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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Inhibition of K+ currents of outer hair cells in guinea pig cochlea by fluoxetine.
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Inhibition of K+ currents of outer hair cells in guinea pig cochlea by fluoxetine.

机译:氟西汀对豚鼠耳蜗外毛细胞钾离子电流的抑制作用

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The effects of fluoxetine (Prozac), a widely used antidepressant drug, on K+ channel in outer hair cells isolated from guinea pig cochlea were studied using the whole-cell patch clamp technique. Fluoxetine potently inhibited leak K+ currents with an IC50 of 0.78 microM. The inhibition was reversible and voltage-independent. At 45- to 103-fold higher concentrations than the plasma levels, fluoxetine reversibly blocked voltage-activated K+ currents. Kinetics of the current in the presence of fluoxetine resembled the control current, and the inhibition was not use-dependent. Neither the activation curve nor the reversal potential was affected by fluoxetine. This inhibition was voltage-dependent with an electric distance (delta value) of the binding site of at least 26% of the membrane field from the cytoplasmic side. Use-independent inhibition suggests that fluoxetine blocks the channel before its opening or instantly blocks the open channel. This is the first study of the action of this compound on K+ channel of outer hair cells of the mammalian inner ear. We conclude that the block of the leak K+ currents can occur at therapeutic levels of fluoxetine. Since the voltage-activated K+ currents are not potently blocked by fluoxetine, this action might not be related to its antidepressant action or adverse effects.
机译:使用全细胞膜片钳技术研究了氟西汀(Prozac),一种广泛使用的抗抑郁药,对豚鼠耳蜗分离的外毛细胞中K +通道的影响。氟西汀有效抑制泄漏K +电流,IC50为0.78 microM。抑制作用是可逆的且与电压无关。在比血浆水平高45至103倍的浓度下,氟西汀可逆地阻断电压激活的K +电流。氟西汀存在下的电流动力学类似于对照电流,并且抑制作用与使用无关。氟西汀对激活曲线和逆转电位均无影响。这种抑制作用是电压依赖性的,结合位点的电距离(δ值)距细胞质侧至少为膜区域的26%。不依赖于使用的抑制作用表明氟西汀在通道开放之前会阻塞通道,或者立即阻塞通道。这是该化合物对哺乳动物内耳外毛细胞K +通道作用的首次研究。我们得出的结论是,在治疗水平的氟西汀下可以阻止泄漏K +电流。由于电压激活的K +电流不会被氟西汀有效地阻断,因此该作用可能与其抗抑郁作用或不良作用无关。

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