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Structural analysis and mucosal immune regulation of exopolysaccharide fraction from Bifidobacterium animalis RH

机译:动物双歧杆菌RH胞外多糖组分的结构分析和黏膜免疫调节

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An exopolysaccharide fraction (EPSa) produced by Bifidobacterium animalis RH was purified to dissect its chemical structure and to investigate its ability to modulate the mucosal immunity. Our results showed that EPSa had a backbone of (1→6)-linked glucose, (1→3)-linked galactose, (1→4, 6)-linked mannose, (1→3, 4)-linked mannose and (1→4)-linked glucose, branched with glucose and arabinose, and terminated with glucose residues. Scanning electron microscopy identified spherical particle to be the basic structural component of EPSa. The Congo red test indicated that EPSa was not in triple-helical conformation. Our in vitro results showed that EPSa was able to stimulate the proliferation of peripheral blood mononuclear cells and intestinal Peyer’s patch lymphocytes in the presence of concanavalin A.?Our in vivo results demonstrated that EPSa can enhance the mucosal immunity by maintaining the Peyer’s patch number in small intestine and the IFN-γ level in serum, and balancing the Th1/Th2 responses.
机译:纯化了动物双歧杆菌RH产生的胞外多糖级分(EPSa),以解析其化学结构并研究其调节粘膜免疫力的能力。我们的结果表明EPSa具有(1→6)连接的葡萄糖,(1→3)连接的半乳​​糖,(1→4、6)连接的甘露糖,(1→3、4)连接的甘露糖和( 1→4)-连接的葡萄糖,与葡萄糖和阿拉伯糖分支,并终止于葡萄糖残基。扫描电子显微镜确定球形颗粒是EPSa的基本结构成分。刚果红试验表明EPSa并非三螺旋构象。我们的体外结果表明,在伴刀豆球蛋白A存在的情况下,EPSa能够刺激外周血单核细胞和肠道Peyer氏斑块淋巴细胞的增殖。我们的体内结果表明,EPSa可以通过维持Peyer's斑块数目来增强粘膜免疫力。小肠和血清中的IFN-γ水平,并平衡Th1 / Th2反应。

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