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首页> 外文期刊>Green chemistry >High- yield synthesis of glucooligosaccharides ( GlOS) as potential prebiotics from glucose via non- enzymatic glycosylation
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High- yield synthesis of glucooligosaccharides ( GlOS) as potential prebiotics from glucose via non- enzymatic glycosylation

机译:高产葡萄糖糖苷(GLOS)作为来自葡萄糖的潜在益生菌通过非酶促糖基化

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摘要

This study demonstrated a high-yield process to synthesize glucooligosaccharides (GlOS) from glucose via non-enzymatic glycosylation in an acidic lithium bromide trihydrate (ALBTH, a concentrated aqueous solution of LiBr containing a small amount of acid) system. The single-pass yield of the GlOS was up to 75%, which was the highest yield ever reported. The synthesized GlOS consisted of 2-9 glucose units linked predominantly via /-1,6 glycosidic bonds (69%), followed by /-1,3, /-1,2, /-1,1, and -1,4 glycosidic bonds. Preliminary in vitro fermentation tests indicated that GlOS could be utilized by select gut probiotic strains, suggesting that GlOS had the potential as prebiotics. The enhanced glucose glycosylation in ALBTH was attributed to the unique properties of the solvent system, including water-deficient nature, extra-high capacity of dissolving glucose, and enhanced acid catalysis. The LiBr salt could be recovered after separating the GlOS by anti-solvent precipitation and directly reused. This process provided a new approach for valorizing the biomass derived glucose into high-value oligosaccharides.
机译:该研究证明了通过在酸性锂溴化族三水合物中(ALPTH,含有少量酸)系统的酸性溴化锂化合物(αshth,浓缩的Ligh)系统中的非酶促糖基化来合成葡萄糖糖苷(Glos)的高产法。 GLO的单次通过产量高达75%,这是迄今为止最高的收益率。合成的GLO组成,由2-9个葡萄糖单元组成,主要通过/ -1,6糖苷键(69%),其次是/ -1,3,/ -1,2,/ -1,1,和-1,4糖苷键。初步的体外发酵试验表明,选择肠道益生菌菌株可以使用GLOS,表明GLOS具有潜在的益生元。 Albth中增强的葡萄糖糖基化归因于溶剂系统的独特性质,包括缺水性质,溶解葡萄糖的超高容量,以及增强的酸催化。通过抗溶剂沉淀和直接重复使用后,可以在将GLOS分离并直接重复使用后回收LIBR盐。该方法提供了一种将生物质衍生葡萄糖纳入高价值低聚糖的新方法。

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