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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Celecoxib blocks cardiac Kv1.5, Kv4.3 and Kv7.1 (KCNQ1) channels: effects on cardiac action potentials.
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Celecoxib blocks cardiac Kv1.5, Kv4.3 and Kv7.1 (KCNQ1) channels: effects on cardiac action potentials.

机译:塞来昔布阻断心脏Kv1.5,Kv4.3和K​​v7.1(KCNQ1)通道:对心脏动作电位的影响。

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Celecoxib is a COX-2 inhibitor that has been related to an increased cardiovascular risk and that exerts several actions on different targets. The aim of this study was to analyze the effects of this drug on human cardiac voltage-gated potassium channels (Kv) involved on cardiac repolarization Kv1.5 (I(Kur)), Kv4.3+KChIP2 (I(to1)) and Kv7.1+KCNE1 (I(Ks)) and to compare with another COX-2 inhibitor, rofecoxib. Currents were recorded in transfected mammalian cells by whole-cell patch-clamp. Celecoxib blocked all the Kv channels analyzed and rofecoxib was always less potent, except on Kv4.3+KChIP2 channels. Kv1.5 block increased in the voltage range of channel activation, decreasing at potentials positive to 0 mV. The drug modified the activation curve of the channels that became biphasic. Block was frequency-dependent, increasing at fastest frequencies. Celecoxib effects were not altered by TEA(out) in R487Y mutant Kv1.5 channels but the kinetics of block were slower and the degree of block was smaller with TEA(in), indicating that celecoxib acts from the cytosolic side. We confirmed the blocking properties of celecoxib on native Kv currents from rat vascular cells, where Kv1.5 are the main contributors (IC(50) approximately 7 muM). Finally, we demonstrate that celecoxib prolongs the action potential duration in mouse cardiac myocytes and shortens it in guinea pig cardiac myocytes, suggesting that Kv block induced by celecoxib may be of clinical relevance.
机译:塞来昔布是一种COX-2抑制剂,与心血管风险增加有关,并且对不同的靶标发挥多种作用。这项研究的目的是分析这种药物对参与心脏复极Kv1.5(I(Kur)),Kv4.3 + KChIP2(I(to1))和心脏复极的人心脏电压门控钾通道(Kv)的影响。 Kv7.1 + KCNE1(I(Ks)),并与另一种COX-2抑制剂rofecoxib进行比较。通过全细胞膜片钳在转染的哺乳动物细胞中记录电流。塞来昔布阻断了所有分析的Kv通道,除Kv4.3 + KChIP2通道外,rofecoxib的效力始终较弱。 Kv1.5阻滞在通道激活的电压范围内增加,在正电位至0 mV时降低。该药物改变了双相通道的激活曲线。块与频率有关,以最快的频率增加。在R487Y突变体Kv1.5通道中,塞来昔布的作用不受TEA(out)的影响,但TEA(in)的阻断动力学较慢,阻断程度较小,表明塞来昔布从胞质侧起作用。我们证实了塞来昔布对大鼠血管细胞天然Kv电流的阻断特性,其中Kv1.5是主要贡献者(IC(50)约为7μM)。最后,我们证明了celecoxib延长了小鼠心肌细胞的动作电位持续时间,并缩短了豚鼠心肌细胞的动作电位持续时间,表明celecoxib诱导的Kv阻滞可能具有临床意义。

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