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大鼠主嗅球中囊泡谷氨酸转运体表达的产后变化。

Postnatal changes in expression of vesicular glutamate transporters in the main olfactory bulb of the rat.

作者信息

Ohmomo H, Ina A, Yoshida S, Shutoh F, Ueda S, Hisano S

机构信息

Department of Histology and Neurobiology, Dokkyo Medical University School of Medicine, Mibu, Tochigi 321-0293, Japan.

出版信息

Neuroscience. 2009 May 5;160(2):419-26. doi: 10.1016/j.neuroscience.2009.02.048. Epub 2009 Mar 3.

Abstract

Olfactory information is initially processed through intricate synaptic interactions between glutamatergic projection neurons and GABAergic interneurons in the olfactory bulb. Although bulbar neurons and networks have been reported to develop even postnatally, much is yet unknown about the glutamatergic neuron development. To address this issue, we studied the postnatal ontogeny of vesicular glutamate transporters (VGLUT1 and VGLUT2) in the main olfactory bulb of rats, using in situ hybridization, immunohistochemistry, and their combination. In situ hybridization data showed that VGLUT1 mRNA is intensely expressed in differentiating mitral cells and smaller cells of the mitral cell layer (MCL) on postnatal day 1 (P1), and also at lower levels in small- and medium-sized cells, presumably tufted cell populations, of the external plexiform layer (EPL) from P5 onward. VGLUT2 mRNA was expressed in many MCL cell populations on P1, also in small- and medium-sized cells of the EPL at almost the same level as MCL cells between P5 and P7, and became apparently less intense in the MCL than in the EPL from P10 onward. The expression, unlike VGLUT1 mRNA, was also found in small-sized cells of the interglomerular region. In partial agreement with these data, immunohistochemical analyses demonstrated that subsets of mitral and EPL cells are stained for VGLUT1 or VGLUT2, with the former cells coexpressing both subtypes until P5. Moreover, a combined fluorescence in situ hybridization-immunohistochemical dual labeling of the P10 bulb revealed that neither VGLUT1 nor VGLUT2 mRNA is expressed in GABAergic or dopaminergic periglomerular cells, implying their expression in other periglomerular cell subclasses, external tufted cells and/or short-axon cells. Thus, the present study suggests that early in the postnatal development distinct glutamatergic bulbar neurons of rats express spatiotemporally either or both of the two VGLUT subtypes as a specific vesicular transport system, specifically contributing to glutamate-mediated neurobiological events.

摘要

嗅觉信息最初是通过嗅球中谷氨酸能投射神经元和GABA能中间神经元之间复杂的突触相互作用进行处理的。尽管有报道称延髓神经元和神经网络甚至在出生后仍会发育,但关于谷氨酸能神经元的发育仍有许多未知之处。为了解决这个问题,我们使用原位杂交、免疫组织化学及其组合方法,研究了大鼠主嗅球中囊泡谷氨酸转运体(VGLUT1和VGLUT2)的出生后个体发育。原位杂交数据显示,VGLUT1 mRNA在出生后第1天(P1)的分化中的僧帽细胞和僧帽细胞层(MCL)的较小细胞中强烈表达,从P5开始,在外部丛状层(EPL)的中小型细胞(可能是簇状细胞群体)中也有较低水平的表达。VGLUT2 mRNA在P1时在许多MCL细胞群体中表达,在P5至P7期间,在EPL的中小型细胞中的表达水平与MCL细胞几乎相同,从P10开始,MCL中的表达明显低于EPL。与VGLUT1 mRNA不同,在小球间区域的小细胞中也发现了这种表达。与这些数据部分一致,免疫组织化学分析表明,僧帽细胞和EPL细胞的亚群被VGLUT1或VGLUT2染色,前一种细胞在P5之前同时表达两种亚型。此外,对P10嗅球进行的荧光原位杂交-免疫组织化学双重标记显示,GABA能或多巴胺能小球周细胞中均未表达VGLUT1和VGLUT2 mRNA,这意味着它们在其他小球周细胞亚类、外部簇状细胞和/或短轴突细胞中表达。因此,本研究表明,在出生后早期发育阶段,大鼠不同的谷氨酸能延髓神经元作为一种特定的囊泡转运系统,在时空上表达两种VGLUT亚型中的一种或两种,特别有助于谷氨酸介导的神经生物学事件。

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