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大鼠腹后丘脑内广泛分布的γ-氨基丁酸(GABA)介导的传入抑制过程及其与病理性疼痛状态和躯体感觉定位可塑性的可能关联。

Widely distributed GABA-mediated afferent inhibition processes within the ventrobasal thalamus of rat and their possible relevance to pathological pain states and somatotopic plasticity.

作者信息

Roberts W A, Eaton S A, Salt T E

机构信息

Department of Visual Science, Institute of Ophthalmology, London, UK.

出版信息

Exp Brain Res. 1992;89(2):363-72. doi: 10.1007/BF00228252.

Abstract

We have recently described extensive inhibitory interactions between inputs to the ventroposterolateral (VPL) (Roberts and Wells 1990, 1991) and ventroposteromedial (VPM) (Salt 1989) portions of the ventrobasal nucleus of the thalamus (VB). We wished to determine whether (i) the inhibition observed in the VPL was operating at the thalamic level, (ii) was dependent on GABA receptors, (iii) was demonstrable on neurons of the ventro-posteromedial nucleus of the thalamus (VPM) and (iv) was operant on test responses evoked by natural stimuli. Conditioning stimulation of sciatic nerve afferents caused inhibition of air jet evoked test responses of single VB neurons in urethane-anaesthetized rats. Both VPM and VPL neurons were subject to inhibition by conditioning stimulation of hindlimb afferents, indicating the wide-spread nature of the inhibitory process. This inhibition was reduced by the iontophoretic application of SR95531, a GABAA receptor antagonist. We conclude that there is a widely distributed inhibitory system operating in the somatic thalamus which involves both the medial and lateral portions of the nucleus and is, at least in part, mediated by GABAA receptors. The possible involvement of inhibitory processes and intrinsic membrane properties of thalamic neurones in the somatotopic plasticity of the sensory thalamus following deafferentation and in deafferentation pain is discussed.

摘要

我们最近描述了丘脑腹侧基底核(VB)腹后外侧核(VPL)(罗伯茨和韦尔斯,1990年、1991年)和腹后内侧核(VPM)(索尔特,1989年)输入之间广泛的抑制性相互作用。我们希望确定:(i)在VPL中观察到的抑制是否在丘脑水平起作用;(ii)是否依赖于GABA受体;(iii)在丘脑腹后内侧核(VPM)的神经元上是否可证实;(iv)对自然刺激诱发的测试反应是否起作用。在乌拉坦麻醉的大鼠中,对坐骨神经传入纤维进行条件刺激会抑制单个VB神经元对喷气诱发的测试反应。对后肢传入纤维进行条件刺激会使VPM和VPL神经元均受到抑制,这表明抑制过程具有广泛分布的特性。通过离子导入法应用GABAA受体拮抗剂SR95531可减弱这种抑制。我们得出结论,在躯体丘脑中存在一个广泛分布的抑制系统,该系统涉及核的内侧和外侧部分,并且至少部分由GABAA受体介导。本文还讨论了抑制过程和丘脑神经元的内在膜特性在去传入后感觉丘脑的躯体定位可塑性以及去传入疼痛中可能的参与情况。

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