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首页> 外文期刊>American Journal of Physiology >Inhibition of phosphodiesterases relaxes detrusor smooth muscle via activation of the large-conductance voltage- and Ca~(2+)-activated K~+ channel
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Inhibition of phosphodiesterases relaxes detrusor smooth muscle via activation of the large-conductance voltage- and Ca~(2+)-activated K~+ channel

机译:磷酸二酯酶的抑制通过激活大电导电压和Ca〜(2 +) - 活化的K〜+通道,松弛尿造肌裂解肌肉

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Detrusor smooth muscle (DSM) exhibits increased spontaneous phasic contractions under pathophysiological conditions such as detrusor overactivity (DO). Our previous studies showed that activation of cAMP signaling pathways reduces DSM contractility by increasing the large-conductance voltage- and Ca~(2+)-activated K~+ (BK) channel activity. Here, we tested the hypothesis whether inhibition of phosphodiesterases (PDEs) can reduce guinea pig DSM excitability and contractility by increasing BK channel activity. Utilizing isometric tension recordings of DSM isolated strips and the perforated patch-clamp technique on freshly isolated DSM cells, we examined the mechanism of DSM relaxation induced by PDE inhibition. Inhibition of PDEs by 3-isobutyl-1-methylxanthine (IBMX), a nonselective PDE inhibitor, significantly reduced DSM spontaneous and carbachol-induced contraction amplitude, frequency, duration, muscle force integral, and tone in a concentration-dependent manner. IBMX significantly reduced electrical field stimulation-induced contractions of DSM strips. Blocking BK channels with paxilline diminished the inhibitory effects of IBMX on DSM contractility, indicating a role for BK channels in DSM relaxation mediated by PDE inhibition. IBMX increased the transient BK currents (TBKCs) frequency by ~3-fold without affecting the TBKCs amplitude. IBMX increased the frequency of the spontaneous transient hyperpolarizations by ~2-fold and hyperpolarized the DSM cell resting membrane potential by ~6 mV. Blocking the BK channels with paxilline abolished the IBMX hyperpolarizing effects. Under conditions of blocked Ca~(2+) sources for BK channel activation, IBMX did not affect the depolarization-induced steady-state whole cell BK currents. Our data reveal that PDE inhibition with IBMX relaxes guinea pig DSM via TBKCs activation and subsequent DSM cell membrane hyperpolarization.
机译:逼尿肌平滑肌(DSM)在病理生理学条件下表现出增加的自发阶段收缩,例如逼尿肌过度效力(DO)。我们以前的研究表明,通过增加大电导电压和CA〜(2 +)激活的K〜+(BK)信道活动,CAMP信号通路的激活减少了DSM合成性。在这里,我们测试了假设是否通过增加BK信道活动来减少对磷酸二酯酶(PDES)的抑制可以减少豚鼠DSM兴奋性和收缩性。利用DSM隔离条带的等距张力记录和新鲜分离的DSM细胞上的穿孔贴片技术,我们检查了PDE抑制诱导的DSM松弛机制。通过3-异丁基-1-甲基吡啶(IBMX),非选择性PDE抑制剂,显着减少DSM自发和肉类诱导的收缩振幅,频率,持续时间,肌肉积分,以浓度依赖性方式抑制PDE。 IBMX显着降低了DSM条的电场刺激诱导的收缩。阻断具有paxilline的BK频道减少了IBMX对DSM合成性的抑制作用,表明BDE抑制介导的DSM松弛中的BK通道的作用。 IBMX将瞬态BK电流(TBKC)频率增加〜3倍而不会影响TBKCS幅度。 IBMX将自发瞬态超积分的频率提高了〜2倍,超极化的DSM细胞静态膜电位〜6 mV。通过Paxilline阻止BK频道废除了IBMX超极化效果。在BK通道激活的阻塞CA〜(2+)源的条件下,IBMX不影响去极化诱导的稳态整个细胞BK电流。我们的数据表明,通过TBKC激活和随后的DSM细胞膜超极化,PDE抑制与IBMX抑制豚鼠DSM。

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