Gratton M A, Smyth B J, Lam C F, Boettcher F A, Schmiedt R A
Department of Otolaryngology and Communicative Sciences, Medical University of South Carolina, Charleston 29425-2242, USA.
Hear Res. 1997 Jun;108(1-2):9-16. doi: 10.1016/s0378-5955(97)00034-8.
The ion transport-mediating enzyme, Na,K-ATPase, is abundantly present in the cochlear lateral wall. This enzyme is essential for the generation and maintenance of the endocochlear potential. Diminished enzyme activity has been observed previously in the lateral wall of quiet-aged gerbils. The present study was designed to investigate the impact of the age-related decline in Na,K-ATPase specific activity upon auditory function. Measures of the resting endocochlear potential value and the level of Na,K-ATPase specific activity were made in cochleae obtained from gerbils aged in quiet conditions. Analysis revealed a high degree of correspondence between the level of lateral wall Na,K-ATPase specific activity and the value of the endocochlear potential measured in the round window/turn 1 region of the cochlea. Nonlinear regression models showed a strong relationship between the age-related reductions in enzyme activity and the magnitude of the endocochlear potential. The data suggest that during metabolic presbyacusis a decrease in Na,K-ATPase specific activity can explain most, but not all, of the decline in the endocochlear potential.
离子转运介导酶——钠钾ATP酶,大量存在于耳蜗外侧壁。这种酶对于内淋巴电位的产生和维持至关重要。先前在安静环境中饲养的老龄沙鼠的外侧壁中观察到酶活性降低。本研究旨在调查钠钾ATP酶比活性随年龄下降对听觉功能的影响。对从安静环境中饲养的沙鼠获取的耳蜗进行静息内淋巴电位值和钠钾ATP酶比活性水平的测量。分析显示,外侧壁钠钾ATP酶比活性水平与在耳蜗圆窗/第一圈区域测量的内淋巴电位值之间存在高度相关性。非线性回归模型表明,酶活性随年龄的降低与内淋巴电位的幅度之间存在密切关系。数据表明,在代谢性老年性聋期间,钠钾ATP酶比活性的降低可以解释内淋巴电位下降的大部分,但不是全部。