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规模化化学合成半乳糖基乳糖及其对婴儿肠道微生物群的影响。

Gram-scale chemical synthesis of galactosyllactoses and their impact on infant gut microbiota .

机构信息

Synthetic Organic Chemistry, Institute for Molecules and Materials, Radboud University, Nijmegen, The Netherlands.

FrieslandCampina N.V., Amersfoort, The Netherlands.

出版信息

Org Biomol Chem. 2024 Mar 6;22(10):2091-2097. doi: 10.1039/d3ob02069j.

Abstract

Galactooligosaccharides (GOS) are widely used as a supplement in infant nutrition to mimic the beneficial effects found in prebiotic human milk oligosaccharides (HMOs). However, the complexity of the GOS mixture makes it challenging to ascertain which of the GOS components contribute most to their health benefits. Galactosyllactoses (GLs) are lactose-based trisaccharides containing a β-galactopyranosyl residue at the 3'-position (3'galactosyllactose, 3'-GL), 4'-position (4'-galactosyllactose, 4'-GL), or the 6'-position (6'-galactosyllactose, 6'-GL). These GLs are of particular interest as they are present in both GOS mixtures and human milk at early stages of lactation. However, research on the potential health benefits of these individual GLs has been limited. Gram quantities are needed to assess their health benefits but these GLs are not readily available at this scale. In this study, we report the gram-scale chemical synthesis of 3'-GL, 4'-GL, and 6'-GL. All three galactosyllactoses were obtained on a gram scale in good purity from cheap and commercially available lactose. Furthermore, incubation of GLs with infant faecal microbiota demonstrates that the GLs were able to increase the abundance of Bifidobacterium and stimulate short chain fatty acid production.

摘要

半乳糖寡糖(GOS)被广泛用作婴儿营养补充剂,以模拟在母乳低聚糖(HMO)中发现的有益作用。然而,GOS 混合物的复杂性使得确定 GOS 成分中哪些对其健康益处的贡献最大具有挑战性。半乳糖基乳糖(GL)是含有β-半乳糖吡喃糖苷残基的乳糖基三糖,位于 3'位(3'-半乳糖基乳糖,3'-GL)、4'位(4'-半乳糖基乳糖,4'-GL)或 6'位(6'-半乳糖基乳糖,6'-GL)。这些 GL 特别有趣,因为它们存在于 GOS 混合物和人乳的早期泌乳阶段。然而,对这些单个 GL 的潜在健康益处的研究一直受到限制。需要克级数量来评估它们的健康益处,但这些 GL 不易在此规模下获得。在这项研究中,我们报告了 3'-GL、4'-GL 和 6'-GL 的克级化学合成。所有三种半乳糖基乳糖均以良好的纯度从廉价且市售的乳糖中以克级规模获得。此外,GL 与婴儿粪便微生物群的孵育表明,GL 能够增加双歧杆菌的丰度并刺激短链脂肪酸的产生。

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