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N-acetyl-cysteine prevents age-related hearing loss and the progressive loss of inner hair cells in γ-glutamyl transferase 1 deficient mice

机译:N-乙酰半胱氨酸可预防与年龄有关的听力损失和γ-谷氨酰转移酶1缺陷小鼠内毛细胞的逐步损失

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摘要

Genetic factors combined with oxidative stress are major determinants of age-related hearing loss (ARHL), one of the most prevalent disorders of the elderly. Dwarf grey mice, Ggt1dwg/dwg, are homozygous for a loss of function mutation of the γ-glutamyl transferase 1 gene, which encodes an important antioxidant enzyme critical for the resynthesis of glutathione (GSH). Since GSH reduces oxidative damage, we hypothesized that Ggt1dwg/dwg mice would be susceptible to ARHL. Surprisingly, otoacoustic emissions and cochlear microphonic potentials, which reflect cochlear outer hair cell (OHC) function, were largely unaffected in mutant mice, whereas auditory brainstem responses and the compound action potential were grossly abnormal. These functional deficits were associated with an unusual and selective loss of inner hair cells (IHC), but retention of OHC and auditory nerve fibers. Remarkably, hearing deficits and IHC loss were completely prevented by N-acetyl-L-cysteine, which induces de novo synthesis of GSH; however, hearing deficits and IHC loss reappeared when treatment was discontinued. Ggt1dwg/dwgmice represent an important new model for investigating ARHL, therapeutic interventions, and understanding the perceptual and electrophysiological consequences of sensory deprivation caused by the loss of sensory input exclusively from IHC.
机译:遗传因素与氧化应激相结合是与年龄有关的听力损失(ARHL)的主要决定因素,后者是老年人最普遍的疾病之一。矮小的灰色小鼠Ggt1 dwg / dwg 是γ-谷氨酰转移酶1基因功能缺失的纯合子,该基因编码一种重要的抗氧化酶,对谷胱甘肽(GSH)的再合成至关重要。由于GSH减少了氧化损伤,我们假设Ggt1 dwg / dwg 小鼠易患ARHL。令人惊讶的是,反映耳蜗外毛细胞(OHC)功能的耳声发射和耳蜗微音势在突变小鼠中基本不受影响,而听觉脑干反应和复合动作电位却完全异常。这些功能缺陷与内毛细胞(IHC)异常和选择性丢失有关,但保留了OHC和听觉神经纤维。值得注意的是,N-乙酰基-L-半胱氨酸可完全阻止听力障碍和IHC丢失,从而诱导GSH从头合成。但是,停药后会再次出现听力障碍和IHC丢失。 Ggt1 dwg / dwg 小鼠代表了一种重要的新模型,用于研究ARHL,治疗干预措施,并了解仅由IHC造成的感觉输入丧失所引起的感觉剥夺的知觉和电生理后果。

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