首页> 外文OA文献 >Gut microbiota analysis reveals a marked shift to bifidobacteria by a starter infant formula containing a synbiotic of bovine milk-derived oligosaccharides and Bifidobacterium animalis subsp. lactis CNCM I-3446.
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Gut microbiota analysis reveals a marked shift to bifidobacteria by a starter infant formula containing a synbiotic of bovine milk-derived oligosaccharides and Bifidobacterium animalis subsp. lactis CNCM I-3446.

机译:肠道菌群分析揭示了一种初生婴儿配方奶粉对双歧杆菌的明显转变,该配方奶粉包含牛乳衍生的低聚糖和动物双歧杆菌亚种的合生元。乳酸CNCM I-3446。

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摘要

Non-digestible milk oligosaccharides were proposed as receptor decoys for pathogens and as nutrients for beneficial gut commensals like bifidobacteria. Bovine milk contains oligosaccharides, some of which are structurally identical or similar to those found in human milk. In a controlled, randomized double-blinded clinical trial we tested the effect of feeding a formula supplemented with a mixture of bovine milk-derived oligosaccharides (BMOS) generated from whey permeate, containing galacto-oligosaccharides and 3'- and 6'-sialyllactose, and the probiotic Bifidobacterium animalis subsp. lactis (B. lactis) strain CNCM I-3446. Breastfed infants served as reference group. Compared with a non-supplemented control formula, the test formula showed a similar tolerability and supported a similar growth in healthy newborns followed for 12 weeks. The control, but not the test group, differed from the breast-fed reference group by a higher faecal pH and a significantly higher diversity of the faecal microbiota. In the test group the probiotic B. lactis increased by 100-fold in the stool and was detected in all supplemented infants. BMOS stimulated a marked shift to a bifidobacterium-dominated faecal microbiota via increases in endogenous bifidobacteria (B. longum, B. breve, B. bifidum, B. pseudocatenulatum).
机译:提议将不易消化的牛奶低聚糖用作病原体的受体诱饵,并作为有益的肠道营养(如双歧杆菌)的营养物质。牛乳含有低聚糖,其中一些与人乳中的寡糖在结构上相同或相似。在一项受控的随机双盲临床试验中,我们测试了喂养配方奶粉补充了由乳清渗透液产生的牛乳衍生低聚糖(BMOS)混合物的效果,该混合物含有半乳糖低聚糖以及3'-和6'-唾液乳糖,和益生菌动物双歧杆菌亚种。乳酸杆菌(CN.lactis)菌株CNCM I-3446。母乳喂养婴儿作为参考组。与未补充的对照配方食品相比,该测试配方食品显示出相似的耐受性,并在接下来的12周内支持了健康新生儿的相似生长。对照组(而非测试组)与母乳喂养的对照组相比,粪便pH值较高,粪便微生物群的多样性明显更高。在测试组中,益生菌乳杆菌在粪便中增加了100倍,并且在所有补充婴儿中均检出。 BMOS通过内源性双歧杆菌(长双歧杆菌,短双歧杆菌,双歧双歧杆菌,假单胞菌双歧杆菌)的增加,刺激了明显的向双歧杆菌为主的粪便微生物群的转变。

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