首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Age-related decline in Kv3.1b expression in the mouse auditory brainstem correlates with functional deficits in the medial olivocochlear efferent system.
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Age-related decline in Kv3.1b expression in the mouse auditory brainstem correlates with functional deficits in the medial olivocochlear efferent system.

机译:小鼠听觉脑干中与年龄相关的Kv3.1b表达下降与内侧小腱膜传出系统的功能缺陷有关。

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Kv3.1b channel protein is widely distributed in the mammalian auditory brainstem, but studies have focused mainly on regions critical for temporal processing, including the medial nucleus of the trapezoid body (MNTB) and anteroventral cochlear nucleus (AVCN). Because temporal processing declines with age, this study was undertaken to determine if the expression of Kv3.1b likewise declines, and if changes are specific to these nuclei. Immunocytochemistry using an anti-Kv3.1b antibody was performed, and the relative optical density of cells and neuropil was determined from CBA/CaJ mice of four age groups. Declines in expression in AVCN, MNTB, and lateral superior olive (35, 26, and 23%) were found, but changes were limited to neuropil. Interestingly, cellular optical density declines were found in superior paraolivary nucleus, ventral nucleus of the trapezoid body, and lateral nucleus of the trapezoid body (24, 29, and 26%), which comprise the medial olivocochlear (MOC) feedback system. All declines occurred by middle age (15 months old). No age-related changes were found in the remaining regions of cochlear nucleus or in the inferior colliculus. Contralateral suppression of distortion-product otoacoustic emission amplitudes of age-matched littermates also declined by middle age, suggesting a correlation between Kv3.1 expression and MOC function. In search of more direct evidence for such a correlation, Kv3.1b knockout mice were examined. Knockouts show poor MOC function as compared to +/+ and +/- genotypes. Thus, Kv3.1b expression declines in MOC neurons by middle age, and these changes appear to correlate with functional declines in efferent activity in both middle-aged CBA mice and Kv3.1b knockout mice.
机译:Kv3.1b通道蛋白广泛分布在哺乳动物的听觉脑干中,但研究主要集中在对时间加工至关重要的区域,包括梯形体的内侧核(MNTB)和前腹耳蜗核(AVCN)。由于时间加工随着年龄的增长而下降,因此进行了这项研究以确定Kv3.1b的表达是否同样下降,以及这些核是否有变化。进行了使用抗Kv3.1b抗体的免疫细胞化学分析,并从四个年龄组的CBA / CaJ小鼠中确定了细胞和神经纤维的相对光密度。发现AVCN,MNTB和外侧上橄榄的表达下降(分别为35%,26%和23%),但变化仅限于神经neuro。有趣的是,在上橄榄石旁核,梯形体的腹核和梯形体的外侧核(24%,29%和26%)中发现了细胞光密度下降,它们构成了内侧小腱(MOC)反馈系统。所有下降都发生在中年(15个月大)。在其余的耳蜗核或下丘胶中未发现与年龄相关的变化。对龄同龄人的畸变产物耳声发射幅度的对侧抑制也随着中年年龄的下降而下降,这表明Kv3.1表达与MOC功能之间存在相关性。为了寻找这种相关性的更直接的证据,检查了Kv3.1b敲除小鼠。与+ / +和+/-基因型相比,基因敲除显示出较差的MOC功能。因此,到中年,MOC神经元中Kv3.1b表达下降,并且这些变化似乎与中年CBA小鼠和Kv3.1b敲除小鼠的传出活动功能下降相关。

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