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中年时过度表达耳蜗神经生长因子-3 可预防与年龄相关的内毛细胞突触病变,并减缓与年龄相关的听力损失。

Cochlear Neurotrophin-3 overexpression at mid-life prevents age-related inner hair cell synaptopathy and slows age-related hearing loss.

机构信息

Kresge Hearing Research Institute and Department of Otolaryngology-Head and Neck Surgery, University of Michigan, Ann Arbor, Michigan, USA.

Eaton-Peabody Laboratories, Massachusetts Eye & Ear, and Department of Otolaryngology, Head and Neck Surgery, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Aging Cell. 2022 Oct;21(10):e13708. doi: 10.1111/acel.13708. Epub 2022 Sep 11.

Abstract

Age-related hearing loss (ARHL) is the most prevalent sensory deficit in the elderly. This progressive pathology often has psychological and medical comorbidities, including social isolation, depression, and cognitive decline. Despite ARHL's enormous societal and economic impact, no therapies to prevent or slow its progression exist. Loss of synapses between inner hair cells (IHCs) and spiral ganglion neurons (SGNs), a.k.a. IHC synaptopathy, is an early event in cochlear aging, preceding neuronal and hair cell loss. To determine if age-related IHC synaptopathy can be prevented, and if this impacts the time-course of ARHL, we tested the effects of cochlear overexpression of neurotrophin-3 (Ntf3) starting at middle age. We chose Ntf3 because this neurotrophin regulates the formation of IHC-SGN synapses in the neonatal period. We now show that triggering Ntf3 overexpression by IHC supporting cells starting in middle age rapidly increases the amplitude of sound-evoked neural potentials compared with age-matched controls, indicating that Ntf3 produces a positive effect on cochlear function when the pathology is minimal. Furthermore, near the end of their lifespan, Ntf3-overexpressing mice have milder ARHL, with larger sound-evoked potentials along the ascending auditory pathway and reduced IHC synaptopathy compared with age-matched controls. Our results also provide evidence that an age-related decrease in cochlear Ntf3 expression contributes to ARHL and that Ntf3 supplementation could serve as a therapeutic for this prevalent disorder. Furthermore, these findings suggest that factors that regulate synaptogenesis during development could prevent age-related synaptopathy in the brain, a process involved in several central nervous system degenerative disorders.

摘要

年龄相关性听力损失(ARHL)是老年人中最常见的感觉缺陷。这种进行性病理通常伴有心理和医学合并症,包括社交孤立、抑郁和认知能力下降。尽管 ARHL 对社会和经济的影响巨大,但目前尚无预防或减缓其进展的疗法。内毛细胞(IHC)和螺旋神经节神经元(SGN)之间突触的丧失,即 IHC 突触病,是耳蜗老化的早期事件,先于神经元和毛细胞的丧失。为了确定年龄相关性 IHC 突触病是否可以预防,以及这是否会影响 ARHL 的时程,我们测试了从中年开始耳蜗过表达神经营养因子 3(Ntf3)对其的影响。我们选择 Ntf3 是因为这种神经营养因子在新生儿期调节 IHC-SGN 突触的形成。我们现在表明,从中年开始,通过 IHC 支持细胞触发 Ntf3 过表达可迅速增加声音诱发神经电位的幅度,与年龄匹配的对照组相比,这表明 Ntf3 在病理最小化时对耳蜗功能产生积极影响。此外,在它们的寿命末期,Ntf3 过表达的小鼠具有更温和的 ARHL,与年龄匹配的对照组相比,沿听觉通路上升的声音诱发电位更大,IHC 突触病更少。我们的结果还提供了证据,表明耳蜗 Ntf3 表达的年龄相关性下降导致 ARHL,并且 Ntf3 补充可能成为这种普遍疾病的治疗方法。此外,这些发现表明,在发育过程中调节突触发生的因素可能预防大脑中的年龄相关性突触病,这是几种中枢神经系统退行性疾病的一个过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1da8/9577954/8e8dff019bf4/ACEL-21-e13708-g004.jpg

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