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雏鸡脑干听觉神经元对γ-氨基丁酸的去极化抑制反应。

A depolarizing inhibitory response to GABA in brainstem auditory neurons of the chick.

作者信息

Hyson R L, Reyes A D, Rubel E W

机构信息

Department of Psychology, Florida State University, Tallahassee 32306-1051, USA.

出版信息

Brain Res. 1995 Apr 17;677(1):117-26. doi: 10.1016/0006-8993(95)00130-i.

Abstract

Neurons in the brainstem auditory nuclei, n. magnocellularis and n. laminaris, of the chick are contacted by terminals containing the inhibitory neurotransmitter gamma-aminobutyric acid (GABA). In this report we describe the physiological response of these neurons to GABA using an in vitro slice preparation. In brainstem auditory neurons, GABA produced a depolarization of up to 20 mV and an associated decrease in input resistance. This depolarization was inhibitory; action potentials generated by orthodromic synaptic drive, antidromic stimulation and intracellular current injection were prevented by GABA application. The GABA response still occurred when synaptic transmission was prevented by perfusing the slice with a medium containing low Ca2+ and high Mg2+ concentrations. Thus, the effects of GABA were directly on the postsynaptic neuron and not via an interneuron. Whole-cell voltage clamp of neurons revealed that the reversal potential of the inward current was approximately -45 mV, suggesting that the channel responsible for this response is not selective for Cl- or K+. Pharmacological analyses suggest that this GABA receptor has properties distinct from those typical of either GABAa or GABAb receptors. Although a similar response was observed with the GABAa agonist, muscimol, it was not blocked by the GABAa antagonist, bicuculline. The response was not evoked by the GABAb agonist, baclofen, and was not blocked by the GABAb antagonist phaclofen. This unusual depolarizing response is not a common feature of all brainstem neurons. Neurons located in the neighboring medial vestibular nucleus show a more traditional response to GABA application. At resting potential, these neurons show a hyperpolarizing or biphasic response associated with a decrease in input resistance and inhibition of their spontaneous activity. GABA-induced responses in the medial vestibular nucleus are blocked by bicuculline. These results suggest that an unusual form of the GABA receptor is present in the brainstem auditory system of the chick. It is possible that this form of GABA receptor provides an efficient mechanism for inhibiting the relatively powerful EPSPs received by brainstem auditory neurons, or it may play a trophic role in the afferent regulation of neuronal integrity in this system.

摘要

鸡脑干听觉核团(巨细胞核和层状核)中的神经元与含有抑制性神经递质γ-氨基丁酸(GABA)的终末相接触。在本报告中,我们使用体外脑片制备方法描述了这些神经元对GABA的生理反应。在脑干听觉神经元中,GABA可产生高达20 mV的去极化,并伴有输入电阻的降低。这种去极化是抑制性的;通过GABA的应用可阻止由顺向突触驱动、逆向刺激和细胞内电流注入所产生的动作电位。当用含有低Ca2+和高Mg2+浓度的培养基灌注脑片以阻止突触传递时,GABA反应仍然会出现。因此,GABA的作用是直接作用于突触后神经元,而非通过中间神经元。对神经元进行全细胞电压钳记录显示,内向电流的反转电位约为 -45 mV,这表明负责此反应的通道对Cl-或K+不具有选择性。药理学分析表明,这种GABA受体具有与典型的GABAa或GABAb受体不同的特性。尽管使用GABAa激动剂蝇蕈醇时观察到了类似的反应,但它并未被GABAa拮抗剂荷包牡丹碱所阻断。该反应不是由GABAb激动剂巴氯芬诱发的,也未被GABAb拮抗剂法氯芬阻断。这种不寻常的去极化反应并非所有脑干神经元的共同特征。位于相邻内侧前庭核的神经元对GABA的应用表现出更为传统的反应。在静息电位时,这些神经元表现出与输入电阻降低和自发活动抑制相关的超极化或双相反应。内侧前庭核中GABA诱导的反应可被荷包牡丹碱阻断。这些结果表明,鸡脑干听觉系统中存在一种不寻常形式的GABA受体。这种形式的GABA受体可能为抑制脑干听觉神经元所接收的相对较强的兴奋性突触后电位提供了一种有效的机制,或者它可能在该系统中神经元完整性的传入调节中发挥营养作用。

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