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新生大鼠耳蜗切除术破坏了梯形体内侧核的抑制性传递。

Cochlear ablation in neonatal rats disrupts inhibitory transmission in the medial nucleus of the trapezoid body.

机构信息

Department of Auditory Neuroscience, Institute of Experimental Medicine, Academy of Sciences of the Czech Republic, Videnska 1083, 14220 Prague 4 - Krc, Czech Republic.

Department of Auditory Neuroscience, Institute of Experimental Medicine, Academy of Sciences of the Czech Republic, Videnska 1083, 14220 Prague 4 - Krc, Czech Republic.

出版信息

Neurosci Lett. 2019 Apr 23;699:145-150. doi: 10.1016/j.neulet.2019.01.058. Epub 2019 Feb 8.

Abstract

Inhibitory circuits in the auditory brainstem undergo multiple postnatal changes that are both activity-dependent and activity-independent. We tested to see if the shift from GABA- to glycinergic transmission, which occurs in the rat medial nucleus of the trapezoid body (MNTB) around the onset of hearing, depends on sound-evoked neuronal activity. We prevented the activity by bilateral cochlear ablations in early postnatal rats and studied ionotropic GABA and glycine receptors in MNTB neurons after hearing onset. The removal of the cochlea decreased responses of GABA and glycine receptors to exogenous agonists as well as the amplitudes of inhibitory postsynaptic currents. The reduction was accompanied by a decrease in the number of glycine receptor- or vesicular GABA transporter-immunopositive puncta. Furthermore, the ablations markedly affected the switch in presynaptic GABA to glycine receptors. The increase in the expression of postsynaptic glycine receptors and the shift in inhibitory transmitters were not prevented. The results suggest that inhibitory transmission in the MNTB is subject to multiple developmental signals and support the idea that auditory experience plays a role in the maturation of the brainstem glycinergic circuits.

摘要

听觉脑干中的抑制性回路在出生后经历了多种变化,这些变化既依赖于活动,也不依赖于活动。我们测试了听觉开始时在大鼠梯形体中间核(MNTB)中发生的从 GABA 到甘氨酸能传递的转变是否依赖于声音诱发的神经元活动。我们通过在新生大鼠的双侧耳蜗切除来阻止这种活动,并在听觉开始后研究 MNTB 神经元中的离子型 GABA 和甘氨酸受体。耳蜗的移除降低了 GABA 和甘氨酸受体对外源性激动剂的反应以及抑制性突触后电流的幅度。这种减少伴随着甘氨酸受体或囊泡 GABA 转运体免疫阳性斑点数量的减少。此外,切除明显影响了 GABA 在前突触向甘氨酸受体的转变。突触后甘氨酸受体表达的增加和抑制性递质的转移并没有被阻止。结果表明,MNTB 中的抑制性传递受到多种发育信号的影响,并支持听觉经验在脑干甘氨酸能回路成熟中发挥作用的观点。

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