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首页> 外文期刊>American Journal of Physiology >Kv7 potassium channels in airway smooth muscle cells:signal transduction intermediates and pharmacological targets for bronchodilator therapy
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Kv7 potassium channels in airway smooth muscle cells:signal transduction intermediates and pharmacological targets for bronchodilator therapy

机译:气道平滑肌细胞中的Kv7钾通道:信号转导中间体和支气管扩张剂治疗的药理靶标

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摘要

Expression and function of Kv7 (KCNQ) voltage-activated potassium channels in guinea pig and human airway smooth muscle cells (ASMCs) were investigated by quantitative reverse transcriptase polymerase chain reaction (qRTPCR), patch-clamp electrophysiology, and precision-cut lung slices. qRT-PCR revealed expression of multiple KCNQ genes in both guinea pig and human ASMCs. Currents with electrophysiological and pharmacological characteristics of Kv7 currents were measured in freshly isolated guinea pig and human ASMCs. In guinea pig ASMCs, Kv7 currents were significantly suppressed by application of the bronchoconstrictor agonists methacholine (100 nM) or histamine (30 μM), but current amplitudes were restored by addition of a Kv7 channel activator, flupirtine (10 μM). Kv7 currents in guinea pig ASMCs were also significantly enhanced by another Kv7.2-7.5 channel activator, retigabine, and by celecoxib and 2,5-dimethyl celecoxib. In precision-cut human lung slices, constriction of airways by histamine was significantly reduced in the presence of flupirtine. Kv7 currents in both guinea pig and human ASMCs were inhibited by the Kv7 channel blocker XE991. In human lung slices, XE991 induced robust airway constriction, which was completely reversed by addition of the calcium channel blocker verapamil. These findings suggest that Kv7 channels in ASMCs play an essential role in the regulation of airway diameter and may be targeted pharmacologically to relieve airway hyperconstriction induced by elevated concentrations of bronchoconstrictor agonists.
机译:通过定量逆转录酶聚合酶链反应(qRTPCR),膜片钳电生理学和精确切割的肺切片,研究了Kv7(KCNQ)电压激活的钾离子通道在豚鼠和人气道平滑肌细胞(ASMC)中的表达和功能。 qRT-PCR揭示了豚鼠和人ASMC中多个KCNQ基因的表达。在刚分离的豚鼠和人ASMC中测量了具有Kv7电流电生理学和药理学特征的电流。在豚鼠ASMC中,通过应用支气管收缩激动剂乙酰甲胆碱(100 nM)或组胺(30μM)可以显着抑制Kv7电流,但是通过添加Kv7通道激活剂氟吡汀(10μM)可以恢复电流幅度。豚鼠ASMC中的Kv7电流也被另一种Kv7.2-7.5通道激活剂瑞替加滨,塞来昔布和2,5-二甲基塞来昔布显着增强。在精确切割的人肺切片中,在存在氟吡汀的情况下,组胺对气道的收缩明显减少。 Kv7通道阻滞剂XE991抑制了豚鼠和人ASMC中的Kv7电流。在人的肺片中,XE991诱导了强烈的气道收缩,这通过添加钙通道阻滞剂维拉帕米被完全逆转。这些发现表明,ASMC中的Kv7通道在气道直径的调节中起着至关重要的作用,并且可能在药理上靶向缓解由浓度升高的支气管收缩激动剂引起的气道过度收缩。

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