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Viral-mediated Ntf3 overexpression disrupts innervation and hearing in nondeafened guinea pig cochleae

机译:病毒介导的Ntf3过度表达破坏了非聋豚鼠耳蜗的神经支配和听力

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摘要

Synaptopathy in the cochlea occurs when the connection between inner hair cells and the auditory nerve is disrupted, leading to impaired hearing and nerve degeneration. Experiments using transgenic mice have shown that overexpression of NT3 by supporting cells repairs synaptopathy caused by overstimulation. To accomplish such therapy in the clinical setting, it would be necessary to activate the neurotrophin receptor on auditory neurons by other means. Here we test the outcome of NT3 overexpression using viral-mediated gene transfer into the perilymph versus the endolymph of the normal guinea pig cochlea. We inoculated two different Ntf3 viral vectors, adenovirus (Adv) or adeno-associated virus (AAV) into the perilymph, to facilitate transgene expression in the mesothelial cells and cochlear duct epithelium, respectively. We assessed outcomes by comparing Auditory brainstem response (ABR) thresholds prior to that at baseline to thresholds at 1 and 3 weeks after inoculation, and then performed histologic evaluation of hair cells, nerve endings, and synaptic ribbons. We observed hearing threshold shifts as well as disorganization of peripheral nerve endings and disruption of synaptic connections between inner hair cells and peripheral nerve endings with both vectors. The data suggest that elevation of NT3 levels in the cochlear fluids can disrupt innervation and degrade hearing.
机译:当内部毛细胞与听觉神经之间的连接中断时,会发生耳蜗突触病,从而导致听力受损和神经变性。使用转基因小鼠的实验表明,NT3通过支持细胞的过度表达修复了过度刺激引起的突触病。为了在临床环境中完成这种治疗,有必要通过其他方式激活听觉神经元上的神经营养蛋白受体。在这里,我们测试了病毒介导的基因转移到正常豚鼠耳蜗的内淋巴与内淋巴相比,NT3过表达的结果。我们将两种不同的Ntf3病毒载体,腺病毒(Adv)或腺相关病毒(AAV)接种到外周淋巴中,以促进转基因分别在间皮细胞和耳蜗上皮中表达。我们通过比较基线之前的听觉脑干反应(ABR)阈值与接种后1和3周的阈值来评估结局,然后对毛细胞,神经末梢和突触带进行组织学评估。我们观察到听力阈值变化以及周围神经末梢的紊乱以及内部毛细胞和周围神经末梢之间两种载体的突触连接的破坏。数据表明,耳蜗液中NT3水平的升高会破坏神经支配并降低听力。

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