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α1-2岩藻糖聚糖在小鼠嗅觉通路中的定位

Localization of α1-2 Fucose Glycan in the Mouse Olfactory Pathway.

作者信息

Kondoh Daisuke, Kamikawa Akihiro, Sasaki Motoki, Kitamura Nobuo

机构信息

Laboratory of Veterinary Anatomy, Department of Basic Veterinary Medicine, Obihiro University of Agriculture and Veterinary Medicine, Hokkaido, Japan.

出版信息

Cells Tissues Organs. 2017;203(1):20-28. doi: 10.1159/000447009. Epub 2016 Jul 16.

Abstract

Glycoconjugates in the olfactory system play critical roles in neuronal formation, and α1-2 fucose (α1-2Fuc) glycan mediates neurite outgrowth and synaptic plasticity. Histochemical findings of α1-2Fuc glycan in the mouse olfactory system detected using Ulex europaeus agglutinin-I (UEA-I) vary. This study histochemically assessed the main olfactory and vomeronasal pathways in male and female ICR and C57BL/6J mice aged 3-4 months using UEA-I. Ulex europaeus agglutinin-I reacted with most receptor cells arranged mainly at the basal region of the olfactory epithelium. The olfactory nerve layer and glomerular layer of the main olfactory bulb were speckled with positive UEA-I staining, and positive fibers were scattered from the glomerular to the internal plexiform layer. The lateral olfactory tract and rostral migratory stream were also positive for UEA-I. We identified superficial short-axon cells, interneurons of the external plexiform layer, external, middle and internal tufted cells, mitral cells and granule cells as the origins of the UEA-I-positive fibers in the main olfactory bulb. The anterior olfactory nucleus, anterior piriform cortex and olfactory tubercle were negative for UEA-I. Most receptor cells in the vomeronasal epithelium and most glomeruli of the accessory olfactory bulb were positive for UEA-I. Our findings indicated that α1-2Fuc glycan is located within the primary and secondary, but not the ternary, pathways of the main olfactory system, in local circuits of the main olfactory bulb and within the primary, but not secondary, pathway of the vomeronasal system.

摘要

糖缀合物在嗅觉系统中对神经元形成起着关键作用,α1-2岩藻糖(α1-2Fuc)聚糖介导神经突生长和突触可塑性。使用荆豆凝集素-I(UEA-I)检测到的小鼠嗅觉系统中α1-2Fuc聚糖的组织化学结果存在差异。本研究使用UEA-I对3-4月龄雄性和雌性ICR及C57BL/6J小鼠的主要嗅觉和犁鼻器通路进行了组织化学评估。荆豆凝集素-I与主要排列在嗅上皮基底区域的大多数受体细胞发生反应。主要嗅球的嗅神经层和肾小球层有散在的UEA-I阳性染色,阳性纤维从肾小球层散布到内丛状层。外侧嗅束和吻侧迁移流也呈UEA-I阳性。我们确定了浅短轴突细胞、外丛状层中间神经元、外侧、中间和内侧簇状细胞、二尖瓣细胞和颗粒细胞是主要嗅球中UEA-I阳性纤维的起源。前嗅核、前梨状皮质和嗅结节呈UEA-I阴性。犁鼻器上皮中的大多数受体细胞和副嗅球的大多数肾小球呈UEA-I阳性。我们的研究结果表明,α1-2Fuc聚糖位于主要嗅觉系统的一级和二级通路内,但不在三级通路内,在主要嗅球的局部回路中以及犁鼻器系统的一级通路内,但不在二级通路内。

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