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衰老听觉带状突触处的突触释放增强

Synaptic Release Potentiation at Aging Auditory Ribbon Synapses.

作者信息

Peineau Thibault, Belleudy Séverin, Pietropaolo Susanna, Bouleau Yohan, Dulon Didier

机构信息

Neurophysiologie de la Synapse Auditive, INSERM UMRS 1120, Bordeaux Neurocampus, Université de Bordeaux, Bordeaux, France.

Institut de l'Audition, Centre Institut Pasteur/Inserm, Paris, France.

出版信息

Front Aging Neurosci. 2021 Oct 18;13:756449. doi: 10.3389/fnagi.2021.756449. eCollection 2021.

Abstract

Age-related hidden hearing loss is often described as a cochlear synaptopathy that results from a progressive degeneration of the inner hair cell (IHC) ribbon synapses. The functional changes occurring at these synapses during aging are not fully understood. Here, we characterized this aging process in IHCs of C57BL/6J mice, a strain which is known to carry a cadherin-23 mutation and experiences early hearing loss with age. These mice, while displaying a large increase in auditory brainstem thresholds due to 50% loss of IHC synaptic ribbons at middle age (postnatal day 365), paradoxically showed enhanced acoustic startle reflex suggesting a hyperacusis-like response. The auditory defect was associated with a large shrinkage of the IHCs' cell body and a drastic enlargement of their remaining presynaptic ribbons which were facing enlarged postsynaptic AMPAR clusters. Presynaptic Ca microdomains and the capacity of IHCs to sustain high rates of exocytosis were largely increased, while on the contrary the expression of the fast-repolarizing BK channels, known to negatively control transmitter release, was decreased. This age-related synaptic plasticity in IHCs suggested a functional potentiation of synaptic transmission at the surviving synapses, a process that could partially compensate the decrease in synapse number and underlie hyperacusis.

摘要

年龄相关性隐匿性听力损失通常被描述为一种耳蜗突触病变,它是由内毛细胞(IHC)带状突触的进行性退化引起的。衰老过程中这些突触发生的功能变化尚未完全了解。在这里,我们对C57BL/6J小鼠的内毛细胞中的这种衰老过程进行了表征,该品系已知携带钙黏蛋白-23突变,并随着年龄增长出现早期听力损失。这些小鼠在中年时(出生后第365天)由于50%的内毛细胞突触带丢失,听觉脑干阈值大幅增加,但矛盾的是,它们表现出增强的听觉惊吓反射,提示类似听觉过敏的反应。听觉缺陷与内毛细胞胞体的大幅萎缩以及其剩余的突触前带的急剧增大有关,这些突触前带面对的是增大的突触后AMPA受体簇。突触前钙微区和内毛细胞维持高胞吐率的能力大幅增加,相反,已知对递质释放起负性控制作用的快速复极化BK通道的表达却降低了。内毛细胞中这种与年龄相关的突触可塑性提示了存活突触处突触传递的功能增强,这一过程可能部分补偿突触数量的减少,并成为听觉过敏的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6d4/8558230/d89481821b14/fnagi-13-756449-g0001.jpg

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