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首页> 外文期刊>Applied and Environmental Microbiology >Prebiotic Oligosaccharides: Comparative Evaluation Using In Vitro Cultures of Infants' Fecal Microbiomes
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Prebiotic Oligosaccharides: Comparative Evaluation Using In Vitro Cultures of Infants' Fecal Microbiomes

机译:益生元低聚糖:使用婴儿粪便微生物群的体外培养进行比较评估

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The objective of this study was to systematically assess the bifidogenic effect of three commonly used prebiotic products using in vitro cultures of infant fecal samples. Fresh stool samples collected from six term infants, each exclusively fed human milk (n = 3) or infant formula (n = 3), at 28 days of age were used as inocula. The following prebiotic products were added at concentrations applicable to infant formula: Vivinal GOS 15 (containing 28.5% galacto-oligosaccharide [GOS]) at 7.2 g/liter, Beneo HP (99.5% long-chain inulin [IN]) at 0.8 g/liter, Beneo Synergy 1 (enriched oligofructose and inulin [OF-IN]) at 4 g/liter, and a combination of Vivinal GOS 15 (7.2 g/liter) and Beneo HP (0.8 g/liter) (GOS-IN). The growth of total bacteria, Bifidobacterium, Bacteroides, Bifidobacterium longum, and Escherichia coli was quantified using specific quantitative PCR (qPCR). Bifidobacterium was also enumerated on selective Beerens agar plates, with representative colonies identified by sequencing of their 16S rRNA genes. Volatile fatty acids (VFA) and pH in the cultures were also determined. Irrespective of the feeding methods, the GOS product, either alone or in combination with Beneo HP, resulted in substantially higher growth of total bifidobacteria, and much of this growth was attributed to growth of B. longum. Beneo Synergy 1 also increased the abundance of total bifidobacteria and B. longum. Corresponding to the increases in these two bacterial groups, acetic acid concentrations were higher, while there was a trend of lower E. coli levels and pH. The lower pH and higher acetic acid concentration might be directly responsible for the lower E. coli population. At the concentrations studied, the GOS product was more bifidogenic and potent in inhibiting E. coli than the other products tested. These results suggest that supplementation of infant formula with GOS may increase intestinal bifidobacteria and benefit infant health.
机译:这项研究的目的是使用婴儿粪便样品的体外培养来系统地评估三种常用益生元产品的双歧作用。从六只足月婴儿中采集新鲜粪便样本,分别在28日龄时分别喂食母乳( n = 3)或婴儿配方奶粉( n = 3)。接种物。以适用于婴儿配方食品的浓度添加以下益生元产品:7.2克/升的Vivinal GOS 15(含有28.5%的半乳糖寡糖[GOS]),Beneo HP(99.5%的长链菊粉[IN])为0.8克/升升,4克/升的Beneo Synergy 1(富含低聚果糖和菊粉[OF-IN]),以及Vivinal GOS 15(7.2克/升)和Beneo HP(0.8克/升)(GOS-IN)的组合。使用特异性定量PCR(qPCR)定量总细菌,双歧杆菌,拟杆菌,长双歧杆菌和大肠杆菌的生长。双歧杆菌也被计数在选择性的Beerens琼脂平板上,通过对它们的16S rRNA基因测序鉴定出代表性菌落。还确定了培养物中的挥发性脂肪酸(VFA)和pH。无论采用哪种喂养方式,GOS产品(单独或与Beneo HP组合使用)均会导致总双歧杆菌的生长显着提高,并且大部分这种增长归因于长双歧杆菌的生长。 Beneo Synergy 1还增加了总双歧杆菌和长双歧杆菌的丰度。与这两个细菌组的增加相对应,乙酸浓度更高,而大肠杆菌水平和pH值则有降低的趋势。较低的pH值和较高的乙酸浓度可能直接导致较低的大肠杆菌种群。在所研究的浓度下,GOS产品比其他测试产品更具有双歧化作用,并且在抑制大肠杆菌方面更有效。这些结果表明,向婴儿配方奶粉中添加GOS可能会增加肠道双歧杆菌并有益于婴儿健康。

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