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用氨基酸对肠道微生物群进行选择性滋养:一种新型益生元方法?

Selective nourishing of gut microbiota with amino acids: A novel prebiotic approach?

作者信息

Beaumont Martin, Roura Eugeni, Lambert William, Turni Conny, Michiels Joris, Chalvon-Demersay Tristan

机构信息

GenPhySE, Université de Toulouse, INRAE, ENVT, Castanet-Tolosan, France.

Centre of Nutrition and Food Sciences, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Brisbane, QLD, Australia.

出版信息

Front Nutr. 2022 Dec 19;9:1066898. doi: 10.3389/fnut.2022.1066898. eCollection 2022.

Abstract

Prebiotics are dietary substrates which promote host health when utilized by desirable intestinal bacteria. The most commonly used prebiotics are non-digestible oligosaccharides but the prebiotic properties of other types of nutrients such as polyphenols are emerging. Here, we review recent evidence showing that amino acids (AA) could function as a novel class of prebiotics based on: (i) the modulation of gut microbiota composition, (ii) the use by selective intestinal bacteria and the transformation into bioactive metabolites and (iii) the positive impact on host health. The capacity of intestinal bacteria to metabolize individual AA is species or strain specific and this property is an opportunity to favor the growth of beneficial bacteria while constraining the development of pathogens. In addition, the chemical diversity of AA leads to the production of multiple bacterial metabolites with broad biological activities that could mediate their prebiotic properties. In this context, we introduce the concept of "Aminobiotics," which refers to the functional role of some AA as prebiotics. We also present studies that revealed synergistic effects of the co-administration of AA with probiotic bacteria, indicating that AA can be used to design novel symbiotics. Finally, we discuss the difficulty to bring free AA to the distal gut microbiota and we propose potential solutions such as the use of delivery systems including encapsulation to bypass absorption in the small intestine. Future studies will need to further identify individual AA, dose and mode of administration to optimize prebiotic effects for the benefit of human and animal health.

摘要

益生元是一类膳食底物,当被肠道有益菌利用时可促进宿主健康。最常用的益生元是不可消化的寡糖,但其他类型的营养物质如多酚的益生元特性也正在显现。在此,我们综述了近期的证据,表明氨基酸(AA)可作为一类新型益生元,基于以下几点:(i)对肠道微生物群组成的调节;(ii)被选择性肠道细菌利用并转化为生物活性代谢产物;(iii)对宿主健康的积极影响。肠道细菌代谢单个氨基酸的能力具有物种或菌株特异性,这一特性为促进有益菌生长同时抑制病原体发展提供了契机。此外,氨基酸的化学多样性导致产生多种具有广泛生物活性的细菌代谢产物,这些代谢产物可能介导其益生元特性。在此背景下,我们引入“氨基益生元”的概念,它指的是某些氨基酸作为益生元的功能作用。我们还介绍了揭示氨基酸与益生菌共同施用具有协同效应的研究,表明氨基酸可用于设计新型合生元。最后,我们讨论了将游离氨基酸输送到远端肠道微生物群的困难,并提出了潜在的解决方案,如使用包括包封在内的递送系统以绕过小肠吸收。未来的研究需要进一步确定单个氨基酸、剂量和给药方式,以优化益生元效果,造福人类和动物健康。

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