Marcotti W, Géléoc G S, Lennan G W, Kros C J
Department of Physiology, School of Medical Sciences, University of Bristol, UK.
Pflugers Arch. 1999 Dec;439(1-2):113-22. doi: 10.1007/s004249900157.
Inwardly rectifying K+ currents in inner and outer hair cells (IHCs, OHCs) were studied during post-natal development of the mouse cochlea. Hyperpolarizing steps from a holding potential of -64 mV induced a rapidly activating current in both cell types. This current showed strong inward rectification around the K+ equilibrium potential and, at potentials negative to -130 mV, partial inactivation. The activation range varied with extracellular K+ concentration. External application of Ba2+ and Cs+ reversibly blocked the elicited current. The results are consistent with the presence of an IK1-type inwardly rectifying potassium conductance in these cells. The maximum current was 60% larger in IHCs than in OHCs. In OHCs, but not IHCs, the amplitude of IK1 varied significantly with the cells' position along the cochlea. IK1 was maximal in cells located in the most basal region of the cochlea and its amplitude decreased in the apical coil. IK1 disappeared upon functional maturation: in OHCs at the end of the first postnatal week, and in IHCs at the onset of auditory function 12 days after birth. The current is active at the resting potential of the cells and plays a role in regulating the spiking behaviour characteristic of developing hair cells.
在小鼠耳蜗出生后的发育过程中,对内毛细胞(IHCs)和外毛细胞(OHCs)的内向整流钾电流进行了研究。从-64 mV的钳制电位进行超极化脉冲刺激,在两种细胞类型中均诱导出快速激活的电流。该电流在钾离子平衡电位附近表现出强烈的内向整流,并且在电位负于-130 mV时出现部分失活。激活范围随细胞外钾离子浓度而变化。外部施加钡离子(Ba2+)和铯离子(Cs+)可可逆地阻断诱发电流。这些结果与这些细胞中存在IK1型内向整流钾电导一致。内毛细胞中的最大电流比外毛细胞中的大60%。在外侧毛细胞中,而非内侧毛细胞中,IK1的幅度随细胞沿耳蜗的位置而显著变化。IK1在位于耳蜗最基部区域的细胞中最大,其幅度在顶圈中减小。IK1在功能成熟时消失:在出生后第一周结束时的外侧毛细胞中,以及在出生后12天听觉功能开始时的内侧毛细胞中。该电流在细胞的静息电位时活跃,并在调节发育中的毛细胞的放电行为特征中起作用。