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Deterioration of the Medial Olivocochlear Efferent System Accelerates Age-Related Hearing Loss in Pax2-Isl1 Transgenic Mice

机译:内侧耳蜗传出系统的恶化加速了Pax2-Isl1转基因小鼠与年龄有关的听力损失。

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The development, maturation, and maintenance of the inner ear are governed by temporal and spatial expression cascades of transcription factors that form a gene regulatory network. ISLET1 (ISL1) may be one of the major players in this cascade, and in order to study its role in the regulation of inner ear development, we produced a transgenic mouse overexpressing Isl1 under the Pax2 promoter. Pax2-regulated ISL1 overexpression increases the embryonic ISL1(+) domain and induces accelerated nerve fiber extension and branching in E12.5 embryos. Despite these gains in early development, the overexpression of ISL1 impairs the maintenance and function of hair cells of the organ of Corti. Mutant mice exhibit hyperactivity, circling behavior, and progressive age-related decline in hearing functions, which is reflected in reduced otoacoustic emissions (DPOAEs) followed by elevated hearing thresholds. The reduction of the amplitude of DPOAEs in transgenic mice was first detected at 1 month of age. By 6-9 months of age, DPOAEs completely disappeared, suggesting a functional inefficiency of outer hair cells (OHCs). The timing of DPOAE reduction coincides with the onset of the deterioration of cochlear efferent terminals. In contrast to these effects on efferents, we only found a moderate loss of OHCs and spiral ganglion neurons. For the first time, our results show that the genetic alteration of the medial olivocochlear (MOC) efferent system induces an early onset of age-related hearing loss. Thus, the neurodegeneration of the MOC system could be a contributing factor to the pathology of age-related hearing loss.
机译:内耳的发育,成熟和维持受转录因子的时空表达级联控制,转录级联形成基因调控网络。 ISLET1(ISL1)可能是该级联反应的主要参与者之一,为了研究其在调节内耳发育中的作用,我们生产了在Pax2启动子下过表达Isl1的转基因小鼠。 Pax2调控的ISL1过表达增加了胚胎ISL1(+)结构域,并诱导了E12.5胚胎中加速的神经纤维延伸和分支。尽管在早期开发中取得了这些进展,但ISL1的过表达损害了Corti器官的毛细胞的维持和功能。突变小鼠表现出活动过度,循环行为以及与年龄相关的渐进性听力下降,这反映在耳声发射(DPOAEs)降低,继而听力阈值升高。首先在1个月大时检测到转基因小鼠中DPOAEs振幅的降低。到6-9个月大时,DPOAEs完全消失,表明外毛细胞(OHC)的功能无效。 DPOAE降低的时机与耳蜗传出末端的恶化开始。与这些对传出的影响相反,我们仅发现了中等程度的OHC和螺旋神经节神经元丢失。首次,我们的结果表明,内侧少脂(MOC)传出系统的遗传改变可诱发与年龄有关的听力损失的早期发作。因此,MOC系统的神经退行性变可能是与年龄有关的听力损失的病理因素。

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