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首页> 外文期刊>American Journal of Physiology >Ethanol-mediated relaxation of guinea pig urinary bladder smooth muscle: Involvement of BK and L-type Ca2+ channels
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Ethanol-mediated relaxation of guinea pig urinary bladder smooth muscle: Involvement of BK and L-type Ca2+ channels

机译:乙醇介导的豚鼠膀胱平滑肌松弛:涉及BK和L型Ca2 +通道

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摘要

Mechanisms underlying ethanol (EtOH)-induced detrusor smooth muscle (DSM) relaxation and increased urinary bladder capacity remain unknown. We investigated whether the large conductance Ca2+-activated K+ (BK) channels or L-type voltage-dependent Ca2+ channels (VDCCs), major regulators of DSM excitability and contractility, are targets for EtOH by patch-clamp electrophysiology (conventional and perforated whole cell and excised patch single channel) and isometric tension recordings using guinea pig DSM cells and isolated tissue strips, respectively. EtOH at 0.3% vol/vol (~50 mM) enhanced whole cell BK currents at +30 mV and above, determined by the selective BK channel blocker paxilline. In excised patches recorded at +40 mV and ~300 nM intracellular Ca2+ concentration ([Ca2+]), EtOH (0.1-0.3%) affected single BK channels (mean conductance ~210 pS and blocked by paxilline) by increasing the open channel probability, number of open channel events, and open dwell-time constants. The amplitude of single BK channel currents and unitary conductance were not altered by EtOH. Conversely, at ~10 μM but not ~2 μM intracellular [Ca2+], EtOH (0.3%) decreased the single BK channel activity. EtOH (0.3%) affected transient BK currents (TBKCs) by either increasing frequency or decreasing amplitude, depending on the basal level of TBKC frequency. In isolated DSM strips, EtOH (0.1-1%) reduced the amplitude and muscle force of spontaneous phasic contractions. The EtOH-induced DSM relaxation, except at 1%, was attenuated by paxilline. EtOH (1%) inhibited L-type VDCC currents in DSM cells. In summary, we reveal the involvement of BK channels and L-type VDCCs in mediating EtOHinduced urinary bladder relaxation accommodating alcohol-induced diuresis.
机译:乙醇(EtOH)诱导的逼尿肌平滑肌(DSM)松弛和膀胱容量增加的潜在机制尚不清楚。我们研究了大电导的Ca2 +激活的K +(BK)通道或L型电压依赖性Ca2 +通道(VDCC)(DSM兴奋性和收缩性的主要调节剂)是否通过膜片钳电生理学(常规和穿孔全细胞)成为EtOH的靶标以及分别切除的贴片单通道)和使用豚鼠DSM细胞和分离的组织条的等距张力记录。 0.3%vol / vol(〜50 mM)的EtOH在+30 mV及更高电压下增强了全细胞BK电流,这是由选择性BK通道阻滞剂Paxilline确定的。在以+40 mV和〜300 nM的细胞内Ca2 +浓度([Ca2 +])记录的切除的贴片中,EtOH(0.1-0.3%)通过增加开放通道概率影响了单个BK通道(平均电导率约为210 pS,并被paxilline阻断),公开频道事件的数量,以及公开停留时间常数。 EtOH不会改变单个BK通道电流的幅度和单位电导。相反,在〜10μM而不是〜2μM的细胞内[Ca2 +]中,EtOH(0.3%)降低了单个BK通道的活性。 EtOH(0.3%)通过增加频率或减小幅度来影响瞬态BK电流(TBKC),具体取决于TBKC频率的基础水平。在孤立的DSM试纸中,EtOH(0.1-1%)降低了自发性相收缩的幅度和肌肉力量。 EtOH引起的DSM舒张作用(除1%以外)被Paxilline减弱。 EtOH(1%)抑制了DSM电池中的L型VDCC电流。总而言之,我们揭示了BK通道和L型VDCC在介导EtOH引起的膀胱松弛和酒精引起的利尿中的作用。

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