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首页> 外文期刊>Fundamental & clinical pharmacology. >Cardiac cellular actions of hydrochlorothiazide.
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Cardiac cellular actions of hydrochlorothiazide.

机译:氢氯噻嗪的心脏细胞作用。

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In long term treatment, thiazide diuretics such as hydrochlorothiazide (HCTZ) lower blood pressure by decreasing peripheral resistance rather than by their diuretic effect. This action has been attributed to the opening of Ca2+-activated K+ channels in vascular smooth muscle cells. However, little is known about their cardiac cellular actions. Here we investigated the possible actions of HCTZ on action potential and contraction of rat ventricular muscle strips and on the ionic currents of isolated rat ventricular cardiomyocytes. HCTZ depressed ventricular contraction with an IC30 of 1.85 &mgr;M (60% decrease at 100 &mgr;M). Action potential duration at -60 mV and maximal rate of depolarization were, however, only slightly decreased by 12% and 22%, respectively, at 100 &mgr;M. At the single cell level, HCTZ (100 &mgr;M) depressed the fast Na+ current (INa) and the L-type Ca2+ current (ICaL) by 30% and 20%, respectively. The effects on ICaL were not voltage-or frequency-dependent. In cells intracellularly perfused with 50 &mgr;M cyclic adenosine, monophosphate HCTZ reduced ICaL by 33%. The transient (Ito), the delayed rectifier and the inward rectifier potassium currents were decreased by 20% at 100 &mgr;M HCTZ. The effects on Ito were voltage-dependent. In conclusion, HCTZ at high concentrations possesses a negative inotropic action that could be in part due to its blocking action on INa and ICaL. The actions of HCTZ on multiple cardiac ionic currents could explain its weak effect on action potential duration.
机译:在长期治疗中,噻嗪类利尿剂(如氢氯噻嗪(HCTZ))通过降低周围阻力而不是通过其利尿作用来降低血压。该作用归因于血管平滑肌细胞中Ca2 +激活的K +通道的开放。但是,对其心脏细胞的作用知之甚少。在这里,我们研究了HCTZ对大鼠心室肌条的动作电位和收缩以及离体大鼠心室心肌细胞离子电流的可能作用。 HCTZ抑制心室收缩,IC30为1.85μM(在100μM时降低60%)。然而,在100μM时,在-60 mV时的动作电位持续时间和最大去极化率分别仅分别略微降低了12%和22%。在单细胞水平上,HCTZ(100μM)将快速Na +电流(INa)和L型Ca2 +电流(ICaL)分别降低了30%和20%。对ICaL的影响与电压或频率无关。在细胞内灌注50μM环状腺苷的细胞中,单磷酸HCTZ使ICaL降低33%。在100 MHCTZ下,瞬态(Ito),延迟整流器和向内整流器钾电流降低了20%。对Ito的影响取决于电压。总之,高浓度的HCTZ具有负性变力作用,这可能部分是由于其对INa和ICaL的阻断作用。 HCTZ对多种心脏离子电流的作用可以解释其对动作电位持续时间的弱影响。

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