Williamson Tanika T, Zhu Xiaoxia, Walton Joseph P, Frisina Robert D
Global Center for Hearing & Speech Research, University of South Florida, Tampa, Fla., USA.
Cell Tissue Res. 2015 Jul;361(1):359-69. doi: 10.1007/s00441-014-2003-9. Epub 2014 Oct 12.
The auditory function of the CBA/CaJ mouse strain is normal during the early phases of life and gradually declines over its lifespan, much like human age-related hearing loss (ARHL) but within the "time frame" of a mouse life cycle. This pattern of ARHL is similar to that of most humans: difficult to diagnose clinically at its onset and currently not treatable medically. To address the challenge of early diagnosis, we use CBA mice to analyze the initial stages and functional onset biomarkers of ARHL. The results from Auditory Brainstem Response (ABR) audiogram and Gap-in-noise (GIN) ABR tests were compared for two groups of mice of different ages, namely young adult and middle age. ABR peak components from the middle age group displayed minor changes in audibility but had a significantly higher prolonged peak latency and decreased peak amplitude in response to temporal gaps in comparison with the young adult group. The results for the younger subjects revealed gap thresholds and recovery rates that were comparable with previous studies of auditory neural gap coding. Our findings suggest that age-linked degeneration of the peripheral and brainstem auditory system begins in middle age, allowing for the possibility of preventative biomedical or hearing protection measures to be implemented in order to attenuate further damage to the auditory system attributable to ARHL.
CBA/CaJ小鼠品系的听觉功能在生命早期阶段是正常的,并在其生命周期内逐渐衰退,这与人类年龄相关性听力损失(ARHL)非常相似,但处于小鼠生命周期的“时间框架”内。这种ARHL模式与大多数人类相似:在发病时临床难以诊断,目前医学上也无法治疗。为应对早期诊断的挑战,我们使用CBA小鼠来分析ARHL的初始阶段和功能起始生物标志物。对两组不同年龄的小鼠,即年轻成年小鼠和中年小鼠,比较了听觉脑干反应(ABR)听力图和噪声间隙(GIN)ABR测试的结果。与年轻成年组相比,中年组的ABR峰值成分在可听度上有微小变化,但在对时间间隙的反应中,峰值潜伏期明显延长,峰值幅度降低。较年轻受试者的结果显示,间隙阈值和恢复率与先前关于听觉神经间隙编码的研究结果相当。我们的研究结果表明,外周和脑干听觉系统与年龄相关的退化始于中年,这使得有可能实施预防性生物医学或听力保护措施,以减轻ARHL对听觉系统造成的进一步损害。