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Functional aging of the inner ear sensory systems in mouse models of age-related hearing loss.

机译:与年龄有关的听力损失的小鼠模型中内耳感觉系统的功能老化。

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摘要

Age related structural and functional change in the cochlea have been well described and predisposing factors including genetic background, gender, and environmental factors have been identified. To date, nine genetic loci contributing to age related hearing loss (ARHL) have been identified and auditory function has been described in mouse strains carrying these mutations. The effect of these ARHL mutations on the other inner ear modality (vestibular) is poorly understood. The objective of the current study was to characterize and compare age related change in auditory and vestibular function (more specifically macular function) in three strains carrying ARHL mutations (C57BL/6J, CE/J, and NOD NON-H2nb1/LtJ) and one control strain with no known mutations (CBA/CaJ). Auditory brainstem response (ABR) and distortion product otoacoustic emissions (DPOAE) were used to assess cochlear function and vestibular evoked potential (VsEP) was used to assess macular function. The macular organs from young, mid-life, and old animals were harvested, prepared, and imaged using scanning electron microscopy (SEM) and a qualitative comparison of the number and distribution of macular otoconia was made.;ABR and VsEP thresholds, peak latencies, and peak to peak amplitudes were quantified. Linear regression, student's T-test, and ANOVA were used to describe and compare auditory and macular function between genders, within strain, and between strains. DPOAE amplitude was plotted as a function of geometric mean frequency for 11 age groups. No statistical analysis was performed on DPOAE data.;No significant gender difference was found for auditory or vestibular function in any strain so genders were pooled for further analysis. The intra-strain comparison of auditory and macular sensitivity reveals a significantly different rate of change in the two modalities in all three strains (p0.0001). Inter-strain comparison of change in macular sensitivity shows that the CBA/CaJ and CE/J strains lose sensitivity at a significantly faster rate than the C57 strain. A comparison of SEM images from young and old mice revealed no apparent qualitative difference in macular otoconia that would explain the observed declines in macular sensitivity.;These results suggest (1) there are age related declines in auditory and macular sensitivity and aging alone affects the two inner ear sensory systems at a similar rate; (2) that a genetic disposition for age related functional decline in one inner ear modality does not obligate or predict age related decline in the other inner ear modality. Genetic background is an important factor in age related hearing loss and vestibular dysfunction and will likely play an increasingly important role in diagnosis and treatment of these disorders.
机译:耳蜗中与年龄相关的结构和功能变化已得到很好的描述,诱发因素包括遗传背景,性别和环境因素也已被鉴定。迄今为止,已经鉴定出九个导致年龄相关性听力损失(ARHL)的遗传基因座,并且已经在携带这些突变的小鼠品系中描述了听觉功能。这些ARHL突变对其他内耳模(前庭)的影响了解甚少。本研究的目的是鉴定和比较三种携带ARHL突变的菌株(C57BL / 6J,CE / J和NOD NON-H2nb1 / LtJ)中一种与年龄相关的听觉和前庭功能(更确切地说是黄斑功能)的变化。没有已知突变的对照菌株(CBA / CaJ)。听性脑干反应(ABR)和畸变产物耳声发射(DPOAE)用于评估耳蜗功能,前庭诱发电位(VsEP)用于评估黄斑功能。使用扫描电子显微镜(SEM)采集,准备,准备和成像来自年轻,中年和老年动物的黄斑部器官,并对黄斑性耳垢的数量和分布进行定性比较; ABR和VsEP阈值,峰潜伏期,并量化了峰到峰的幅度。线性回归,Student's T检验和方差分析用于描述和比较性别,品系内以及品系之间的听觉和黄斑功能。将11个年龄组的DPOAE振幅绘制为几何平均频率的函数。没有对DPOAE数据进行统计分析。;在任何菌株中,听觉或前庭功能均未发现明显的性别差异,因此将性别汇总以进行进一步分析。菌株内听觉和黄斑敏感性的比较揭示了所有三种菌株中两种形态的变化率显着不同(p <0.0001)。菌株间黄斑敏感性变化的比较显示,CBA / CaJ和CE / J菌株比C57菌株以明显更快的速率丧失敏感性。比较来自年轻小鼠和老年小鼠的SEM图像后发现,黄斑耳垢未见明显的质量差异,这可以解释观察到的黄斑敏感性下降;这些结果表明(1)听觉和黄斑敏感性与年龄有关,并且衰老会单独影响衰老。两个内耳感觉系统,以相似的速度; (2)一个内耳模态与年龄相关的功能性衰退的遗传因素并不能约束或预测另一内耳模态与年龄相关的性衰退。遗传背景是与年龄有关的听力损失和前庭功能障碍的重要因素,并且可能在这些疾病的诊断和治疗中起越来越重要的作用。

著录项

  • 作者

    Mock, Bruce E.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Health Sciences Audiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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