首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Inhibition of the calcium- and voltage-dependent big conductance potassium channel ameliorates cisplatin-induced apoptosis in spiral ligament fibrocytes of the cochlea.
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Inhibition of the calcium- and voltage-dependent big conductance potassium channel ameliorates cisplatin-induced apoptosis in spiral ligament fibrocytes of the cochlea.

机译:抑制钙和电压依赖性大电导钾通道可改善顺铂诱导的耳蜗螺旋韧带纤维细胞凋亡。

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摘要

The role of calcium- and voltage-dependent big conductance potassium channels in regulating apoptosis was investigated in cultured type I spiral ligament fibrocytes. Incubation of type I spiral ligament fibrocytes derived from gerbil cochlea with cisplatin induced dose- and time-dependent apoptosis as demonstrated by annexin V conjugated to fluorescein isothiocyanate/prodidium iodide assays. The average voltage activation threshold of whole cell current was sharply shifted to -40 mV in the cisplatin-treated cells as compared with a value of 40 mV in control cells. The average whole-cell current of cisplatin-treated cells induced by a depolarization voltage step from -80 to -10 mV was increased significantly to 1.2+/-0.4 nA as compared with 0.08+/-0.1 nA in control cells. Coincubation with tetraethylammonium and cisplatin retained the whole cell current in the normal range (0.12+/-0.2 nA). The increment of cisplatin-induced whole-cell current was inhibited (97+/-5%) by a specific calcium- and voltage-dependent big conductance potassium channel blocker iberiotoxin. Consistent with this, co-incubation with tetraethylammonium significantly attenuated cisplatin-induced apoptosis in type I spiral ligament fibrocytes by more than 50%. We conclude that the activation of BK channels is an early event associated with cisplatin-induced apoptosis in type I spiral ligament fibrocytes. These findings also point to the calcium- and voltage-dependent big conductance potassium channels as a potential pharmacological target for manipulating cisplatin ototoxicity.
机译:在培养的I型螺旋韧带纤维细胞中研究了钙和电压依赖性大电导钾通道在调节细胞凋亡中的作用。如结合了异硫氰酸荧光素/碘化丙啶的膜联蛋白V所证实的那样,将源自沙鼠耳蜗的I型螺旋韧带纤维细胞与顺铂一起诱导剂量和时间依赖性凋亡。与对照细胞中40 mV的值相比,顺铂处理细胞中整个细胞电流的平均电压激活阈值急剧变化为-40 mV。与对照细胞中的0.08 +/- 0.1 nA相比,通过从-80到-10 mV的去极化电压阶跃诱导的顺铂处理细胞的平均全细胞电流显着增加至1.2 +/- 0.4 nA。与四乙铵和顺铂共同孵育可将整个细胞电流保持在正常范围(0.12 +/- 0.2 nA)。顺铂诱导的全细胞电流的增加被特定的钙依赖性和电压依赖性大电导钾通道阻滞剂埃博毒素抑制(97 +/- 5%)。与此相一致的是,与四乙铵共同孵育可将顺铂诱导的I型螺旋韧带纤维细胞的凋亡显着降低50%以上。我们得出结论,BK通道的激活是与顺铂诱导的I型螺旋韧带纤维细胞凋亡相关的早期事件。这些发现还指出,依赖钙和电压的大电导钾通道是操纵顺铂耳毒性的潜在药理学靶标。

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