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谷氨酸能小脑和 GABA 能基底节传入纤维向大鼠运动丘脑核的补充分布。

Complementary distribution of glutamatergic cerebellar and GABAergic basal ganglia afferents to the rat motor thalamic nuclei.

机构信息

Department of Morphological Brain Science, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

出版信息

Eur J Neurosci. 2011 Jan;33(1):95-109. doi: 10.1111/j.1460-9568.2010.07481.x. Epub 2010 Nov 14.

Abstract

Motor thalamic nuclei, ventral anterior (VA), ventral lateral (VL) and ventral medial (VM) nuclei, receive massive glutamatergic and GABAergic afferents from the cerebellum and basal ganglia, respectively. In the present study, these afferents were characterized with immunoreactivities for glutamic acid decarboxylase of 67 kDa (GAD67) and vesicular glutamate transporter (VGluT)2, and examined by combining immunocytochemistry with the anterograde axonal labeling and neuronal depletion methods in the rat brain. VGluT2 immunoreactivity was intense in the caudodorsal portion of the VA-VL, whereas GAD67 immunoreactivity was abundant in the VM and rostroventral portion of the VA-VL. The rostroventral VA-VL and VM contained two types of GAD67-immunopositive varicosities (large and small), but the caudodorsal VA-VL comprised small ones alone. VGluT2-immunopositive varicosities were much larger in the caudodorsal VA-VL than those in the rostroventral VA-VL and VM. When anterograde tracers were injected into the basal ganglia output nuclei, the vast majority of labeled axon varicosities were large and distributed in the rostroventral VA-VL and VM, showing immunoreactivity for GAD67, but not for VGluT2. Only the large GAD67-immunopositive varicosities were mostly abolished by kainic acid depletion of substantia nigra neurons. In contrast, large to giant axon varicosities derived from the deep cerebellar nuclei were distributed mostly in the caudodorsal VA-VL, displaying VGluT2 immunoreactivity. The VGluT2-positive varicosities disappeared from the core portion of the caudodorsal VA-VL by depletion of cerebellar nucleus neurons. Thus, complementary distributions of large VGluT2- and GAD67-positive terminals in the motor thalamic nuclei are considered to reflect glutamatergic cerebellar and GABAergic basal ganglia afferents, respectively.

摘要

运动丘脑核,腹前核(VA)、腹外侧核(VL)和腹内侧核(VM),分别接收来自小脑和基底神经节的大量谷氨酸能和 GABA 能传入。在本研究中,这些传入纤维用谷氨酸脱羧酶 67kDa(GAD67)和囊泡谷氨酸转运体(VGluT)2 的免疫反应性进行了描述,并通过结合免疫细胞化学与顺行轴突标记和神经元耗竭方法在大鼠脑中进行了检查。VGluT2 免疫反应性在 VA-VL 的尾侧背侧部分强烈,而 GAD67 免疫反应性在 VM 和 VA-VL 的头侧腹侧部分丰富。头侧腹侧 VA-VL 和 VM 包含两种类型的 GAD67 免疫阳性轴突终末(大的和小的),但尾侧背侧 VA-VL 仅包含小的。VGluT2 免疫阳性轴突终末在尾侧背侧 VA-VL 比在头侧腹侧 VA-VL 和 VM 中更大。当将顺行示踪剂注射到基底神经节输出核时,标记的轴突终末的绝大多数是大的,并分布在头侧腹侧 VA-VL 和 VM 中,显示 GAD67 免疫反应性,但没有 VGluT2 免疫反应性。只有通过黑质神经元的海人酸耗竭才能大部分消除大的 GAD67 免疫阳性轴突终末。相比之下,来自深部小脑核的大到巨大的轴突终末主要分布在尾侧背侧 VA-VL,显示 VGluT2 免疫反应性。通过耗竭小脑核神经元,VGluT2 阳性终末从尾侧背侧 VA-VL 的核心部分消失。因此,运动丘脑核中大的 VGluT2 和 GAD67 阳性终末的互补分布被认为分别反映了谷氨酸能的小脑和 GABA 能的基底神经节传入。

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