Gut microbiota mediates intermittent-fasting alleviation of diabetes-induced cognitive impairment

Author:

Liu ZhigangORCID,Dai XiaoshuangORCID,Zhang Hongbo,Shi Renjie,Hui YanORCID,Jin Xin,Zhang WentongORCID,Wang LuanfengORCID,Wang Qianxu,Wang DannaORCID,Wang Jia,Tan XintongORCID,Ren BoORCID,Liu XiaoningORCID,Zhao TongORCID,Wang Jiamin,Pan JunruORCID,Yuan Tian,Chu Chuanqi,Lan Lei,Yin FeiORCID,Cadenas Enrique,Shi LinORCID,Zhao Shancen,Liu XueboORCID

Abstract

AbstractCognitive decline is one of the complications of type 2 diabetes (T2D). Intermittent fasting (IF) is a promising dietary intervention for alleviating T2D symptoms, but its protective effect on diabetes-driven cognitive dysfunction remains elusive. Here, we find that a 28-day IF regimen for diabetic mice improves behavioral impairment via a microbiota-metabolites-brain axis: IF enhances mitochondrial biogenesis and energy metabolism gene expression in hippocampus, re-structures the gut microbiota, and improves microbial metabolites that are related to cognitive function. Moreover, strong connections are observed between IF affected genes, microbiota and metabolites, as assessed by integrative modelling. Removing gut microbiota with antibiotics partly abolishes the neuroprotective effects of IF. Administration of 3-indolepropionic acid, serotonin, short chain fatty acids or tauroursodeoxycholic acid shows a similar effect to IF in terms of improving cognitive function. Together, our study purports the microbiota-metabolites-brain axis as a mechanism that can enable therapeutic strategies against metabolism-implicated cognitive pathophysiologies.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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