Open Access
Gut microbiome, cognitive function and brain structure: a multi-omics integration analysis
Xinxiu Liang
1, 2
,
Yuanqing Fu
2
,
Wen Ting Cao
3, 4
,
Zhihong Wang
5, 6
,
Ke Zhang
2
,
Zengliang Jiang
2, 7
,
Xiaofang Jia
5, 6
,
Chun-Ying Liu
3
,
Hong Rou Lin
3
,
Haili Zhong
3
,
Zelei Miao
2
,
Wanglong Gou
2
,
Menglei Shuai
2
,
Yujing Huang
2
,
Shengdi Chen
8
,
Bing Zhang
5, 6
,
Yu-ming Chen
3
,
Ju‐Sheng Zheng
2, 7, 9
6
Key Laboratory of Trace Element Nutrition, National Health Commission, Beijing, China
|
7
Westlake Intelligent Biomarker Discovery Lab, Westlake Laboratory of Life Sciences and Biomedicine, Hangzhou, China
|
9
Institute of Basic Medical Sciences, Westlake Institute for Advanced Study, Hangzhou, China
|
Тип публикации: Journal Article
Дата публикации: 2022-11-14
scimago Q1
wos Q1
БС1
SJR: 3.850
CiteScore: 18.9
Impact factor: 15.2
ISSN: 20479158
PubMed ID:
36376937
Cellular and Molecular Neuroscience
Cognitive Neuroscience
Neurology (clinical)
Краткое описание
Microbiome-gut-brain axis may be involved in the progression of age-related cognitive impairment and relevant brain structure changes, but evidence from large human cohorts is lacking. This study was aimed to investigate the associations of gut microbiome with cognitive impairment and brain structure based on multi-omics from three independent populations. We included 1430 participants from the Guangzhou Nutrition and Health Study (GNHS) with both gut microbiome and cognitive assessment data available as a discovery cohort, of whom 272 individuals provided fecal samples twice before cognitive assessment. We selected 208 individuals with baseline microbiome data for brain magnetic resonance imaging during the follow-up visit. Fecal 16S rRNA and shotgun metagenomic sequencing, targeted serum metabolomics, and cytokine measurements were performed in the GNHS. The validation analyses were conducted in an Alzheimer’s disease case–control study (replication study 1, n = 90) and another community-based cohort (replication study 2, n = 1300) with cross-sectional dataset. We found protective associations of specific gut microbial genera (Odoribacter, Butyricimonas, and Bacteroides) with cognitive impairment in both the discovery cohort and the replication study 1. Result of Bacteroides was further validated in the replication study 2. Odoribacter was positively associated with hippocampal volume (β, 0.16; 95% CI 0.06–0.26, P = 0.002), which might be mediated by acetic acids. Increased intra-individual alterations in gut microbial composition were found in participants with cognitive impairment. We also identified several serum metabolites and inflammation-associated metagenomic species and pathways linked to impaired cognition. Our findings reveal that specific gut microbial features are closely associated with cognitive impairment and decreased hippocampal volume, which may play an important role in dementia development.
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ГОСТ |
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ГОСТ
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Liang X. et al. Gut microbiome, cognitive function and brain structure: a multi-omics integration analysis // Translational Neurodegeneration. 2022. Vol. 11. No. 1. 49
ГОСТ со всеми авторами (до 50)
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Liang X., Fu Y., Cao W. T., Wang Z., Zhang K., Jiang Z., Jia X., Liu C., Lin H. R., Zhong H., Miao Z., Gou W., Shuai M., Huang Y., Chen S., Zhang B., Chen Y., Zheng J. Gut microbiome, cognitive function and brain structure: a multi-omics integration analysis // Translational Neurodegeneration. 2022. Vol. 11. No. 1. 49
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TY - JOUR
DO - 10.1186/s40035-022-00323-z
UR - https://doi.org/10.1186/s40035-022-00323-z
TI - Gut microbiome, cognitive function and brain structure: a multi-omics integration analysis
T2 - Translational Neurodegeneration
AU - Liang, Xinxiu
AU - Fu, Yuanqing
AU - Cao, Wen Ting
AU - Wang, Zhihong
AU - Zhang, Ke
AU - Jiang, Zengliang
AU - Jia, Xiaofang
AU - Liu, Chun-Ying
AU - Lin, Hong Rou
AU - Zhong, Haili
AU - Miao, Zelei
AU - Gou, Wanglong
AU - Shuai, Menglei
AU - Huang, Yujing
AU - Chen, Shengdi
AU - Zhang, Bing
AU - Chen, Yu-ming
AU - Zheng, Ju‐Sheng
PY - 2022
DA - 2022/11/14
PB - Springer Nature
IS - 1
VL - 11
PMID - 36376937
SN - 2047-9158
ER -
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BibTex (до 50 авторов)
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@article{2022_Liang,
author = {Xinxiu Liang and Yuanqing Fu and Wen Ting Cao and Zhihong Wang and Ke Zhang and Zengliang Jiang and Xiaofang Jia and Chun-Ying Liu and Hong Rou Lin and Haili Zhong and Zelei Miao and Wanglong Gou and Menglei Shuai and Yujing Huang and Shengdi Chen and Bing Zhang and Yu-ming Chen and Ju‐Sheng Zheng},
title = {Gut microbiome, cognitive function and brain structure: a multi-omics integration analysis},
journal = {Translational Neurodegeneration},
year = {2022},
volume = {11},
publisher = {Springer Nature},
month = {nov},
url = {https://doi.org/10.1186/s40035-022-00323-z},
number = {1},
pages = {49},
doi = {10.1186/s40035-022-00323-z}
}