认知
高强度
神经科学
心理学
淋巴系统
脑功能
功能(生物学)
认知心理学
白质
认知储备
认知功能衰退
大脑定位
医学
一般化
联想(心理学)
认知障碍
作者
Xiaotao Xu,Xia Zhou,Mengwei Zhang,Jingjing Fang,Zhiqing Yan,X Zhu,Yongqiang Yu,Jiajia Zhu
摘要
INTRODUCTION: Individuals with similar white matter hyperintensities (WMH) burden show heterogeneous cognitive outcomes, yet the biological mechanisms underlying this variability remain incompletely understood. METHODS: We integrated 16S rDNA sequencing, untargeted metabolomics, and multi-modal magnetic resonance imaging (MRI) to comprehensively characterize gut microbiome, plasma metabolome, and brain glymphatic function in 56 healthy controls, 40 WMH with normal cognition (WMH-NC), and 49 WMH with cognitive impairment (WMH-CI). RESULTS: Group comparisons revealed differences in six bacterial genera, three plasma metabolites, and five glymphatic markers across three groups, with Acetivibrio, 1,5-naphthalenediamine, beta-uridine, free water fraction within the white matter, and index of diffusivity along the perivascular spaces (ALPS index) showing differences between WMH-CI and WMH-NC. Correlation and mediation analyses demonstrated associations between microbiota and cognition, mediated by tetradecyldiethanolamine and ALPS index. DISCUSSION: These findings provide preliminary insights into plausible microbiota-metabolites-glymphatic function-cognition associations in WMH, potentially informing more targeted interventions for vascular cognitive impairment.
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