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Cellular mechanisms of noise-induced hearing loss

机译:噪声诱导的听力损失的细胞机制

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Exposure to intense sound or noise can result in purely temporary threshold shift (TTS), or leave a residual permanent threshold shift (PTS) along with alterations in growth functions of auditory nerve output. Recent research has revealed a number of mechanisms that contribute to noise-induced hearing loss (NIHL). The principle cause of NIHL is damage to cochlear hair cells and associated synaptopathy. Contributions to TTS include reversible damage to hair cell (HC) stereocilia or synapses, while moderate TTS reflects protective purinergic hearing adaptation. PTS represents permanent damage to or loss of HCs and synapses. While the substrates of HC damage are complex, they include the accumulation of reactive oxygen species and the active stimulation of intracellular stress pathways, leading to programmed and/or necrotic cell death. Permanent damage to cochlear neurons can also contribute to the effects of NIHL, in addition to HC damage. These mechanisms have translational potential for pharmacological intervention and provide multiple opportunities to prevent HC damage or to rescue HCs and spiral ganglion neurons that have suffered injury. This paper reviews advances in our understanding of cellular mechanisms that contribute to NIHL and their potential for therapeutic manipulation. Published by Elsevier B.V.
机译:暴露于强烈的声音或噪声可以导致纯粹临时阈值移位(TTS),或者留出残留的永久阈值移位(PTS)以及听觉神经输出的生长函数的改变。最近的研究揭示了一些有助于噪声引起的听力损失(NIHL)的机制。 NIHL的原理原因是耳蜗毛细胞和相关突触病的损害。对TTS的贡献包括对毛细胞(HC)立体菌或突触的可逆损伤,而中等TTS反映了保护性嘌呤能听力适应。 PTS代表了对HCS和突触的永久性损害或丧失。虽然HC损伤的底物是复杂的,但它们包括反应性氧物种的积累和细胞内应激途径的积极刺激,导致编程和/或坏死性细胞死亡。除了HC损伤之外,对耳蜗神经元的永久性损伤还可以有助于NIHL的影响。这些机制具有转化药理干预的潜力,并提供多种机会来预防HC损害或拯救具有损伤的HCS和螺旋神经节神经元。本文评论了我们对有助于NIHL的细胞机制及其治疗操纵潜力的研究进展。 elsevier b.v出版。

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