Cardiometabolic benefits of a non-industrialized-type diet are linked to gut microbiome modulation

生物 肠道微生物群 微生物群 遗传学
作者
Fuyong Li,Anissa M. Armet,Katri Korpela,Junhong Liu,Rodrigo Margain Quevedo,Francesco Asnicar,Benjamin Seethaler,Tianna Rusnak,Janis Cole,Zhihong Zhang,Shuang Zhao,Xiaohang Wang,Adele Gagnon,Edward C. Deehan,João Felipe Mota,Jeffrey A. Bakal,Russell Greiner,Dan Knights,Nicola Segata,Stephan C. Bischoff
出处
期刊:Cell [Cell Press]
卷期号:188 (5): 1226-1247.e18 被引量:51
标识
DOI:10.1016/j.cell.2024.12.034
摘要

Industrialization adversely affects the gut microbiome and predisposes individuals to chronic non-communicable diseases. We tested a microbiome restoration strategy comprising a diet that recapitulated key characteristics of non-industrialized dietary patterns (restore diet) and a bacterium rarely found in industrialized microbiomes (Limosilactobacillus reuteri) in a randomized controlled feeding trial in healthy Canadian adults. The restore diet, despite reducing gut microbiome diversity, enhanced the persistence of L. reuteri strain from rural Papua New Guinea (PB-W1) and redressed several microbiome features altered by industrialization. The diet also beneficially altered microbiota-derived plasma metabolites implicated in the etiology of chronic non-communicable diseases. Considerable cardiometabolic benefits were observed independently of L. reuteri administration, several of which could be accurately predicted by baseline and diet-responsive microbiome features. The findings suggest that a dietary intervention targeted toward restoring the gut microbiome can improve host-microbiome interactions that likely underpin chronic pathologies, which can guide dietary recommendations and the development of therapeutic and nutritional strategies.
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