微生物群
神经炎症
肠道菌群
免疫学
生物
疾病
医学
发病机制
小胶质细胞
认知功能衰退
肠-脑轴
炎症
痴呆
失调
病理
生物信息学
作者
Chun Chen,Jianming Liao,Yiyuan Xia,Xia Liu,Rheinallt M. Jones,John P. Haran,Beth A. McCormick,Timothy R. Sampson,Ashfaqul Alam,Keqiang Ye
出处
期刊:Gut
[BMJ]
日期:2022-01-11
卷期号:71 (11): 2233-2252
被引量:204
标识
DOI:10.1136/gutjnl-2021-326269
摘要
Objective This study is to investigate the role of gut dysbiosis in triggering inflammation in the brain and its contribution to Alzheimer’s disease (AD) pathogenesis. Design We analysed the gut microbiota composition of 3×Tg mice in an age-dependent manner. We generated germ-free 3×Tg mice and recolonisation of germ-free 3×Tg mice with fecal samples from both patients with AD and age-matched healthy donors. Results Microbial 16S rRNA sequencing revealed Bacteroides enrichment. We found a prominent reduction of cerebral amyloid-β plaques and neurofibrillary tangles pathology in germ-free 3×Tg mice as compared with specific-pathogen-free mice. And hippocampal RNAseq showed that inflammatory pathway and insulin/IGF-1 signalling in 3×Tg mice brain are aberrantly altered in the absence of gut microbiota. Poly-unsaturated fatty acid metabolites identified by metabolomic analysis, and their oxidative enzymes were selectively elevated, corresponding with microglia activation and inflammation. AD patients’ gut microbiome exacerbated AD pathologies in 3×Tg mice, associated with C/EBPβ/asparagine endopeptidase pathway activation and cognitive dysfunctions compared with healthy donors’ microbiota transplants. Conclusions These findings support that a complex gut microbiome is required for behavioural defects, microglia activation and AD pathologies, the gut microbiome contributes to pathologies in an AD mouse model and that dysbiosis of the human microbiome might be a risk factor for AD.
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