首页> 外文期刊>Journal of Agricultural and Food Chemistry >In Vitro Fermentation Profiles, Gas Production Rates, and Microbiota Modulation as Affected by Certain Fructans, Galactooligosaccharides, and Polydextrose
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In Vitro Fermentation Profiles, Gas Production Rates, and Microbiota Modulation as Affected by Certain Fructans, Galactooligosaccharides, and Polydextrose

机译:某些果聚糖,低聚半乳糖和聚右旋糖影响的体外发酵特性,产气率和微生物群调节

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It is of interest to benefit from the positive intestinal health outcomes of prebiotic consumption but with minimal gas production. This study examined gas production potential, fermentation profile, and microbial modulation properties of several types of oligosaccharides. Substrates studied included short-chain, medium-chain, and long-chain fructooligosaccharides, oligofructose-enriched inulin, galactooligosaccharide, and polydextrose. Each substrate was fermented in vitro using human fecal inoculum, and fermentation characteristics were quantified at 0, 4, 8, and 12 h. Gas and short-chain fatty acid (SCFA) production data showed that short-chain oligosaccharides were more rapidly fermented and produced more SCFA and gas than substrates with greater degrees of polymerization. Lactobacilli increased similarly among substrates. Short-chain oligosaccharides fermentation resulted in the greatest increase in bifidobacteria concentrations. Mixing short- and long-chain oligosaccharides attenuated short-chain oligosaccharide fermentation rate and extent. This study provides new information on the fermentation characteristics of some oligosaccharides used in human nutrition.
机译:受益于益生元消耗的肠道健康有益结果,但产生的气体最少。这项研究检查了几种类型的寡糖的产气潜力,发酵曲线和微生物调节特性。研究的底物包括短链,中链和长链低聚果糖,富含低聚果糖的菊粉,低聚半乳糖和聚葡萄糖。使用人粪便接种物在体外发酵每种底物,并在0、4、8和12 h定量发酵特性。气体和短链脂肪酸(SCFA)的生产数据表明,与聚合度更高的底物相比,短链寡糖发酵更快,产生的SCFA和气体更多。乳酸杆菌在底物中的含量相似。短链寡糖发酵导致双歧杆菌浓度最大增加。混合短链和长链寡糖会减弱短链寡糖的发酵速度和程度。这项研究为人类营养中使用的某些寡糖的发酵特性提供了新的信息。

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