首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >Inner Ear Hair Cell Protection in Mammals against the Noise-Induced Cochlear Damage
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Inner Ear Hair Cell Protection in Mammals against the Noise-Induced Cochlear Damage

机译:哺乳动物的内耳毛细胞对噪声引起的耳蜗损伤的保护作用

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Inner ear hair cells are mechanosensory receptors that perceive mechanical sound and help to decode the sound in order to understand spoken language. Exposure to intense noise may result in the damage to the inner ear hair cells, causing noise-induced hearing loss (NIHL). Particularly, the outer hair cells are the first and the most affected cells in NIHL. After acoustic trauma, hair cells lose their structural integrity and initiate a self-deterioration process due to the oxidative stress. The activation of different cellular death pathways leads to complete hair cell death. This review specifically presents the current understanding of the mechanism exists behind the loss of inner ear hair cell in the auditory portion after noise-induced trauma. The article also explains the recent hair cell protection strategies to prevent the damage and restore hearing function in mammals.
机译:内耳毛细胞是机械感官,可以感知机械声音并有助于将声音解码以理解口头语言。暴露于强烈噪音下可能会损坏内耳毛细胞,从而导致噪音引起的听力损失(NIHL)。特别是,外毛细胞是NIHL中受影响最严重的细胞。遭受听觉创伤后,由于氧化应激,毛细胞失去了结构完整性,并开始自我恶化。不同细胞死亡途径的激活导致毛细胞完全死亡。这篇综述专门介绍了目前对由噪声引起的创伤后听觉部分内耳毛细胞丢失背后存在的机制的理解。文章还解释了最近的毛细胞保护策略,以防止哺乳动物受损并恢复听力功能。

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