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到蜗背侧核颗粒细胞的突触输入。

Synaptic inputs to granule cells of the dorsal cochlear nucleus.

作者信息

Balakrishnan Veeramuthu, Trussell Laurence O

机构信息

Oregon Hearing Research Center and Vollum Institute, L335A, 3181 S. W. Sam Jackson Park Rd., Portland, OR 97239, USA.

出版信息

J Neurophysiol. 2008 Jan;99(1):208-19. doi: 10.1152/jn.00971.2007. Epub 2007 Oct 24.

Abstract

The mammalian dorsal cochlear nucleus (DCN) integrates auditory nerve input with nonauditory signals via a cerebellar-like granule cell circuit. Although granule cells carry nonauditory information to the DCN, almost nothing is known about their physiology. Here we describe electrophysiological features of synaptic inputs to granule cells in the DCN by in vitro patch-clamp recordings from P12 to P22 rats. Granule cells ranged from 6 to 8 microm in cell body diameter and had high-input resistance. Excitatory postsynaptic currents consisted of both AMPA receptor-mediated and N-methyl-D-aspartate receptor-mediated currents. Synaptically evoked excitatory postsynaptic currents ranged from -25 to -140 pA with fast decay time constants. Synaptic stimulation evoked both short- and long-latency synaptic responses that summated to spike threshold, indicating the presence of a polysynaptic excitatory pathway in the granule cell circuit. Synaptically evoked inhibitory postsynaptic currents in Cl(-)-loaded cells ranged from -30 to -1,021 pA and were mediated by glycine and, to a lesser extent, GABA(A) receptors. Unlike cerebellar granule cells, DCN granule cells lacked tonic inhibition by GABA. The glycinergic synaptic conductance was mediated by heteromeric glycine receptors and was far stronger than the glutamatergic conductance, suggesting that glycinergic neurons may act to gate nonauditory signals in the DCN.

摘要

哺乳动物的背侧耳蜗核(DCN)通过类似小脑的颗粒细胞回路将听神经输入与非听觉信号整合起来。尽管颗粒细胞将非听觉信息传递至DCN,但对其生理学特性却几乎一无所知。在此,我们通过对出生后12至22天大鼠进行体外膜片钳记录,描述了DCN中颗粒细胞突触输入的电生理特征。颗粒细胞的胞体直径在6至8微米之间,输入电阻较高。兴奋性突触后电流由AMPA受体介导的电流和N-甲基-D-天冬氨酸受体介导的电流组成。突触诱发的兴奋性突触后电流范围为-25至-140 pA,衰减时间常数较快。突触刺激诱发了短潜伏期和长潜伏期的突触反应,这些反应总和达到动作电位阈值,表明在颗粒细胞回路中存在多突触兴奋性通路。在Cl⁻负载细胞中,突触诱发的抑制性突触后电流范围为-30至-1021 pA,由甘氨酸介导,在较小程度上由GABA(A)受体介导。与小脑颗粒细胞不同,DCN颗粒细胞缺乏GABA的紧张性抑制。甘氨酸能突触电导由异聚甘氨酸受体介导,且远比谷氨酸能电导强,这表明甘氨酸能神经元可能在DCN中对非听觉信号起闸门作用。

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