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Oligosaccharide structure determines prebiotic role of β-galactomannan against Salmonella enterica ser. Typhimurium in vitro

机译:寡糖的结构决定了β-半乳甘露聚糖对肠炎沙门氏菌的益生元作用。鼠伤寒

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摘要

Prebiotics and probiotics are considered natural alternatives to dietary antibiotics in animal production. Plant extracts and yeast cell walls are mannose—rich products that can be used as substrate for adhesion of Gram-negative bacteria. We assessed whether the structure of these saccharides is relevant to develop their role as prebiotics and therefore, their suitability to be used as alternatives to antibiotics to prevent intestinal infections in pigs. The prebiotic functionality of β-galactomannan (βGM), mannanoligosaccharide from yeast Saccharomyces cerevisiae (Mannan SC) and monosaccharide D-Mannose were studied in porcine intestinal epithelial cells (IPI-2I) challenged with Salmonella enterica ser. Typhimurium. Results showed that in vitro challenge with Salmonella induces the secretion of proinflammatory cytokine IL6 and chemokine CXCL8 compared with control without infection. Both βGM and Mannan SC, attenuate Salmonella-induced secretion of IL6 and CXCL8. Interestingly, cells treated with D-mannose showed similar levels of proinflammatory IL6 and CXCL8 compared with the control of infection. These data suggest that prebiotic role of βGM is related to its oligosaccharide structure.
机译:在动物生产中,益生元和益生菌被认为是膳食抗生素的天然替代品。植物提取物和酵母细胞壁富含甘露糖,可以用作革兰氏阴性细菌粘附的底物。我们评估了这些糖的结构是否与发挥其作为益生元的作用有关,因此,它们是否适合用作抗生素的替代品以预防猪的肠道感染。在受肠炎沙门氏菌(Salmonella enterica ser)攻击的猪肠上皮细胞(IPI-2I)中研究了β-半乳甘露聚糖(βGM),来自啤酒酵母(Saccharomyces cerevisiae)的甘露寡糖(Mannan SC)和单糖D-甘露糖的益生元功能。鼠伤寒结果显示,与未感染的对照组相比,沙门氏菌的体外激发可诱导促炎细胞因子IL6和趋化因子CXCL8的分泌。 βGM和甘露聚糖SC均可减弱沙门氏菌诱导的IL6和CXCL8的分泌。有趣的是,与感染对照相比,用D-甘露糖处理的细胞显示出相似水平的促炎性IL6和CXCL8。这些数据表明βGM的益生元作用与其寡糖结构有关。

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