期刊论文详细信息
Journal of Veterinary Medical Science
Lectin Histochemical Detection of Special Sugars on the Mucosal Surfaces of the Rat Alimentary Tract
Yuh YOKOO1  Hidenori MIYATA1  Kenkichi YAMAMOTO2  Wang-Mei QI2  Junichi KAWANO1  Nobuhiko HOSHI1  Kankanam Gamage Sanath UDAYANGA1  Hiroshi KITAGAWA1  Toshifumi YOKOYAMA1 
[1] Department of Bioresource Science, Graduate School of Agricultural Science, Kobe University;Department of Bioresource and Agrobiosciences Graduate School of Science and Technology, Kobe University
关键词: alimentary tract;    indigenous bacteria;    lectin histochemistry;    rat;    sugar expression;   
DOI  :  10.1292/jvms.10-0011
学科分类:兽医学
来源: Japanese Society of Veterinary Science
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【 摘 要 】

References(44)Cited-By(8)Surfaces of the most luminal positions of mucosae are fundamental settlement sites of indigenous bacteria throughout the rat alimentary tract. In these positions, also epithelial cell-shedding sites, the special sugar expression in the glycocalyx is very important as it provides possible ligands of bacterial lectins for attachment to epithelial cells. Therefore, the sugar expression in glycocalyx of epithelial cells was lectin-histochemically surveyed using 21 lectins throughout the rat alimentary tract. From the tongue to the nonglandular part of the stomach, α-D-Man, α-D-Glc and α-D-GalNAc were detected on the surface of the keratinized stratified squamous epithelium. In the glandular part of the stomach, α-D-Man, β-D-Gal-4GlcNAc, D-Gal, D-GalNAc, D-GlcNAc, α-L-Fuc- α-D-Gal-β(1-4)GlcNAc and bisected triantennary N-glycans were detected on the surface of gastric superficial epithelial cells. From the duodenum to the ileum, (GlcNAc)2-4 was expressed exclusively on the epithelial cells in the apical portions of the intestinal villi. From the cecum to the rectum, α-D-Man, β-D-Gal-4GlcNAc, D-Gal, D-GalNAc, α-D-Gal(1-3)D-GalNAc, (GalNAc)n and NeuNAc were expressed on the intestinal superficial epithelial cells. These results suggest that special sugars are expressed on the most luminal portions of mucosae as exclusive epithelial cell-shedding sites, and that sugar expression differs among the various segments of the alimentary tract. These site differences might reflect differences in resident bacterial species in the rat alimentary tract.

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