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首页> 外文期刊>Journal of Biotechnology >Valorization of Brewer's spent grain to prebiotic oligosaccharide: Production, xylanase catalyzed hydrolysis, in-vitro evaluation with probiotic strains and in a batch human fecal fermentation model
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Valorization of Brewer's spent grain to prebiotic oligosaccharide: Production, xylanase catalyzed hydrolysis, in-vitro evaluation with probiotic strains and in a batch human fecal fermentation model

机译:酿酒师花谷物的储存到益生元寡糖:生产,木聚糖酶催化水解,益生菌菌株的体外评价和批量人粪便发酵模型

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摘要

Brewer's spent grain (BSG) accounts for around 85% of the solid by-products from beer production. BSG was first extracted to obtain water-soluble arabinoxylan (AX). Using subsequent alkali extraction (0.5 M KOH) it was possible to dissolve additional AX. In total, about 57% of the AX in BSG was extracted with the purity of 45-55%. After comparison of nine xylanases, Pentopan mono BG, a GH11 enzyme, was selected for hydrolysis of the extracts to oligosaccharides with minimal formation of monosaccharides. Growth of Bifidobacterium adolescentis (ATCC 15703) was promoted by the enzymatic hydrolysis to arabinoxylooligosaccharides, while Lactobacillus brevis (DSMZ 1264) utilized only unsubstituted xylooligosaccharides. Furthermore, utilization of the hydrolysates by human gut microbiota was also assessed in a batch human fecal fermentation model. Results revealed that the rates of fermentation of the BSG hydrolysates by human gut microbiota were similar to that of commercial prebiotic fructooligosaccharides, while inulin was fermented at a slower rate. In summary, a sustainable process to valorize BSG to functional food ingredients has been proposed.
机译:Brewer的谷物(BSG)占啤酒生产的85%的固体副产品。首先提取BSG以获得水溶性阿拉伯氧基(AX)。使用随后的碱萃取(0.5M KOH),可以溶解额外的轴。总共纯度为45-55%的BSG中的约57%的斧头。在比较九个木聚糖酶之后,选择戊二烷单甘油,GH11酶,用于用最小形成单糖的寡糖水解提取物。通过酶水解对阿拉伯羰基珠糖的酶促水解促进了双歧杆菌(ATCC 15703)的生长,而乳酸杆菌(DSMZ 1264)仅使用未取代的木龙核苷酸。此外,在分批人粪便发酵模型中也评估了人体肠道微生物的水解产物的利用。结果表明,人体肠道微生物的BSG水解酸盐的发酵率类似于商业益生菌寡糖的发酵,而菊粉以较慢的速率发酵。总之,已经提出了将BSG算入功能性食品成分的可持续过程。

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