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瞬时受体电位香草酸亚型4阳离子通道在去氧肾上腺素诱导的大鼠肺动脉收缩调节中的作用

THE ROLE OF TRPV4 CATION CHANNELS IN THE REGULATION OF PHENYLEPHRINE-INDUCED CONTRACTION OF RAT PULMONARY ARTER.

作者信息

Dryn Dariia, Melnyk Mariia, Kizub Ihor, Hu Hongzhen, Soloviev Anatoliy, Zholos Alexander

出版信息

Fiziol Zh (1994). 2016;62(2):79-86. doi: 10.15407/fz62.02.079.

Abstract

The aim of our study was to investigate the role of mechanosensitive TRPV4 channels in the regulation of rat pulmonary artery smooth muscle (PASM) contractile activity induced by the activation of α-adrenoceptors and the possibility of their use as novel pharmacological targets in pulmonary hypertension. TRPV4 selective agonist, GSK1016790A, in the presence of the agonist of α-adrenoceptors phenylephrine (PhE) evoked biphasic contractile reaction with initial relaxation (63,5% ± 7,1) followed by significant vasoconstriction (142% ± 17,9). GSK1016790A evoked similar effects in PASM rings with and without endothelium, indicating that its main site of action was TRPV4 expressed in smooth muscle cells. TRPV4 selective blocker, HC-067047, completely inhibited the effects of GSK1016790A confirming the specific role of TRPV4 in these vascular responses. Application of Ca2+-free external solution reduced the relaxation phase and completely abolished the sustained contractile response to GSK1016790A (from 43,9 % to 0,3 %). The biphasic reaction could be explained as an initial calcium store depletion by PhE and further calciuminduced calcium release activated by TRPV4 that causes BKCa activation, membrane hyperpolarisation and vasorelaxation, followed by Ca2+ entry via TRPV4 and contraction. We conclude that TRPV4 channels play an important role in the regulation of the adrenergic vascular tone of PASM cells, but TRPV4 activation mechanism(s) and signaling pathways remain unclear.

摘要

我们研究的目的是探究机械敏感性瞬时受体电位香草酸亚型4(TRPV4)通道在α-肾上腺素能受体激活诱导的大鼠肺动脉平滑肌(PASM)收缩活动调节中的作用,以及将其用作肺动脉高压新药理学靶点的可能性。在α-肾上腺素能受体激动剂去氧肾上腺素(PhE)存在的情况下,TRPV4选择性激动剂GSK1016790A引发了双相收缩反应,最初是舒张(63.5%±7.1),随后是显著的血管收缩(142%±17.9)。GSK1016790A在有和没有内皮的PASM环中引发了类似的效应,表明其主要作用位点是平滑肌细胞中表达的TRPV4。TRPV4选择性阻滞剂HC-067047完全抑制了GSK1016790A的效应,证实了TRPV4在这些血管反应中的特定作用。应用无钙的外部溶液减少了舒张期,并完全消除了对GSK1016790A的持续收缩反应(从43.9%降至0.3%)。这种双相反应可以解释为,首先是PhE导致钙储存耗竭,随后是TRPV4激活引发钙诱导的钙释放,从而导致大电导钙激活钾通道(BKCa)激活、膜超极化和血管舒张,接着是Ca2+通过TRPV4内流并引起收缩。我们得出结论,TRPV4通道在PASM细胞肾上腺素能血管张力的调节中起重要作用,但TRPV4的激活机制和信号通路仍不清楚。

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