首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Loss of GABAB Receptors in Cochlear Neurons: Threshold Elevation Suggests Modulation of Outer Hair Cell Function by Type II Afferent Fibers
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Loss of GABAB Receptors in Cochlear Neurons: Threshold Elevation Suggests Modulation of Outer Hair Cell Function by Type II Afferent Fibers

机译:耳蜗神经元中GABA B受体的丢失:阈值升高提示II型传入纤维对外部毛细胞功能的调节

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摘要

Despite pharmacological and immunohistochemical evidence for GABA as a neurotransmitter in the olivocochlear efferent bundle, a clear functional role of GABA in the inner ear has not emerged. To explore the role of metabotropic GABAB receptors, we characterized the cochlear phenotype of mice with targeted deletion of the GABAB1 subunit and determined its tissue localization using a mouse line expressing a GFP-tagged GABAB1 subunit under the endogenous promoter. Immunostaining revealed GABAB1 expression in both type I and type II ganglion cells and in their synaptic terminals under inner and outer hair cells, respectively. No GABAB1 expression was observed in hair cells. Mean cochlear thresholds, measured via both auditory brainstem responses and distortion product otoacoustic emissions (DPOAEs), were elevated by ∼10 dB in GABAB1-deficient mice, consistent with outer hair cell dysfunction. Olivocochlear efferent function, assessed via DPOAE suppression during efferent electrical stimulation, was unaffected by GABAB1 deletion. GABAB1-deficient mice showed increased resistance to permanent acoustic injury, with mean threshold shifts ∼25 dB smaller than wild-types after exposure to 8–16-kHz noise at 100 dB for 2 h. In contrast, there was no vulnerability difference to temporary acoustic injury following exposure to the same noise at 94 dB for 15 min. Our results suggest that GABAergic signaling in type II afferent neurons may be required for normal outer hair cell amplifier function at low sound levels and may also modulate outer hair cell responses to high-level sound.
机译:尽管有药理学和免疫组化证据表明GABA在小耳毛发束中是神经递质,但GABA在内耳中尚未发挥明显的功能。为了探索代谢型GABAB受体的作用,我们表征了具有目标性缺失GABAB1亚基的小鼠的耳蜗表型,并使用在内源启动子下表达GFP标签的GABAB1亚基的小鼠品系确定了其组织定位。免疫染色揭示了GABA B1在I型和II型神经节细胞中以及在内部和外部毛细胞下方的突触末端中的表达。在毛细胞中未观察到GABA B1表达。通过听觉脑干反应和畸变产物耳声发射(DPOAEs)测得的平均耳蜗阈值在GABAB1缺陷小鼠中升高了约10 dB,与外毛细胞功能障碍一致。在传出的电刺激过程中通过DPOAE抑制作用评估的耳蜗传出功能不受GABA B1缺失的影响。缺乏GABA B1的小鼠显示出对永久性声损伤的抵抗力增强,在100dB的噪音下暴露8小时至16kHz达2小时后,平均阈值位移比野生型小25dB。相比之下,在94dB的相同噪声下暴露15分钟后,暂时性声学损伤没有脆弱性差异。我们的结果表明,低声音水平下正常的外部毛细胞放大器功能可能需要II型传入神经元中的GABA能信号,并且还可能调节外部毛细胞对高水平声音的反应。

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