首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The presynaptic function of mouse cochlear inner hair cells during development of hearing.
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The presynaptic function of mouse cochlear inner hair cells during development of hearing.

机译:小鼠耳蜗内毛细胞在听力发育过程中的突触前功能。

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Before mice start to hear at approximately postnatal day 10, their cochlear inner hair cells (IHCs) spontaneously generate Ca(2+) action potentials. Therefore, immature IHCs could stimulate the auditory pathway, provided that they were already competent for transmitter release. Here, we combined patch-clamp capacitance measurements and fluorimetric [Ca(2+)](i) recordings to study the presynaptic function of IHCs during cochlear maturation. Ca(2+)-dependent exocytosis and subsequent endocytic membrane retrieval were already observed near the date of birth. Ca(2+) action potentials triggered exocytosis in immature IHCs, which probably activates the auditory pathway before it becomes responsive to sound. IHCs underwent profound changes in Ca(2+)-channel expression and secretion during their postnatal development. Ca(2+)-channel expression increased toward the end of the first week, providing for large secretory responses during this period and thereafter declined to reach mature levels. The efficacy whereby Ca(2+) influx triggers exocytosis increased toward maturation, such that vesicle fusion caused by a given Ca(2+) current occurred faster in mature IHCs. The observed changes in Ca(2+)-channel expression and synaptic efficacy probably reflected the ongoing synaptogenesis in IHCs that had been described previously in morphological studies.
机译:在小鼠大约在出生后第10天开始听到声音之前,它们的耳蜗内毛细胞(IHC)自发产生Ca(2+)动作电位。因此,不成熟的IHC可以刺激听觉通路,前提是它们已经具有释放递质的能力。在这里,我们结合膜片钳电容测量和荧光[Ca(2 +)](i)录音来研究IHCs在耳蜗成熟过程中的突触前功能。 Ca(2+)依赖的胞吐作用和随后的胞吞膜回收已观察到出生日期附近。 Ca(2+)动作电位触发未成熟的IHC中的胞吐作用,这可能在它对声音做出反应之前激活了听觉通路。 IHC在其出生后的发展过程中进行Ca(2+)通道表达和分泌的深刻变化。 Ca(2+)通道表达增加到第一周末,在此期间提供大量的分泌反应,此后下降到成熟水平。 Ca(2+)涌入触发胞吐作用的功效朝着成熟的方向增加,从而使由给定Ca(2+)电流引起的囊泡融合在成熟的IHC中更快地发生。 Ca(2+)通道表达和突触效力的观察到的变化可能反映了以前在形态学研究中描述的IHC正在进行的突触发生。

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