Ischaemic stroke patients present sex differences in gut microbiota

医学 邦费罗尼校正 肠道菌群 全基因组关联研究 内科学 基因组 冲程(发动机) 混淆 微生物群 生物信息学 生理学 遗传学 单核苷酸多态性 生物 免疫学 基因型 基因 统计 工程类 机械工程 数学
作者
Miquel Lledós,Luís Prats‐Sánchez,Laia Llucià‐Carol,Jara Cárcel‐Márquez,Elena Muiño,Natàlia Cullell,Cristina Gallego-Fábrega,Jesús M. Martín‐Campos,Ana Aguilera‐Simón,Marina Guasch‐Jiménez,Daniel Guisado‐Alonso,Anna Ramos‐Pachón,Alejandro Martínez‐Domeño,Artur Izquierdo,Rebeca Marín,Pol Camps‐Renom,Joan Martí‐Fábregas,Israel Fernández‐Cadenas
出处
期刊:European Journal of Neurology [Wiley]
卷期号:30 (11): 3497-3506 被引量:5
标识
DOI:10.1111/ene.15931
摘要

BACKGROUND: Gut microbiota plays a role in the pathophysiology of ischaemic stroke (IS) through the bidirectional gut-brain axis. Nevertheless, little is known about sex-specific microbiota signatures in IS occurrence. METHODS: A total of 89 IS patients and 12 healthy controls were enrolled. We studied the taxonomic differences of the gut microbiota between men and women with IS by shotgun metagenomic sequencing. To evaluate the causal effect of several bacteria on IS risk, we performed a two-sample Mendelian randomisation (MR) with inverse-variance weighting (IVW) using genome-wide association analysis (GWAS) summary statistics from two cohorts of 5959 subjects with genetic and microbiota data and 1,296,908 subjects with genetic and IS data, respectively. RESULTS: α-Diversity analysis measured using Observed Species (p = 0.017), Chao1 (p = 0.009) and Abundance-based Coverage Estimator (p = 0.012) indexes revealed that IS men have a higher species richness compared with IS women. Moreover, we found sex-differences in IS patients in relation to the phylum Fusobacteria, class Fusobacteriia, order Fusobacteriales and family Fusobacteriaceae (all Bonferroni-corrected p < 0.001). MR confirmed that increased Fusobacteriaceae levels in the gut are causally associated with an increased risk of IS (IVW p = 0.02, β = 0.32). CONCLUSIONS: Our study is the first to indicate that there are gut microbiome differences between men and women with IS, identifying high levels of Fusobacteriaceae in women as a specific risk factor for IS. Incorporating sex stratification analysis is important in the design, analysis and interpretation of studies on stroke and the gut microbiota.
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