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Spontaneous Activity of Cochlear Hair Cells Triggered by Fluid Secretion Mechanism in Adjacent Support Cells

机译:邻近支持细胞中液体分泌机制触发的耳蜗毛细胞的自发活动

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摘要

Spontaneous electrical activity of neurons in developing sensory systems promotes their maturation and proper connectivity. In the auditory system, spontaneous activity of cochlear inner hair cells (IHCs) is initiated by the release of ATP from glia-like inner supporting cells (ISCs), facilitating maturation of central pathways before hearing onset. Here, we find that ATP stimulates purinergic autoreceptors in ISCs, triggering Cl- efflux and osmotic cell shrinkage by opening TMEM16A Ca2+-activated Cl- channels. Release of Cl- from ISCs also forces K+ efflux, causing transient depolarization of IHCs near ATP release sites. Genetic deletion of TMEM16A markedly reduces the spontaneous activity of IHCs and spiral ganglion neurons in the developing cochlea and prevents ATP-dependent shrinkage of supporting cells. These results indicate that supporting cells in the developing cochlea have adapted a pathway used for fluid secretion in other organs to induce periodic excitation of hair cells.
机译:发育中的感觉系统中神经元的自发电活动促进其成熟和适当的连通性。在听觉系统中,耳蜗内毛细胞(IHC)的自发活动是由胶质样内支持细胞(ISC)释放ATP引发的,从而促进了中枢通路在听力发作之前的成熟。在这里,我们发现ATP通过打开TMEM16A Ca2 +激活的Cl-通道刺激ISC中的嘌呤能自动受体,触发Cl-流出和渗透性细胞收缩。 ISC中Cl-的释放也迫使K +流出,导致IHC在ATP释放位点附近短暂去极化。 TMEM16A的遗传删除显着降低了发育中的耳蜗中IHC和螺旋神经节神经元的自发活性,并阻止了支持细胞的ATP依赖性收缩。这些结果表明发育中的耳蜗中的支持细胞已经适应了用于其他器官中的液体分泌的途径,以诱导毛细胞的周期性激发。

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