Diéguez G, García J L, Fernández N, García-Villalón A L, Monge L, Gómez B
Departamento de Fisiología, Facultad de Medicina, Universidad Autónoma, Madrid, Spain.
Am J Physiol. 1992 Oct;263(4 Pt 2):R834-9. doi: 10.1152/ajpregu.1992.263.4.R834.
In vivo and in vitro effects of endothelin-1 (ET-1) on cerebral and coronary vasculature of goats were examined and compared. In six anesthetized goats intravenous injections of ET-1 (0.1-0.8 nmol) increased arterial pressure, did not change the middle cerebral (MCA) and left anterior descending or left circumflex coronary (LCC) arterial blood flows (electromagnetically measured), and increased cerebral and coronary vascular resistances. In four other anesthetized goats intra-arterial injections of ET-1 (0.01-0.3 nmol) decreased the MCA flow less than the LCC flow (maximal reduction was 20 and 80%, respectively) and only the highest dose increased arterial pressure. In isolated segments from large arteries ET-1 (10(-11) to 10(-7) M) caused concentration-dependent isometric contractions, the concentration causing 50% of the maximal effect and the maximal contraction being lower in cerebral arteries than in coronary arteries. The in vitro reactivity of both arteries was unaffected by endothelium removal or by indomethacin (10(-5) M). Therefore ET-1 produces cerebral and coronary vasoconstriction in vivo and in vitro, probably by acting directly on vascular musculature. Although the sensitivity is higher in isolated cerebral arteries than in coronary arteries, the reactivity in vivo could be lower in the cerebral circulation than in the coronary circulation to this endothelium-derived peptide.
研究并比较了内皮素 -1(ET -1)对山羊脑和冠状动脉系统的体内及体外效应。在六只麻醉山羊中,静脉注射ET -1(0.1 - 0.8纳摩尔)可使动脉压升高,不改变大脑中动脉(MCA)以及左前降支或左旋冠状动脉(LCC)的动脉血流量(通过电磁测量),并增加脑和冠状动脉阻力。在另外四只麻醉山羊中,动脉内注射ET -1(0.01 - 0.3纳摩尔)使MCA血流量的减少幅度小于LCC血流量(最大减少幅度分别为20%和80%),且只有最高剂量能使动脉压升高。在大动脉的离体节段中,ET -1(10⁻¹¹至10⁻⁷摩尔/升)引起浓度依赖性等长收缩,引起最大效应50%的浓度以及最大收缩幅度在脑动脉中低于冠状动脉。去除内皮或使用吲哚美辛(10⁻⁵摩尔/升)均不影响这两种动脉的体外反应性。因此,ET -1在体内和体外均可产生脑和冠状动脉收缩,可能是通过直接作用于血管平滑肌。尽管离体脑动脉的敏感性高于冠状动脉,但在体内,脑循环对这种内皮衍生肽的反应性可能低于冠状动脉循环。