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视网膜神经纤维切断术后大鼠视觉系统中囊泡型谷氨酸转运体免疫细胞化学定位的变化。

Changes of immunocytochemical localization of vesicular glutamate transporters in the rat visual system after the retinofugal denervation.

作者信息

Fujiyama Fumino, Hioki Hiroyuki, Tomioka Ryohei, Taki Kousuke, Tamamaki Nobuaki, Nomura Sakashi, Okamoto Keiko, Kaneko Takeshi

机构信息

Department of Morphological Brain Science, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan.

出版信息

J Comp Neurol. 2003 Oct 13;465(2):234-49. doi: 10.1002/cne.10848.

Abstract

To clarify which vesicular glutamate transporter (VGluT) is used by excitatory axon terminals of the retinofugal system, we examined immunoreactivities and mRNA signals for VGluT1 and VGluT2 in the rat retina and compared immunoreactivities for VGluT1 and VGluT2 in the retinorecipient regions using double immunofluorescence method, anterograde tracing, and immunoelectron microscopy. Furthermore, the changes of VGluT1 and VGluT2 immunoreactivities were studied after eyeball enucleation. Intense immunoreactivity and mRNA signal for VGluT2, but not for VGluT1 immunoreactivity, were observed in most perikarya of ganglion cells in the retina. Immunoelectron microscopy revealed that VGluT1- and VGluT2-immunolabeled terminals made asymmetrical synapses, suggesting that they were excitatory synapses, and that VGluT1-immunolabeled terminals were smaller than VGluT2-labeled ones in many retinorecipient regions, such as the dorsal lateral geniculate nucleus (LGd) and superior colliculus (SC). Double immunofluorescence study further revealed that almost no VGluT2 immunoreactivity was colocalized with VGluT1 in the retinorecipient regions. After wheat germ agglutinin (WGA) injection into the eyeballs, WGA immunoreactivity was colocalized in the single axon terminals of LGd and SC with VGluT2 but not VGluT1 immunoreactivity. After unilateral enucleation, VGluT2 immunoreactivity in the LGd, SC, nucleus of the optic tract, and nuclei of the accessory optic tract in the contralateral side of the enucleated eye was clearly decreased. Although only a small change of VGluT2 immunoreactivity was observed in the contra- and ipsilateral suprachiasmatic nuclei, olivary pretectal nucleus, anterior pretectal nucleus, and posterior pretectal nucleus, moderate reduction of VGluT2 was found in these regions after bilateral enucleation. On the other hand, almost no change in VGluT1 immunoreactivity was found in the structures examined in the present enucleation study. Thus, the present results support the notion that the retinofugal pathways are glutamatergic, and indicate that VGluT2, but not VGluT1, is employed for accumulating glutamate into synaptic vesicles of retinofugal axons.

摘要

为了阐明视网膜传出系统的兴奋性轴突终末使用哪种囊泡谷氨酸转运体(VGluT),我们检测了大鼠视网膜中VGluT1和VGluT2的免疫反应性及mRNA信号,并使用双免疫荧光法、顺行示踪和免疫电子显微镜比较了视网膜接受区中VGluT1和VGluT2的免疫反应性。此外,还研究了眼球摘除术后VGluT1和VGluT2免疫反应性的变化。在视网膜神经节细胞的大多数胞体中观察到了强烈的VGluT2免疫反应性和mRNA信号,但未观察到VGluT1的免疫反应性。免疫电子显微镜显示,VGluT1和VGluT2免疫标记的终末形成不对称突触,表明它们是兴奋性突触,并且在许多视网膜接受区,如背侧外侧膝状体核(LGd)和上丘(SC)中,VGluT1免疫标记的终末比VGluT2标记的终末小。双免疫荧光研究进一步显示,在视网膜接受区,几乎没有VGluT2免疫反应性与VGluT1共定位。将小麦胚芽凝集素(WGA)注入眼球后,WGA免疫反应性与VGluT2而非VGluT1免疫反应性共定位在LGd和SC的单个轴突终末中。单侧眼球摘除后,摘除眼对侧的LGd、SC、视束核和副视束核中的VGluT2免疫反应性明显降低。虽然在对侧和同侧视交叉上核、橄榄前顶盖核、前顶盖前核和顶盖后核中仅观察到VGluT2免疫反应性有小的变化,但双侧眼球摘除后在这些区域发现VGluT2有中度降低。另一方面,在本眼球摘除研究中检测的结构中,VGluT1免疫反应性几乎没有变化。因此,目前的结果支持视网膜传出通路是谷氨酸能的这一观点,并表明是VGluT2而非VGluT1用于将谷氨酸积累到视网膜传出轴突的突触小泡中。

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