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首页> 外文期刊>American Journal of Physiology >Contribution of Cav1.2 Ca2+ channels and store-operated Ca2+ entry to pig urethral smooth muscle contraction
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Contribution of Cav1.2 Ca2+ channels and store-operated Ca2+ entry to pig urethral smooth muscle contraction

机译:CAV1.2 CA2 +通道的贡献和商店运营的CA2 +进入猪尿道平滑肌收缩

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摘要

Urethral smooth muscle (USM) generates tone to prevent urine leakage from the bladder during filling. USM tone has been thought to be a voltage-dependent process, relying on Ca2+ influx via voltage-dependent Ca2+ channels in USM cells, modulated by the activation of Ca2+-activated Cl- channels encoded by Ano1. However, recent findings in the mouse have suggested that USM tone is voltage independent, relying on Ca2+ influx through Orai channels via store-operated Ca2+ entry (SOCE). We explored if this pathway also occurred in the pig using isometric tension recordings of USM tone. Pig USM strips generated myogenic tone, which was nearly abolished by the Cav1.2 channel antagonist nifedipine and the ATP-dependent K+ channel agonist pinacidil. Pig USM tone was reduced by the Orai channel blocker GSK-7975A. Electrical field stimulation (EFS) led to phentolamine-sensitive contractions of USM strips. Contractions of pig USM were also induced by phenylephrine. Phenylephrine-evoked and EFS-evoked contractions of pig USM were reduced by ~50-75% by nifedipine and ~30% by GSK-7975A. Inhibition of Ano1 channels had no effect on tone or EFS-evoked contractions of pig USM. In conclusion, unlike the mouse, pig USM exhibited voltage-dependent tone and agonist/EFS-evoked contractions. Whereas SOCE plays a role in generating tone and agonist/neural-evoked contractions in both species, this dominates in the mouse. Tone and agonist/EFS-evoked contractions of pig USM are the result of Ca2+ influx primarily through Cav1.2 channels, and no evidence was found supporting a role of Ano1 channels in modulating these mechanisms.
机译:尿道平滑肌(USM)产生色调,以防止在填充过程中从膀胱泄漏。 USM音调已被认为是一种电压依赖性过程,依赖于通过USM细胞中的电压依赖性CA2 +通道依赖于CA2 +流入,通过ANO1编码的CA2 + -Activated CL-通道的激活来调制。然而,鼠标最近的发现表明,USM音调是独立的电压,依靠CA2 +流入通过奥拉伊通道通过存储操作的CA2 +条目(SOCE)。我们探索了使用USM音调的等距张力记录在猪中也发生了这条路。猪USM条带产生肌遗传学,几乎废除了CAV1.2通道拮抗剂硝苯地平和ATP依赖性K +通道激动剂Pinacidil。奥莱渠道阻滞剂GSK-7975A减少了猪USM音调。电场刺激(EFS)导致USM条的植物敏感性收缩。猪USM的收缩也被苯妥桔诱导。猪USM的去氧杂志和EFS诱发的收缩通过NifeDipine降低了〜50-75%,GSK-7975A的〜30%降低。抑制ANO1通道对猪USM的音调或EFS诱发收缩没有影响。总之,与小鼠不同,猪USM表现出电压依赖性的基调和激动剂/ EFS诱发收缩。虽然SOCE在两种物种中发挥着基调和激动剂/神经诱发的收缩起作用,这是在鼠标中的占主导地位。猪USM的音调和eFS诱发的收缩是CA2 +涌入主要通过CAV1.2通道的结果,并且没有发现证据支持ANO1通道在调节这些机制方面的作用。

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