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非营养性甜味剂对人体葡萄糖耐量的个性化微生物群驱动效应。

Personalized microbiome-driven effects of non-nutritive sweeteners on human glucose tolerance.

作者信息

Suez Jotham, Cohen Yotam, Valdés-Mas Rafael, Mor Uria, Dori-Bachash Mally, Federici Sara, Zmora Niv, Leshem Avner, Heinemann Melina, Linevsky Raquel, Zur Maya, Ben-Zeev Brik Rotem, Bukimer Aurelie, Eliyahu-Miller Shimrit, Metz Alona, Fischbein Ruthy, Sharov Olga, Malitsky Sergey, Itkin Maxim, Stettner Noa, Harmelin Alon, Shapiro Hagit, Stein-Thoeringer Christoph K, Segal Eran, Elinav Eran

机构信息

Department of Systems Immunology, Weizmann Institute of Science, Rehovot 7610001, Israel.

Department of Systems Immunology, Weizmann Institute of Science, Rehovot 7610001, Israel.

出版信息

Cell. 2022 Sep 1;185(18):3307-3328.e19. doi: 10.1016/j.cell.2022.07.016. Epub 2022 Aug 19.

Abstract

Non-nutritive sweeteners (NNS) are commonly integrated into human diet and presumed to be inert; however, animal studies suggest that they may impact the microbiome and downstream glycemic responses. We causally assessed NNS impacts in humans and their microbiomes in a randomized-controlled trial encompassing 120 healthy adults, administered saccharin, sucralose, aspartame, and stevia sachets for 2 weeks in doses lower than the acceptable daily intake, compared with controls receiving sachet-contained vehicle glucose or no supplement. As groups, each administered NNS distinctly altered stool and oral microbiome and plasma metabolome, whereas saccharin and sucralose significantly impaired glycemic responses. Importantly, gnotobiotic mice conventionalized with microbiomes from multiple top and bottom responders of each of the four NNS-supplemented groups featured glycemic responses largely reflecting those noted in respective human donors, which were preempted by distinct microbial signals, as exemplified by sucralose. Collectively, human NNS consumption may induce person-specific, microbiome-dependent glycemic alterations, necessitating future assessment of clinical implications.

摘要

非营养性甜味剂(NNS)通常被纳入人类饮食中,并被认为是惰性的;然而,动物研究表明,它们可能会影响微生物群和下游血糖反应。我们在一项涵盖120名健康成年人的随机对照试验中,对NNS对人类及其微生物群的影响进行了因果评估,以低于每日可接受摄入量的剂量给予糖精、三氯蔗糖、阿斯巴甜和甜叶菊包,与接受含载体葡萄糖包或不补充的对照组进行比较。作为不同的组,每种给予的NNS都明显改变了粪便和口腔微生物群以及血浆代谢组,而糖精和三氯蔗糖显著损害了血糖反应。重要的是,用来自四个补充NNS组中多个高反应者和低反应者的微生物群进行定殖的无菌小鼠的血糖反应在很大程度上反映了各自人类供体中观察到的情况,这些反应被不同的微生物信号所预先影响,以三氯蔗糖为例。总体而言,人类食用NNS可能会导致个体特异性、微生物群依赖性的血糖改变,这需要未来对临床意义进行评估。

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