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Prostaglandin E2 excitatory effects on guinea pig urinary bladder smooth muscle: A novel regulatory mechanism mediated by large-conductance voltage- and Ca2+-activated K+ channels

机译:前列腺素E2对豚鼠膀胱平滑肌的兴奋性作用:一种由大电导电压和Ca2 +激活的K +通道介导的新型调节机制

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摘要

Prostaglandin E2 (PGE2) is an essential signaling molecule involved in the regulation of detrusor smooth muscle (DSM) function. However, the underlying regulatory mechanism by which PGE2 augments DSM cell excitability and contractility is not well understood. Here, we investigated whether PGE inhibits the large conductance voltage- and Ca2+-activated K+ (BK) channels in guinea pig DSM, thereby increasing DSM excitability and contractility. We used a multidisciplinary experimental approach including amphotericin–B perforated patch-clamp electrophysiology and live-cell Ca2+ imaging in native freshly-isolated DSM cells, isometric tension recordings of intact DSM strips, and pharmacological tools to investigate BK channel regulation by PGE2 in guinea pig DSM. PGE2 increased the spontaneous phasic contractions of isolated DSM strips in a concentration-dependent manner (10 nM-10 μM). BK channel inhibition with paxilline (1 μM) attenuated the PGE2-induced DSM phasic contractions, suggesting that BK channels are involved in the mechanism of PGE2-induced DSM contractions. PGE2 (10 μM) increased the intracellular Ca2+ levels in freshly-isolated DSM cells. PGE2 (10 μM) also caused an inhibition of the amplitude and frequency of spontaneous transient BK currents in DSM cells. Moreover, PGE2 (10 μM) did not affect the amplitude of whole cell steady-state BK currents in DSM cells. Our findings provide strong experimental evidence that PGE2 leads to an inhibition of the spontaneous transient BK currents, elevation of intracellular Ca2+ levels in freshly-isolated DSM cells, and augmentation of DSM phasic contractions. Thus, we have revealed a novel mechanism that BK channels mediate PGE2-induced contractions in guinea pig DSM.
机译:前列腺素E2(PGE2)是参与逼尿肌平滑肌(DSM)功能调节的重要信号分子。但是,PGE 2通过其增强DSM细胞的兴奋性和收缩性的潜在调节机制尚不清楚。在这里,我们研究了PGE是否抑制豚鼠DSM中大的电导电压和Ca 2 + 激活的K + (BK)通道,从而增加了DSM的兴奋性和收缩性。我们采用了多学科的实验方法,包括两性霉素B穿孔的膜片钳电生理学和在天然新鲜分离的DSM细胞中的活细胞Ca 2 + 成像,完整DSM条的等距张力记录以及用于治疗的药理学工具。研究了PGE2对豚鼠DSM的BK通道调节。 PGE2以浓度依赖的方式(10 nM-10μM)增加了分离的DSM条的自发相收缩。 Paxilline(1μM)对BK通道的抑制作用减弱了PGE2诱导的DSM阶段性收缩,提示BK通道参与了PGE2诱导的DSM收缩的机制。 PGE2(10μM)增加了新鲜分离的DSM细胞的细胞内Ca 2 + 水平。 PGE2(10μM)还导致DSM细胞中自发瞬时BK电流的幅度和频率受到抑制。此外,PGE2(10μM)不会影响DSM电池中整个电池稳态BK电流的幅度。我们的发现提供了有力的实验证据,表明PGE2导致自发的瞬时BK电流抑制,新鲜分离的DSM细胞中细胞内Ca 2 + 的升高以及DSM的相收缩增加。因此,我们揭示了一种新的机制,即BK通道介导PGE2诱导的豚鼠DSM收缩。

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