;
MORRISON, KE ;
YOUNG, JM .
BRITISH JOURNAL OF PHARMACOLOGY, 1985, 84 (02) :417-424
[2]   INFLUENCE OF ENDOTHELIN ON PIGLET CEREBRAL MICROCIRCULATION [J].
ARMSTEAD, WM ;
MIRRO, R ;
LEFFLER, CW ;
BUSIJA, DW .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 257 (02) :H707-H710
[3]   ANOXIA AND ENDOTHELIUM-DEPENDENT REACTIVITY OF THE CANINE FEMORAL-ARTERY [J].
DEMEY, JG ;
VANHOUTTE, PM .
JOURNAL OF PHYSIOLOGY-LONDON, 1983, 335 (FEB) :65-74
[4]   ENDOTHELIUM-DEPENDENT VASCULAR ACTIVITIES OF ENDOTHELIN-LIKE PEPTIDES IN THE ISOLATED SUPERIOR MESENTERIC ARTERIAL BED OF THE RAT [J].
DOUGLAS, SA ;
HILEY, CR .
BRITISH JOURNAL OF PHARMACOLOGY, 1990, 101 (01) :81-88
[5]   THE OBLIGATORY ROLE OF ENDOTHELIAL-CELLS IN THE RELAXATION OF ARTERIAL SMOOTH-MUSCLE BY ACETYLCHOLINE [J].
FURCHGOTT, RF ;
ZAWADZKI, JV .
NATURE, 1980, 288 (5789) :373-376
[6]   HYPOXIA INCREASES ENDOTHELIN RELEASE IN BOVINE ENDOTHELIAL-CELLS IN CULTURE, BUT EPINEPHRINE, NOREPINEPHRINE, SEROTONIN, HISTAMINE AND ANGIOTENSIN-II DO NOT [J].
HIEDA, HS ;
GOMEZSANCHEZ, CE .
LIFE SCIENCES, 1990, 47 (03) :247-251
[7]  
HILEY C R, 1987, British Journal of Pharmacology, V91, p378P
[8]   L-NG-NITRO-ARGININE AND ITS METHYL-ESTER ARE POTENT INHIBITORS OF NONADRENERGIC, NONCHOLINERGIC TRANSMISSION IN THE RAT ANOCOCCYGEUS [J].
HOBBS, AJ ;
GIBSON, A .
BRITISH JOURNAL OF PHARMACOLOGY, 1990, 100 (04) :749-752
[9]   HYPOXIA-INDUCED CONTRACTIONS OF PORCINE PULMONARY-ARTERY STRIPS DEPEND ON INTACT ENDOTHELIUM [J].
HOLDEN, WE ;
MCCALL, E .
EXPERIMENTAL LUNG RESEARCH, 1984, 7 (02) :101-112
[10]   CONTROL OF CORONARY VASCULAR TONE BY NITRIC-OXIDE [J].
KELM, M ;
SCHRADER, J .
CIRCULATION RESEARCH, 1990, 66 (06) :1561-1575