首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Dynamic Changes in Synaptic Plasticity Genes in Ipsilateral and Contralateral Inferior Colliculus Following Unilateral Noise-induced Hearing Loss
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Dynamic Changes in Synaptic Plasticity Genes in Ipsilateral and Contralateral Inferior Colliculus Following Unilateral Noise-induced Hearing Loss

机译:单侧噪声诱导的听力损失后同侧和对侧劣质小学中突触塑性基因的动态变化

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Unilateral noise-induced hearing loss reduces the input to the central auditory pathway disrupting the excitatory and inhibitory inputs to the inferior colliculus (IC), an important binaural processing center. Little is known about the compensatory synaptic changes that occur in the IC as a consequence of unilateral noise-induced hearing loss. To address this issue, Sprague-Dawley rats underwent unilateral noise exposure resulting in severe unilateral hearing loss. IC tissues from the contralateral and ipsilateral IC were evaluated for acute (2-d) and chronic (28-d) changes in the expression of 84 synaptic plasticity genes on a PCR array. Arc and Egr1 genes were further visualized by in situ hybridization to validate the PCR results. None of the genes were upregulated, but many were downregulated post-exposure. At 2-d post-exposure, more than 75% of the genes were significantly downregulated in the contralateral IC, while only two were downregulated in the ipsilateral IC. Many of the downregulated genes were related to long-term depression, long-term potentiation, cell adhesion, immediate early genes, neural receptors and postsynaptic density. At 28-d post-exposure, the gene expression pattern was reversed with more than 85% of genes in the ipsilateral IC now downregulated. Most genes previously downregulated in the contralateral IC 2-d post-exposure had recovered; less than 15% remained downregulated. These time-dependent, asymmetric changes in synaptic plasticity gene expression could shed new light on the perceptual deficits associated with unilateral hearing loss and the dynamic structural and functional changes that occur in the IC days and months following unilateral noise-induced hearing loss. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:单侧噪声引起的听力损失将中央听觉途径的输入减少了破坏兴奋性和抑制的输入到下芯片(IC),这是一个重要的双耳加工中心。关于IC中出现的补偿突触变化,由于单侧噪声引起的听力损失而难以了解。为了解决这个问题,Sprague-Dawley大鼠接受单侧噪声暴露导致严重的单方面听证会损失。评估来自对侧和同侧IC的IC组织,对PCR阵列上的84个突触塑性基因表达的急性(2-D)和慢性(28-D)变化进行评价。通过原位杂交进一步可视化弧和EGR1基因以验证PCR结果。均未上调任何基因,但许多是下调的暴露后。在2-D后暴露后,在对侧IC中显着下调75%的基因,而在同侧IC中只下调两种基因。许多下调基因与长期抑制,长期增强,细胞粘附,立即早期基因,神经受体和突触后密度有关。在28-d后暴露后,基因表达模式在现在调节的同侧IC中有超过85%的基因逆转。前述大多数基因在对侧IC 2-D后接触后恢复;不到15%的人仍可下调。这些时间依赖于突触塑性基因表达的不对称变化可以对与单方面听力损失相关的感知缺陷以及在单侧噪声引起的听力损失之后的IC天和月份发生的动态结构和功能变化。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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