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果胶和果胶寡糖促进人类结肠中抗炎共生菌生长的益生元潜力。

Prebiotic potential of pectin and pectic oligosaccharides to promote anti-inflammatory commensal bacteria in the human colon.

作者信息

Chung Wing Sun Faith, Meijerink Marjolein, Zeuner Birgitte, Holck Jesper, Louis Petra, Meyer Anne S, Wells Jerry M, Flint Harry J, Duncan Sylvia H

机构信息

Gut Health Group, Rowett Institute, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, UK.

Host-Microbe Interactomics Group, Animal Science Department, University of Wageningen, 6700AH Wageningen, the Netherlands.

出版信息

FEMS Microbiol Ecol. 2017 Nov 1;93(11). doi: 10.1093/femsec/fix127.

Abstract

Dietary plant cell wall carbohydrates are important in modulating the composition and metabolism of the complex gut microbiota, which can impact on health. Pectin is a major component of plant cell walls. Based on studies in model systems and available bacterial isolates and genomes, the capacity to utilise pectins for growth is widespread among colonic Bacteroidetes but relatively uncommon among Firmicutes. One Firmicutes species promoted by pectin is Eubacterium eligens. Eubacterium eligens DSM3376 utilises apple pectin and encodes a broad repertoire of pectinolytic enzymes, including a highly abundant pectate lyase of around 200 kDa that is expressed constitutively. We confirmed that certain Faecalibacterium prausnitzii strains possess some ability to utilise apple pectin and report here that F. prausnitzii strains in common with E. eligens can utilise the galacturonide oligosaccharides DP4 and DP5 derived from sugar beet pectin. Faecalibacterium prausnitzii strains have been shown previously to exert anti-inflammatory effects on host cells, but we show here for the first time that E. eligens strongly promotes the production of the anti-inflammatory cytokine IL-10 in in vitro cell-based assays. These findings suggest the potential to explore further the prebiotic potential of pectin and its derivatives to re-balance the microbiota towards an anti-inflammatory profile.

摘要

膳食中的植物细胞壁碳水化合物在调节复杂的肠道微生物群的组成和代谢方面起着重要作用,而这会对健康产生影响。果胶是植物细胞壁的主要成分。基于模型系统以及现有细菌分离株和基因组的研究,利用果胶进行生长的能力在结肠拟杆菌中广泛存在,但在厚壁菌门中相对不常见。一种受果胶促进生长的厚壁菌门细菌是 eligens 真杆菌。 eligens 真杆菌 DSM3376 利用苹果果胶,并编码多种果胶分解酶,包括一种约 200 kDa 的高度丰富的果胶酸裂解酶,该酶组成性表达。我们证实某些普拉梭菌菌株具有一定利用苹果果胶的能力,并在此报告,与 eligens 真杆菌一样,普拉梭菌菌株能够利用源自甜菜果胶的半乳糖醛酸寡糖 DP4 和 DP5。先前的研究表明普拉梭菌菌株对宿主细胞具有抗炎作用,但我们在此首次表明,在基于细胞的体外试验中, eligens 真杆菌能强烈促进抗炎细胞因子 IL - 10 的产生。这些发现表明,有潜力进一步探索果胶及其衍生物的益生元潜力,以使微生物群重新平衡为具有抗炎特征的状态。

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