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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Feruloylated and Nonferuloylated Arabino-oligosaccharides from Sugar Beet Pectin Selectively Stimulate the Growth of Bifidobacterium spp. in Human Fecal in Vitro Fermentations
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Feruloylated and Nonferuloylated Arabino-oligosaccharides from Sugar Beet Pectin Selectively Stimulate the Growth of Bifidobacterium spp. in Human Fecal in Vitro Fermentations

机译:甜菜果胶中的阿魏酸和非阿魏酸化的阿拉伯寡糖选择性刺激双歧杆菌的生长。人粪便体外发酵

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摘要

The side chains of the rhamnogalacturonan 1 fraction in sugar beet pectin are particularly rich in arabinan moieties, which may be substituted with feruloyl groups. In this work the arabinan-rich fraction resulting from sugar beet pulp based pectin production was separated by Amberlite XAD hydrophobic interaction and membrane separation into four fractions based on feruloyl substitution and arabino-oligosaccharide chain length: short-chain (DP 2—10) and long-chain (DP 7—14) feruloylated and nonferuloylated arabino-oligosaccharides, respectively. HPAEC, SEC, and MALDI-TOF/TOF analyses of the fractions confirmed the presence of singly and doubly substituted feruloylated arabino-oligosaccharides in the feruloyl-substituted fractions. In vitro microbial fermentation by human fecal samples (n = 6 healthy human volunteers) showed a selective stimulation of bifidobacteria by both the feruloylated and the nonferuloylated long-chain arabino-oligosaccharides to the same extent as the prebiotic fructo-oligosaccharides control. None of the fractions stimulated the growth of the potential pathogen Clostridium difficile in monocultures. This work provides a first report on the separation of potentially bioactive feruloylated arabino-oligosaccharides from sugar beet pulp and an initial indication of the potentially larger bifidogenic effect of relatively long-chain arabino-oligosaccharides as opposed to short-chain arabino-oligosaccharides.
机译:甜菜果胶中鼠李糖半乳糖醛酸聚糖1馏分的侧链特别富含阿拉伯聚糖部分,其可以被阿魏酰基取代。在这项工作中,通过Amberlite XAD疏水相互作用和膜分离将基于甜菜粕的果胶生产产生的富含阿拉伯聚糖的馏分基于阿魏酸酯取代和阿拉伯寡糖链长分为四个馏分:短链(DP 2-10)和长链(DP 7-14)阿魏酸酯化和非阿魏酸酯化的阿拉伯寡糖。馏分的HPAEC,SEC和MALDI-TOF / TOF分析确认了在阿魏酰基取代的馏分中存在单取代和双取代的阿魏酰化阿拉伯糖寡糖。人类粪便样本(n = 6名健康人类志愿者)的体外微生物发酵显示,阿魏酸化和非阿魏酸化的长链阿拉伯寡糖均能选择性地刺激双歧杆菌,其程度与益生元低聚果糖的控制程度相同。在单培养中,所有组分均未刺激潜在的病原体艰难梭菌的生长。这项工作提供了关于从甜菜果肉中分离具有潜在生物活性的阿魏酸阿拉伯糖寡糖的第一份报告,并初步表明相对长链的阿拉伯糖寡糖相对于短链阿拉伯糖寡糖具有更大的双歧化作用。

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