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首页> 外文期刊>Journal of the Association for Research in Otolaryngology >Dynamics of cochlear synaptopathy after acoustic overexposure
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Dynamics of cochlear synaptopathy after acoustic overexposure

机译:声音过度暴露后耳蜗突触病的动力学

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Recent work shows that acoustic overexposures causing only transient threshold elevation, and no hair cell loss, nevertheless can cause irreversible loss of the synapses between inner hair cells and cochlear nerve fibers (Kujawa and Liberman 2009). This cochlear synaptopathy, which is selective for the subset of sensory fibers with high thresholds and low spontaneous rates (Furman et al. 2013), appeared fully developed at 24-h post-exposure and showed no recovery by 8 weeks. However, prior studies of this synaptopathy counted only pre-synaptic ribbons, did not examine post-exposure times less than 24 h, and did not analyze the spatial patterns of degeneration around the hair cell circumference. Here, we immunostained for pre-synaptic ribbons, post-synaptic terminals and glutamate receptor patches, as well as the hair cell cytoplasm in noise-exposed and control mice to address the dynamics and spatial organization of the synaptopathic process as a function of post-exposure time from 0 h to 2 weeks. Our analysis showed that the loss of synaptic elements is nearly complete immediately after the 2-h exposure, that there is a reversible downregulation of gluR expression in the peripheral terminals which may be part of a protective mechanism, that there may be reversible reorganization of synaptic locations immediately after exposure, and that the spatial patterns are consistent with the idea that low-SR fibers are mainly found on the modiolar face of the hair cell and are the most vulnerable to noise-induced degeneration.
机译:最近的研究表明,声音过度暴露只会引起瞬时阈值升高,而不会导致毛细胞损失,但仍会导致内部毛细胞和耳蜗神经纤维之间的突触发生不可逆的损失(Kujawa和Liberman 2009)。这种耳蜗突触病对具有高阈值和低自发率的感觉纤维亚群具有选择性(Furman et al.2013),在暴露后24小时内完全发育,到8周时仍未恢复。但是,这种突触病的先前研究仅计数突触前的带状细胞,未检查暴露后时间少于24小时的时间,也未分析毛细胞周围变性的空间模式。在这里,我们对噪声暴露和控制小鼠的突触前色带,突触后末端和谷氨酸受体补丁以及毛细胞细胞质进行了免疫染色,以解决突触后过程的动态和空间组织与功能的关系。暴露时间为0小时至2周。我们的分析表明,暴露2小时后突触元件的损失几乎完全消失,外围末端gluR表达可逆地下调,这可能是保护机制的一部分,突触可能可逆地重组。暴露后立即定位,并且空间模式与低SR纤维主要存在于毛细胞的毛孔表面且最容易受噪声引起的变性的想法相一致。

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