Timing of food intake impacts daily rhythms of human salivary microbiota: a randomized, crossover study

唾液 生物 节奏 昼夜节律 肠道菌群 微生物群 餐食 粪便 生理学 交叉研究 生态学 食品科学 内科学 内分泌学 医学 免疫学 生物信息学 生物化学 病理 替代医学 安慰剂
作者
María Carmen Collado,Phillip A. Engen,Cristina Bandín,Raúl Cabrera‐Rubio,Robin M. Voigt,Stefan J. Green,Ankur Naqib,Ali Keshavarzian,Frank A. J. L. Scheer,Marta Garaulet
出处
期刊:The FASEB Journal [Wiley]
卷期号:32 (4): 2060-2072 被引量:137
标识
DOI:10.1096/fj.201700697rr
摘要

The composition of the diet (what we eat) has been widely related to the microbiota profile. However, whether the timing of food consumption (when we eat) influences microbiota in humans is unknown. A randomized, crossover study was performed in 10 healthy normal-weight young women to test the effect of the timing of food intake on the human microbiota in the saliva and fecal samples. More specifically, to determine whether eating late alters daily rhythms of human salivary microbiota, we interrogated salivary microbiota in samples obtained at 4 specific time points over 24 h, to achieve a better understanding of the relationship between food timing and metabolic alterations in humans. Results revealed significant diurnal rhythms in salivary diversity and bacterial relative abundance (i.e., TM7 and Fusobacteria) across both early and late eating conditions. More importantly, meal timing affected diurnal rhythms in diversity of salivary microbiota toward an inverted rhythm between the eating conditions, and eating late increased the number of putative proinflammatory taxa, showing a diurnal rhythm in the saliva. In a randomized, crossover study, we showed for the first time the impact of the timing of food intake on human salivary microbiota. Eating the main meal late inverts the daily rhythm of salivary microbiota diversity which may have a deleterious effect on the metabolism of the host.— Collado, M. C., Engen, P. A., Bandíín, C., Cabrera-Rubio, R., Voigt, R. M., Green, S. J., Naqib, A., Keshavarzian, A., Scheer, F. A. J. L., Garaulet, M. Timing of food intake impacts daily rhythms of human salivary microbiota: a randomized, crossover study. FASEB J. 32, 2060–2072 (2018). www.fasebj.org
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