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首页> 外文期刊>American Journal of Physiology >Inhibition of endothelium-dependent vasorelaxation by extracellular K(+): a novel controlling signal for vascular contractility.
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Inhibition of endothelium-dependent vasorelaxation by extracellular K(+): a novel controlling signal for vascular contractility.

机译:通过细胞外K(+)抑制内皮依赖性血管舒张:血管收缩的新型控制信号。

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The effects of extracellular K+ on endothelium-dependent relaxation (EDR) and on intracellular Ca2+ concentration ([Ca2+]i) were examined in mouse aorta, mouse aorta endothelial cells (MAEC), and human umbilical vein endothelial cells (HUVEC). In mouse aortic rings precontracted with prostaglandin F2alpha or norepinephrine, an increase in extracellular K+ concentration ([K+]o) from 6 to 12 mM inhibited EDR concentration dependently. In endothelial cells, an increase in [K+]o inhibited the agonist-induced [Ca2+]i increase concentration dependently. Similar to K+, Cs+ also inhibited EDR and the increase in [Ca2+]i concentration dependently. In current-clamped HUVEC, increasing [K+]o from 6 to 12 mM depolarized membrane potential from -32.8 +/- 2.7 to -8.6 +/- 4.9 mV (n = 8). In voltage-clamped HUVEC, depolarizing the holding potential from -50 to -25 mV decreased [Ca2+]i significantly from 0.95 +/- 0.03 to 0.88 +/- 0.03 microM (n = 11, P < 0.01) and further decreased [Ca2+]i to 0.47 +/- 0.04 microM by depolarizing the holding potential from -25 to 0 mV (n = 11, P < 0.001). Tetraethylammonium (1 mM) inhibited EDR and the ATP-induced [Ca2+]i increase in voltage-clamped MAEC. The intermediate-conductance Ca2+-activated K+ channel openers 1-ethyl-2-benzimidazolinone, chlorozoxazone, and zoxazolamine reversed the K+-induced inhibition of EDR and increase in [Ca2+]i. The K+-induced inhibition of EDR and increase in [Ca2+]i was abolished by the Na+-K+ pump inhibitor ouabain (10 microM). These results indicate that an increase of [K+]o in the physiological range (6-12 mM) inhibits [Ca2+]i increase in endothelial cells and diminishes EDR by depolarizing the membrane potential, decreasing K+ efflux, and activating the Na+-K+ pump, thereby modulating the release of endothelium-derived vasoactive factors from endothelial cells and vasomotor tone.
机译:在小鼠主动脉,小鼠主动脉内皮细胞(MAEC)和人脐静脉内皮细胞(HUVEC)中检查了细胞外K +对内皮依赖性舒张(EDR)和细胞内Ca2 +浓度([Ca2 +] i)的影响。在与前列腺素F2alpha或去甲肾上腺素预收缩的小鼠主动脉环中,细胞外K +浓度([K +] o)从6到12 mM的增加会依赖性地抑制EDR浓度。在内皮细胞中,[K +] o的增加会依赖性地抑制激动剂诱导的[Ca2 +] i的浓度增加。与K +相似,Cs +也可以抑制EDR和[Ca2 +] i浓度的依赖性。在电流钳制的HUVEC中,将[K +] o从6 mM增加到12 mM,将去极化膜电势从-32.8 +/- 2.7增加到-8.6 +/- 4.9 mV(n = 8)。在电压钳制的HUVEC中,将保持电势从-50降低到-25 mV,使[Ca2 +] i从0.95 +/- 0.03降低至0.88 +/- 0.03 microM(n = 11,P <0.01),并进一步降低[Ca2 +]通过将保持电势从-25降低到0 mV(n = 11,P <0.001),将] i降至0.47 +/- 0.04 microM。四乙基铵(1 mM)抑制了电压限制的MAEC中的EDR,并且ATP诱导的[Ca2 +] i升高。中等电导的Ca2 +激活的K +通道开放剂1-乙基-2-苯并咪唑啉酮,氯唑沙宗和唑恶唑胺逆转了K +诱导的EDR抑制和[Ca2 +] i的增加。 Na + -K +泵抑制剂哇巴因(10 microM)消除了K +诱导的EDR抑制和[Ca2 +] i的增加。这些结果表明,在生理范围(6-12 mM)中增加[K +] o可以抑制内皮细胞中[Ca2 +] i的增加,并通过使膜电位去极化,降低K +流出并激活Na + -K +泵来减少EDR。 ,从而调节内皮细胞释放的血管源性血管活性因子和血管舒缩张力。

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