首页> 外文期刊>The European Journal of Neuroscience >Degeneration of sensory outer hair cells following pharmacological blockade of cochlear KCNQ channels in the adult guinea pig.
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Degeneration of sensory outer hair cells following pharmacological blockade of cochlear KCNQ channels in the adult guinea pig.

机译:在成年豚鼠的耳蜗KCNQ通道药理作用阻断后,感觉外毛细胞变性。

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摘要

In the inner ear, hair cell function is inextricably linked with intracellular potassium homeostasis. KCNQ potassium channels may play an important role by preventing accumulation of potassium in the hair cells. Linopirdine, a tool useful in targeting native or heterologous KCNQ channels, was used to study the role of KCNQ channels in the guinea pig cochlea. When perfused into intact cochlea, linopirdine transiently increases the summating potential and endocochlear potential, suggesting that it alters K+ homeostasis. The concomitant decrease in cochlear microphonic potential and distortion product otoacoustic emission amplitude indicates that linopirdine has an effect on the outer hair cells (OHCs). To determine the pathological consequences of the inhibition of cochlear KCNQ channels, we developed a hearing loss model based on a chronic intracochlear perfusion of linopirdine via an osmotic minipump. Ultrastructural analysis reveals that KCNQ channel blockade leads to OHC degeneration. Together, theseresults demonstrate that KCNQ channels, most probably of the KCNQ4 subtype, are crucial for the function and survival of sensory OHCs. Clinically, KCNQ4 channel dysfunction is known to be associated with the DFNA2 form of nonsyndromic dominant deafness. Our study shows that OHC KCNQ4 dysfunction could contribute to the early (40dB) hearing loss, but not for the profound deafness observed at the final stage of this disease.
机译:在内耳中,毛细胞功能与细胞内钾稳态密切相关。 KCNQ钾离子通道可能通过阻止钾在毛细胞中的积累而发挥重要作用。 Linopirdine是一种可用于靶向天然或异源KCNQ通道的工具,用于研究KCNQ通道在豚鼠耳蜗中的作用。当将其注入完整的耳蜗中时,利尼哌丁会暂时增加总和电位和耳蜗内电位,表明其改变了K +稳态。耳蜗微音电位和畸变产物耳声发射幅度的同时下降表明利尼平对外毛细胞(OHCs)有影响。为了确定抑制耳蜗KCNQ通道的病理学后果,我们开发了一种基于慢性小耳蜗尼普利丁通过渗透微型泵进行灌注的听力损失模型。超微结构分析表明,KCNQ通道阻滞导致OHC变性。总之,这些结果表明,KCNQ通道(很可能是KCNQ4亚型)对于感觉性OHC的功能和存活至关重要。临床上,已知KCNQ4通道功能障碍与DFNA2形式的非综合征性显性耳聋有关。我们的研究表明,OHC KCNQ4功能障碍可能会导致早期(40dB)听力损失,但不会导致这种疾病最后阶段的严重耳聋。

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