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Sodium and calcium currents shape action potentials in immature mouse inner hair cells.

机译:钠和钙电流可塑造未成熟小鼠内毛细胞中的动作电位。

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Before the onset of hearing at postnatal day 12, mouse inner hair cells (IHCs) produce spontaneous and evoked action potentials. These spikes are likely to induce neurotransmitter release onto auditory nerve fibres. Since immature IHCs express both alpha1D (Cav1.3) Ca2+ and Na+ currents that activate near the resting potential, we examined whether these two conductances are involved in shaping the action potentials. Both had extremely rapid activation kinetics, followed by fast and complete voltage-dependent inactivation for the Na+ current, and slower, partially Ca2+-dependent inactivation for the Ca2+ current. Only the Ca2+ current is necessary for spontaneous and induced action potentials, and 29 % of cells lacked a Na+ current. The Na+ current does, however, shorten the time to reach the action-potential threshold, whereas the Ca2+ current is mainly involved, together with the K+ currents, in determining the speed and size of the spikes. Both currents increased in size up to the end of the first postnatal week. After this, the Ca2+ current reduced to about 30 % of its maximum size and persisted in mature IHCs. The Na+ current was downregulated around the onset of hearing, when the spiking is also known to disappear. Although the Na+ current was observed as early as embryonic day 16.5, its role in action-potential generation was only evident from just after birth, when the resting membrane potential became sufficiently negative to remove a sizeable fraction of the inactivation (half inactivation was at -71 mV). The size of both currents was positively correlated with the developmental change in action-potential frequency.
机译:在出生后第12天开始听力之前,小鼠内部毛细胞(IHC)会产生自发的诱发电位。这些尖峰很可能诱导神经递质释放到听觉神经纤维上。由于未成熟的IHC会表达在静息电位附近激活的alpha1D(Cav1.3)Ca2 +和Na +电流,因此我们检查了这两种电导是否参与形成动作电位。两者均具有极快的活化动力学,随后对Na +电流进行了快速而完全的电压依赖性灭活,而对Ca2 +电流则进行了较慢的,部分与Ca2 +有关的灭活。自发的和诱导的动作电位仅需要Ca2 +电流,而29%的细胞缺少Na +电流。但是,Na +电流确实缩短了达到动作电位阈值的时间,而Ca2 +电流与K +电流主要涉及确定尖峰的速度和大小。两种电流的大小都增加到产后的第一周。此后,Ca2 +电流减少到最大大小的30%,并持续存在于成熟的IHC中。当已知峰值消失时,Na +电流在听力开始时也被下调。尽管早在胚胎第16.5天就观察到了Na +电流,但其在动作电位生成中的作用仅在出生后才可见,此时静息膜电位变得足够负以去除大部分失活(半灭活为- 71 mV)。两种电流的大小与动作电位频率的发展变化呈正相关。

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