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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Effects of ruthenium red on membrane ionic currents in urinary bladder smooth muscle cells of the guinea-pig.
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Effects of ruthenium red on membrane ionic currents in urinary bladder smooth muscle cells of the guinea-pig.

机译:钌红对豚鼠膀胱平滑肌细胞膜离子电流的影响

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摘要

Three major ionic currents, Ca2+-dependent K+ current (IK-Ca), delayed rectifier type K+ current (Ikd) and Ca2+ current (ICa), were activated by depolarization under whole-cell clamp in single smooth muscle cells isolated from guinea-pig urinary bladder. Externally applied ruthenium red (RuR) reduced the amplitude of IK-Ca and ICa at 0 mV (IC50 values were 4.2 and 5.6 muM, respectively), but did not affect IKd. Spontaneous transient outward currents (STOCs) and caffeine-induced outward currents (Icaf) at -30 mV were reduced by external 10 muM RuR. When 10 muM RuR was added to the pipette solution, IK-Ca during depolarization, STOCs and Icaf significantly decreased with time. RuR did not change the unitary current amplitude of the large-conductance Ca2+-dependent K+ (BK) channels, but reduced the open probability of the channel under excised patch-clamp recording mode. RuR reduced the channel activity more effectively from the cytosolic face than from the other. This inhibition decreased when the cytosolic Ca2+ concentration was increased. These results indicate that RuR blocks BK and Ca2+ channels in urinary bladder smooth muscle cells. The decrease in IK-Ca, STOCs and Icaf by RuR is attributable to the direct inhibition of BK channel activity, probably in addition to the inhibition of Ca2+ release from storage sites. The direct inhibition of BK channel activity by RuR may be related to the interaction of RuR with the Ca2+-binding sites of the channel protein.
机译:在全细胞钳夹下从豚鼠分离的单个平滑肌细胞中通过去极化激活了三个主要离子电流,即依赖于Ca2 +的K +电流(IK-Ca),延迟整流器K +电流(Ikd)和Ca2 +电流(ICa)。膀胱。外用钌红(RuR)在0 mV时降低了IK-Ca和ICa的幅度(IC50值分别为4.2和5.6μM),但不影响IKd。外部10μMRuR降低了-30 mV时的自发瞬态向外电流(STOC)和咖啡因诱导的向外电流(Icaf)。当向移液器溶液中添加10μMRuR时,去极化期间的IK-Ca,STOC和Icaf随时间显着下降。 RuR不会改变依赖于大电流Ca2 +的K +(BK)通道的单位电流幅度,但会降低在切除的膜片钳记录模式下通道的打开概率。 RuR比其他表面更有效地减少了来自细胞质表面的通道活性。当细胞质中Ca2 +浓度增加时,这种抑制作用会降低。这些结果表明RuR阻断了膀胱平滑肌细胞中的BK和Ca2 +通道。 RuR导致IK-Ca,STOCs和Icaf的减少归因于BK通道活性的直接抑制,可能还包括抑制了Ca2 +从储存位点的释放。 RuR对BK通道活性的直接抑制可能与RuR与通道蛋白的Ca2 +结合位点的相互作用有关。

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