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血液生化代谢特征和脑影像衍生内表型与阿尔茨海默病的因果关联及中介作用

Causal association and mediating effect of blood biochemical metabolic traits and brain image-derived endophenotypes on Alzheimer's disease.

作者信息

Yin Kang-Fu, Gu Xiao-Jing, Su Wei-Ming, Chen Ting, Long Jiang, Gong Li, Ying Zhi-Ye, Dou Meng, Jiang Zheng, Duan Qing-Qing, Cao Bei, Gao Xia, Chi Li-Yi, Chen Yong-Ping

机构信息

Department of Neurology, Institute of Brain Science and Brain-inspired Technology, Centre for Rare Diseases, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.

Mental Health Center, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.

出版信息

Heliyon. 2024 Mar 7;10(8):e27422. doi: 10.1016/j.heliyon.2024.e27422. eCollection 2024 Apr 30.

Abstract

BACKGROUND

Recent genetic evidence supports that circulating biochemical and metabolic traits (BMTs) play a causal role in Alzheimer's disease (AD), which might be mediated by changes in brain structure. Here, we leveraged publicly available genome-wide association study data to investigate the intrinsic causal relationship between blood BMTs, brain image-derived phenotypes (IDPs) and AD.

METHODS

Utilizing the genetic variants associated with 760 blood BMTs and 172 brain IDPs as the exposure and the latest AD summary statistics as the outcome, we analyzed the causal relationship between blood BMTs and brain IDPs and AD by using a two-sample Mendelian randomization (MR) method. Additionally, we used two-step/mediation MR to study the mediating effect of brain IDPs between blood BMTs and AD.

RESULTS

Twenty-five traits for genetic evidence supporting a causal association with AD were identified, including 12 blood BMTs and 13 brain IDPs. For BMTs, glutamine consistently reduced the risk of AD in 3 datasets. For IDPs, specific alterations of cortical thickness (atrophy in frontal pole and insular lobe, and incrassation in superior parietal lobe) and subcortical volume (atrophy in hippocampus and its subgroups, left accumbens and left choroid plexus, and expansion in cerebral white matter) are vulnerable to AD. In the two-step/mediation MR analysis, superior parietal lobe, right hippocampal fissure and left accumbens were identified to play a potential mediating role among three blood BMTs and AD.

CONCLUSIONS

The results obtained in our study suggest that 12 circulating BMTs and 13 brain IDPs play a causal role in AD. Importantly, a subset of BMTs exhibit shared genetic architecture and potentially causal relationships with brain structure, which may contribute to the alteration of brain IDPs in AD.

摘要

背景

最近的遗传学证据支持循环生化和代谢特征(BMTs)在阿尔茨海默病(AD)中起因果作用,这可能由脑结构变化介导。在此,我们利用公开可用的全基因组关联研究数据来研究血液BMTs、脑影像衍生表型(IDPs)与AD之间的内在因果关系。

方法

利用与760种血液BMTs和172种脑IDPs相关的遗传变异作为暴露因素,以最新的AD汇总统计数据作为结果,我们采用两样本孟德尔随机化(MR)方法分析血液BMTs与脑IDPs以及AD之间的因果关系。此外,我们使用两步/中介MR来研究脑IDPs在血液BMTs与AD之间的中介作用。

结果

确定了25个具有支持与AD因果关联的遗传证据的特征,包括12种血液BMTs和13种脑IDPs。对于BMTs,谷氨酰胺在3个数据集中持续降低AD风险。对于IDPs,皮质厚度的特定改变(额极和岛叶萎缩,顶上叶增厚)和皮质下体积(海马及其亚组、左侧伏隔核和左侧脉络丛萎缩,脑白质扩张)易患AD。在两步/中介MR分析中,顶上叶、右侧海马裂和左侧伏隔核被确定在三种血液BMTs与AD之间起潜在中介作用。

结论

我们研究中获得的结果表明,12种循环BMTs和13种脑IDPs在AD中起因果作用。重要的是,一部分BMTs表现出与脑结构共享的遗传结构和潜在因果关系,这可能导致AD中脑IDPs的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3858/11033073/c7d2392a8845/gr1.jpg

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