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Localized disorganization of the cochlear inner hair cell synaptic region after noise exposure

机译:噪声暴露后耳蜗内毛细胞突触区域的局部紊乱

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The prevalence and importance of hearing damage caused by noise levels not previously thought to cause permanent hearing impairment has become apparent in recent years. The damage to, and loss of, afferent terminals of auditory nerve fibres at the cochlear inner hair cell has been well established, but the effects of noise exposure and terminal loss on the inner hair cell are less known. Using three-dimensional structural studies in mice we have examined the consequences of afferent terminal damage on inner hair cell morphology and intracellular structure. We identified a structural phenotype in the pre-synaptic regions of these damaged hair cells that persists for four weeks after noise exposure, and demonstrates a specific dysregulation of the synaptic vesicle recycling pathway. We show evidence of a failure in regeneration of vesicles from small membrane cisterns in damaged terminals, resulting from a failure of separation of small vesicle buds from the larger cisternal membranes.
机译:近年来,由噪声水平引起的听力损害的普遍性和重要性以前没有被认为会造成永久性听力障碍。耳蜗内毛细胞对听觉神经纤维传入末端的损害和丢失已得到充分证实,但噪声暴露和终末损失对内毛细胞的影响尚不清楚。在小鼠中使用三维结构研究,我们检查了传入终末损伤对内部毛细胞形态和细胞内结构的影响。我们在这些受损的毛细胞的突触前区域中发现了一个结构表型,该结构型在噪声暴露后持续了四个星期,并证明了突触小泡再循环途径的特定失调。我们显示出从受损末端的小膜蓄水池中囊泡再生失败的证据,这是由于小囊泡芽与较大的脑膜分离所致。

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