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基因-环境相互作用对心房颤动和心脏结构的影响。

Impact of gene-environment interactions on atrial fibrillation and cardiac structure.

作者信息

Li Panlong, Zhu Xirui, Liu Min, Wang Yanfeng, Huang Chun, Sun Junwei, Tian Shan, Li Yuna, Qiao Yuan, Yang Junting, Cao Shanshan, Cong Chaohua, Zhao Lei, Wang Meiyun, Su Jingjing, Tian Dandan

机构信息

School of Electrical and Information Engineering, Zhengzhou University of Light Industry, Zhengzhou, China.

Department of Hypertension, Henan Provincial People's Hospital & Zhengzhou University People's Hospital, Zhengzhou, Henan, China.

出版信息

Sci Rep. 2025 May 15;15(1):16893. doi: 10.1038/s41598-025-00921-7.

Abstract

Environmental pollution is a major burden of cardiovascular disease. The aim of the study was to investigate the interactions between combined environmental factors and genetic susceptibility on atrial fibrillation (AF) and cardiac structures. The study included 374,495 participants from the UK Biobank, utilizing genetic data and environmental variables (including air pollution, noise, greenspace and water quality). Polygenic risk score (PRS) was calculated to estimate individual genetic risk. Cox proportional hazard model was applied to estimate the impact of exposure factors on the risk of AF occurrence. The mediation analysis was applied to assess the relationship among environmental scores, AF and cardiac structures. Population attributable fraction (PAF) was employed to assess potential influence of mitigating unfavorable environment characteristics on AF. The results showed that the highest group of four domain scores exhibited 3.38-16.83% higher AF risk than the lowest. Individuals with higher scores in four domains and high PRS had hazard ratio (95%CI) of 2.76 (2.62, 2.91), 2.61 (2.47, 2.75), 2.86 (2.71, 3.02) and 2.84 (2.66, 3.02). Environmental factors could indirectly affect cardiac structures through AF. Up to 7.37% of AF cases could be preventable through environmental interventions. Our findings pointed that gene-environment interaction can increase AF risk, which further affect cardiac structures.

摘要

环境污染是心血管疾病的一大负担。本研究的目的是调查环境综合因素与遗传易感性在心房颤动(AF)和心脏结构方面的相互作用。该研究纳入了英国生物银行的374495名参与者,利用了遗传数据和环境变量(包括空气污染、噪音、绿地和水质)。计算多基因风险评分(PRS)以估计个体遗传风险。应用Cox比例风险模型来估计暴露因素对AF发生风险的影响。采用中介分析来评估环境评分、AF和心脏结构之间的关系。使用人群归因分数(PAF)来评估减轻不利环境特征对AF的潜在影响。结果显示,四个领域评分最高的组比最低的组AF风险高3.38%-16.83%。在四个领域得分较高且PRS较高的个体,其风险比(95%CI)分别为2.76(2.62,2.91)、2.61(2.47,2.75)、2.86(2.71,3.02)和2.84(2.66,3.02)。环境因素可通过AF间接影响心脏结构。通过环境干预,高达7.37%的AF病例可得到预防。我们的研究结果指出,基因-环境相互作用会增加AF风险,进而影响心脏结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/234a/12081741/a030f3a5b693/41598_2025_921_Fig1_HTML.jpg

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