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关于ephrinA2在听觉功能中的作用。

On the role of ephrinA2 in auditory function.

作者信息

Ingham Neil J, Steel Karen P, Drescher Uwe

机构信息

Wolfson Centre for Age-Related Diseases, King's College London, Guy's Campus, London, SE1 1UL, United Kingdom.

MRC Centre for Neurodevelopmental Disorders, King's College London, Guy's Campus, London, SE1 1UL, United Kingdom.

出版信息

Hear Res. 2017 Jul;350:11-16. doi: 10.1016/j.heares.2017.04.002. Epub 2017 Apr 5.

Abstract

Recent findings suggest that the manipulation of the EphA/ephrinA system can improve hearing threshold sensitivity in the auditory system (Yates et al., 2014). These results appear to open-up the possibility that pharmacological manipulation of this system could lead to the development of treatments to cure some types of hearing loss. As a first step towards this goal, we have performed a further series of auditory brainstem evoked potential recordings on ephrinA2 homozygous knockout mice and their wildtype littermates in order to replicate the previously reported findings. However, we found that ephrinA2 knockout mice had auditory threshold sensitivity for click and 3-42 kHz tone pip frequencies comparable to that of their wildtype littermates. Evoked potential wave amplitudes, latencies and inter-peak intervals were also comparable between ephrinA2 knockout mice and wild type control littermates. Thus in our experiments we could not replicate the findings of Yates et al. (2014). Whilst the EphA/ephrinA system may therefore play a role in the development of innervation of the cochlea and neural circuitry of the auditory brainstem, there appears to be a functional redundancy between members of this family such that loss of ephrinA2 function alone is insufficient to alter auditory function in the mouse.

摘要

最近的研究结果表明,对EphA/ephrinA系统的调控可提高听觉系统的听力阈值敏感性(耶茨等人,2014年)。这些结果似乎开启了一种可能性,即对该系统进行药物调控可能会促使开发出治疗某些类型听力损失的方法。作为朝着这一目标迈出的第一步,我们对ephrinA2纯合敲除小鼠及其野生型同窝小鼠进行了一系列进一步的听觉脑干诱发电位记录,以便重现先前报道的结果。然而,我们发现ephrinA2敲除小鼠对短声和3 - 42kHz纯音频率的听觉阈值敏感性与它们的野生型同窝小鼠相当。ephrinA2敲除小鼠与野生型对照同窝小鼠之间的诱发电位波幅、潜伏期和峰间期也相当。因此,在我们的实验中,我们无法重现耶茨等人(2014年)的研究结果。虽然EphA/ephrinA系统因此可能在耳蜗神经支配和听觉脑干神经回路的发育中发挥作用,但该家族成员之间似乎存在功能冗余,以至于仅ephrinA2功能丧失不足以改变小鼠的听觉功能。

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