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首页> 外文期刊>Journal of hypertension >Depolarization evoked by acetylcholine in mesenteric arteries of hypertensive rats attenuates endothelium-dependent hyperpolarizing factor.
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Depolarization evoked by acetylcholine in mesenteric arteries of hypertensive rats attenuates endothelium-dependent hyperpolarizing factor.

机译:高血压大鼠肠系膜动脉中乙酰胆碱引起的去极化减弱了内皮依赖性超极化因子。

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OBJECTIVE: During blockade of endothelium-dependent hyperpolarizing factor (EDHF), acetylcholine evoked larger and faster depolarization in mesenteric arteries of spontaneously hypertensive rats (SHR) than normotensive Wistar-Kyoto (WKY) rats. We studied the mechanism underlying this response and its role in the attenuation of EDHF. METHODS: Electrophysiology, computational modelling and myography were used to study changes in membrane potential and effects on contractility. RESULTS: The large acetylcholine-evoked depolarization in SHR was accompanied by contraction, but this was not seen in WKY rats. The depolarization depended on release of intracellular Ca2+ but was unaffected by nonselective cation channel inhibitors, gadolinium, lanthanum or amiloride. The depolarization was significantly reduced by the Ca2+-dependent Cl- channel inhibitors, niflumic acid or flufenamic acid, or alterations in Cl- gradients using bumetanide (Na/K/Cl transporter inhibitor) or external Cl- replacement with isethionate. These drugs altered the time course of EDHF-evoked hyperpolarizations in SHR, making them indistinguishable from those in WKY rats. EDHF-induced relaxation was less sensitive to acetylcholine in SHR than in WKY rats, but this difference was eliminated following artery pretreatment with bumetanide. Computational modelling in which the SHR fast depolarizing response was selectively modulated mimicked physiologically acquired results obtained in SHR and WKY rats during Cl- -channel blockade. CONCLUSIONS: Acetylcholine evokes a fast depolarization in SHR but not in WKY rats, mediated by the opening of Ca2+-dependent Cl- channels. The depolarization is responsible for a constriction that reduces EDHF-mediated relaxation. Data suggest that Ca2+-dependent Cl- channels may provide a novel therapeutic target for improvement of endothelial dysfunction during hypertension.
机译:目的:在阻断内皮依赖性超极化因子(EDHF)的过程中,与正常血压的Wistar-Kyoto(WKY)大鼠相比,乙酰胆碱引起的自发性高血压大鼠(SHR)肠系膜动脉的去极化更大,更快。我们研究了这种反应的机制及其在EDHF衰减中的作用。方法:使用电生理学,计算模型和肌成像技术研究膜电位的变化及其对收缩力的影响。结果:SHR中乙酰胆碱引起的大量去极化伴随收缩,但是在WKY大鼠中未见到收缩。去极化取决于细胞内Ca 2+的释放,但不受非选择性阳离子通道抑制剂,、镧或阿米洛利的影响。 Ca 2+依赖的Cl通道抑制剂,尼氟酸或氟苯那酸或使用布美他尼(Na / K / Cl转运蛋白抑制剂)改变Cl-的梯度,或用异乙硫酸酯替代外部的Cl-,可以大大减少去极化。这些药物改变了SHR中EDHF引起的超极化的时程,使其与WKY大鼠中的超极化没有区别。 EDHF诱导的舒张反应对SHR中的乙酰胆碱的敏感性不如WKY大鼠,但用布美他尼对动脉进行预处理后,这种差异得以消除。计算模型,其中SHR快速去极化反应被选择性地调节,模仿了在SHR和WKY大鼠在Cl通道阻滞过程中获得的生理学获得的结果。结论:乙酰胆碱在SHR中引起快速去极化,但在WKY大鼠中却不起作用,这是由Ca2 +依赖性Cl-通道的开放介导的。去极化导致收缩,该收缩减少了EDHF介导的松弛。数据表明,依赖Ca2 +的Cl-通道可能为改善高血压期间的内皮功能障碍提供新的治疗靶点。

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