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无神经球蛋白的听觉

Hearing Without Neuroglobin.

机构信息

Institute of Cell Biology and Neuroscience, Goethe-University, Frankfurt am Main, Germany.

Institute of Cell Biology and Neuroscience, Goethe-University, Frankfurt am Main, Germany.

出版信息

Neuroscience. 2017 Dec 16;366:138-148. doi: 10.1016/j.neuroscience.2017.10.010. Epub 2017 Oct 13.

Abstract

Neuroglobin (Ngb) is a member of the globin family of respiratory proteins, which was recently observed in many neurons of the auditory pathways. Up to now, however, nothing was known about the role of Ngb in hearing processes. We therefore studied auditory function by recording distortion-product otoacoustic emissions (DPOAE) and auditory brainstem responses (ABRs) in wild-type (C57BL/6N) and Ngb-knockout mice. In KO mice, DPOAE thresholds were moderately augmented in the range of 5-18 kHz, reaching statistical significance at 8 and 10 kHz, while the ABR thresholds were not different between groups. The activation of the efferent system by an additional noise given to the contralateral ear resulted in an increased f2-f1-emission level only in WT animals. A noise exposure resulted in similar acute threshold shifts in the DPOAE and ABR of both animal groups. The recovery of hearing function, expressed by decreased DPOAE thresholds, was not significantly different between groups after four days and after four weeks. ABR recordings showed that threshold shifts elicited by noise-trauma were slightly better revised in wild-type mice. While ABR amplitudes were similar in both groups before noise overexposure, four weeks after trauma a moderate but statistically significant decrease of the latest peak-to-peak response amplitude (originating in the inferior colliculus) was observed in KO mice. Our results suggest that the lack of Ngb, at least in the model used in the present study, results in only marginal deficits in hearing ability. A putative functional role of Ngb in the efferent system warrants further studies.

摘要

神经球蛋白(Ngb)是呼吸蛋白球蛋白家族的成员,最近在听觉通路的许多神经元中观察到。然而,到目前为止,对于 Ngb 在听力过程中的作用还一无所知。因此,我们通过记录畸变产物耳声发射(DPOAE)和听性脑干反应(ABR)来研究听觉功能,这些研究是在野生型(C57BL/6N)和 Ngb 敲除小鼠中进行的。在 KO 小鼠中,DPOAE 阈值在 5-18 kHz 的范围内适度增加,在 8 和 10 kHz 时达到统计学意义,而两组之间的 ABR 阈值没有差异。通过向对侧耳朵额外施加噪声来激活传出系统,仅在 WT 动物中导致 f2-f1 发射水平增加。噪声暴露导致两组动物的 DPOAE 和 ABR 均产生类似的急性阈值偏移。在四天和四周后,听力功能的恢复(表现为 DPOAE 阈值降低)在两组之间没有显著差异。ABR 记录显示,噪声创伤引起的阈值偏移在野生型小鼠中得到了更好的修正。虽然在过度暴露于噪声之前,两组的 ABR 幅度相似,但在创伤后四周,KO 小鼠中观察到最新的峰间峰间反应幅度(起源于下丘)适度但统计学上显著降低。我们的结果表明,至少在本研究中使用的模型中,Ngb 的缺乏只会导致听力能力的轻微缺陷。Ngb 在传出系统中的潜在功能作用值得进一步研究。

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