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Oxidative Stresses and Mitochondrial Dysfunction in Age-Related Hearing Loss

机译:与年龄有关的听力损失中的氧化应激和线粒体功能障碍

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Age-related hearing loss (ARHL), the progressive loss of hearing associated with aging, is the most common sensory disorder in the elderly population. The pathology of ARHL includes the hair cells of the organ of Corti, stria vascularis, and afferent spiral ganglion neurons as well as the central auditory pathways. Many studies have suggested that the accumulation of mitochondrial DNA damage, the production of reactive oxygen species, and decreased antioxidant function are associated with subsequent cochlear senescence in response to aging stress. Mitochondria play a crucial role in the induction of intrinsic apoptosis in cochlear cells. ARHL can be prevented in laboratory animals by certain interventions, such as caloric restriction and supplementation with antioxidants. In this review, we will focus on previous research concerning the role of the oxidative stress and mitochondrial dysfunction in the pathology of ARHL in both animal models and humans and introduce concepts that have recently emerged regarding the mechanisms of the development of ARHL.
机译:与年龄有关的听力丧失(ARHL)是与衰老相关的渐进性听力丧失,是老年人群中最常见的感觉障碍。 ARHL的病理学包括Corti器官的毛细胞,血管纹,和传入螺旋神经节神经元以及中枢听觉通路。许多研究表明,线粒体DNA损伤的积累,活性氧的产生以及抗氧化功能的下降与随后的衰老应激引起的耳蜗衰老有关。线粒体在耳蜗细胞内在凋亡的诱导中起关键作用。可以通过某些干预措施,例如热量限制和补充抗氧化剂,预防实验动物中的ARHL。在这篇综述中,我们将专注于先前关于氧化应激和线粒体功能障碍在动物模型和人类模型中在ARHL病理中的作用的研究,并介绍有关ARHL发生机制的最新观点。

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