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An evaluation of potassium ions as endothelium-derived hyperpolarizing factor in porcine coronary arteries

机译:钾离子作为猪冠状动脉内皮源性超极化因子的评估

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class="enumerated" style="list-style-type:decimal">In the rat hepatic artery, the endothelium-derived hyperpolarizing factor (EDHF) was identified as potassium. Potassium hyperpolarizes the smooth muscles by gating inward rectified potassium channels and by activating the sodium-potassium adenosine triphosphatase (Na+-K+ATPase). Our goal was to examine whether potassium could explain the EDHF in porcine coronary arteries.On coronary strips, the inhibition of calcium-dependent potassium channels with 100 nM apamin plus 100 μM charibdotoxin inhibited the endothelium-dependent relaxations, produced by 10 nM substance P and 300 nM bradykinin and resistant to nitro-L-arginine and indomethacin.The scavenging of potassium with 2 mM Kryptofix 2.2.2 abolished the endothelium-dependent relaxations produced by the kinins and resistant to nitro-L-arginine and indomethacin.Forty μM 18α glycyrrethinic acid or 50 μM palmitoleic acid, both uncoupling agents, did not inhibit these kinin relaxations. Therefore, EDHF does not result from an electrotonic spreading of an endothelial hyperpolarization.Barium (0.3 nM) did not inhibit the kinin relaxations resistant to nitro-L-arginine and indomethacin. Therefore, EDHF does not result from the activation of inward rectified potassium channels.Five hundred nM ouabain abolished the endothelium-dependent relaxations resistant to nitro-L-arginine and indomethacin without inhibiting the endothelium-derived NO relaxation.The perifusion of a medium supplemented with potassium depolarized and contracted a coronary strip; however, the short application of potassium hyperpolarized the smooth muscles.These results are compatible with the concept that, in porcine coronary artery, the EDHF is potassium released by the endothelial cells and that this ion hyperpolarizes and relaxes the smooth muscles by activating the Na+-K+ATPase.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在大鼠肝动脉中,内皮源超极化因子(EDHF)被确定为钾。钾通过门控向内的钾离子通道并激活钠钾腺苷三磷酸酶(Na + -K + ATPase)来使平滑肌超极化。我们的目标是检查钾是否可以解释猪冠状动脉中的EDHF。 在冠状动脉条上,用100 nM的阿帕明和100μM的炭疽毒素抑制钙依赖性钾通道可抑制内皮依赖性松弛,由10 nM物质P和300 nM缓激肽产生,对硝基L-精氨酸和消炎痛具有抗性。 用2 mM Kryptofix 2.2.2清除钾消除了激肽和对硝基-L-精氨酸和吲哚美辛具有抗性。 40μM的18α甘油维甲酸或50μM的棕榈油酸,两者都是不偶联的,均不能抑制激肽的松弛。因此,EDHF不是由内皮超极化的电声扩散引起的。 钡(0.3 nM)不能抑制对硝基L-精氨酸和消炎痛的激肽松弛。因此,EDHF不是由内向整流的钾离子通道的激活引起的。 五百nM哇巴因废除了对硝基-L-精氨酸和吲哚美辛有抵抗力的内皮依赖性松弛反应,而没有抑制内皮来源的NO松弛反应。 补充了钾的去极化和收缩冠状动脉带的培养基的灌注; 这些结果与以下概念相吻合:在猪冠状动脉中,EDHF是内皮细胞释放的钾,并且该离子使细胞超极化并松弛。通过激活Na + -K + ATPase平滑肌。

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