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通过阻断钙激活钾通道抑制大鼠冠状动脉中cAMP介导的舒张。

Inhibition of cAMP mediated relaxation in rat coronary vessels by block of Ca++ activated K+ channels.

作者信息

Price J M, Cabell J F, Hellermann A

机构信息

University of South Florida, College of Medicine, Department of Physiology and Biophysics, Tampa 33612, USA.

出版信息

Life Sci. 1996;58(24):2225-32. doi: 10.1016/0024-3205(96)00217-2.

Abstract

The hypothesis for this study is that block of calcium activated potassium (KCa) channels inhibits cAMP induced relaxation in pressurized rat coronary resistance arteries. Pressure-diameter experiments with septal arteries (200-270 microns internal diameter at 60 mmHg and maximum dilation) showed significant basal tone over a range of pressure from 40-120 mmHg. The level of tone was increased with the thromboxane A2 analogue 9,11-dideoxy-11 alpha, 9 alpha-epoxy-methanoprostaglandin F2 alpha (U46619) in all experiments. Receptor activation of the cAMP pathway was done with adenosine (ADO) and isoproterenol (ISO). Tetraethylammonium ion (TEA+), 1mM, significantly inhibited relaxation to ADO (10(-6)-10(-3)M) with a maximal inhibition of 75 +/- 7% (as a % of maximum diameter change with the vasodilator alone) at 10(-3)M ADO. TEA+ inhibited ISO (10(-6)M) relaxation by 63 +/- 9%. Direct activation of the cAMP pathway was done with forskolin and 8-bromo-cAMP. TEA+ significantly inhibited forskolin (10(-6)-10(-4)M) induced relaxation with a maximal inhibition of 81.3 +/- 1.2% at 10(-4)M forskolin. TEA+ and iberiotoxin (10(-7)M) significantly inhibited 8- bromo-cAMP (10(-3)M) induced relaxation by 72 +/- 5% and 56 +/- 3% respectively. The effect of TEA+ on relaxation induced by nitroprusside (a cGMP dependent vasodilator) was not significant. The results show that rat coronary resistance arteries possess significant myogenic tone and modulation of Kca channels plays a major role in cAMP mediated relaxation.

摘要

本研究的假设是,钙激活钾(KCa)通道的阻断会抑制加压大鼠冠状动脉阻力血管中cAMP诱导的舒张。对间隔动脉(60 mmHg时内径为200 - 270微米且最大扩张)进行的压力-直径实验表明,在40 - 120 mmHg的压力范围内存在显著的基础张力。在所有实验中,血栓素A2类似物9,11 - 二脱氧 - 11α,9α - 环氧 - 甲烷前列腺素F2α(U46619)可使张力水平升高。通过腺苷(ADO)和异丙肾上腺素(ISO)激活cAMP途径的受体。1 mM的四乙铵离子(TEA +)可显著抑制对ADO(10(-6)-10(-3)M)的舒张反应,在10(-3)M ADO时最大抑制率为75±7%(以单独使用血管舒张剂时最大直径变化的百分比表示)。TEA +抑制ISO(10(-6)M)引起的舒张达63±9%。通过福斯高林和8 - 溴 - cAMP直接激活cAMP途径。TEA +显著抑制福斯高林(10(-6)-10(-4)M)诱导的舒张,在10(-4)M福斯高林时最大抑制率为81.3±1.2%。TEA +和iberiotoxin(10(-7)M)分别显著抑制8 - 溴 - cAMP(10(-3)M)诱导的舒张达72±5%和56±3%。TEA +对硝普钠(一种cGMP依赖性血管舒张剂)诱导的舒张作用不显著。结果表明,大鼠冠状动脉阻力血管具有显著的肌源性张力,Kca通道的调节在cAMP介导的舒张中起主要作用。

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