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益生元低聚糖对简化混合培养模型及新生小鼠中双歧杆菌生长和宿主基因表达的联合作用

Combinational effects of prebiotic oligosaccharides on bifidobacterial growth and host gene expression in a simplified mixed culture model and neonatal mice.

作者信息

Ehara Tatsuya, Izumi Hirohisa, Tsuda Muneya, Nakazato Yuki, Iwamoto Hiroshi, Namba Kazuyoshi, Takeda Yasuhiro

机构信息

Nutritional Science Institute,Morinaga Milk Industry Co. Ltd,5-1-83,Higashihara,Zama,Kanagawa 252-8583,Japan.

出版信息

Br J Nutr. 2016 Jul;116(2):270-8. doi: 10.1017/S0007114516001987. Epub 2016 May 20.

Abstract

It is important to provide formula-fed infants with a bifidobacteria-enriched gut microbiota similar to those of breastfed infants to ensure intestinal health. Prebiotics, such as certain oligosaccharides, are a useful solution to this problem, but the combinational benefits of these oligosaccharides have not been evaluated. This study investigated the benefits of oligosaccharide combinations and screened for an optimal combination of oligosaccharides to promote healthy gut microbiota of formula-fed infants. In vitro and in vivo experiments were performed to assess the bifidogenic effects of lactulose (LAC) alone and LAC combined with raffinose (RAF) and/or galacto-oligosaccharide (GOS), using a mixed culture model and neonatal mice orally administered with these oligosaccharides and Bifidobacterium breve. In the in vitro culture model, the combination of the three oligosaccharides (LAC-RAF-GOS) significantly increased cell numbers of B. breve and Bifidobacterium longum (P<0·05) compared with either LAC alone or the combination of two oligosaccharides, and resulted in the production of SCFA under anaerobic conditions. In the in vivo experiment, the LAC-RAF-GOS combination significantly increased cell numbers of B. breve and Bacteroidetes in the large intestinal content (P<0·05) and increased acetate concentrations in the caecal content and serum of neonatal mice. Genes related to metabolism and immune responses were differentially expressed in the liver and large intestine of mice administered with LAC-RAF-GOS. These results indicate a synergistic effect of the LAC-RAF-GOS combination on the growth of bifidobacteria and reveal possible benefits of this combination to the gut microbiota and health of infants.

摘要

为确保肠道健康,给配方奶喂养的婴儿提供与母乳喂养婴儿相似的富含双歧杆菌的肠道微生物群很重要。益生元,如某些低聚糖,是解决这一问题的有效方法,但这些低聚糖的组合益处尚未得到评估。本研究调查了低聚糖组合的益处,并筛选出促进配方奶喂养婴儿肠道微生物群健康的最佳低聚糖组合。使用混合培养模型以及给新生小鼠口服这些低聚糖和短双歧杆菌,进行了体外和体内实验,以评估单独的乳果糖(LAC)以及LAC与棉子糖(RAF)和/或低聚半乳糖(GOS)组合的双歧杆菌生成作用。在体外培养模型中,与单独的LAC或两种低聚糖的组合相比,三种低聚糖(LAC-RAF-GOS)的组合显著增加了短双歧杆菌和长双歧杆菌的细胞数量(P<0·05),并在厌氧条件下产生了短链脂肪酸。在体内实验中,LAC-RAF-GOS组合显著增加了新生小鼠大肠内容物中短双歧杆菌和拟杆菌的细胞数量(P<0·05),并增加了盲肠内容物和血清中乙酸盐的浓度。在给予LAC-RAF-GOS的小鼠的肝脏和大肠中,与代谢和免疫反应相关的基因存在差异表达。这些结果表明LAC-RAF-GOS组合对双歧杆菌生长具有协同作用,并揭示了这种组合对婴儿肠道微生物群和健康可能具有的益处。

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