Association Between Cardiovascular Polygenic Risk and White Matter Hyperintensities: An Observational Study From the UK Biobank

生命银行 多基因风险评分 观察研究 医学 联想(心理学) 疾病 环境卫生 遗传关联 动脉粥样硬化性心血管疾病 人口学 风险评估 危险分层 终身风险 老年学 全基因组关联研究 流行病学 混淆 风险因素 白色(突变) 病因学 梅德林 遗传倾向 心血管健康 队列研究 人口分层 内科学 横断面研究
作者
Yongfang Zhang,Sicheng Guo,Yuting Ma,Weiqi Chen,Lingling Jiang,Tingting Wang,Yun Lin,Xingya Cai,Jing Wang,Y Chen,Shaojie Li,Ningjing Zhao,Ziting Hou,Xiuqing Zhang,Hui Huang,Hui Jiang,Shida Zhu,Lijian Zhao,Karsten Kristiansen,Jianguo Zhang
出处
期刊:Hypertension [Lippincott Williams & Wilkins]
标识
DOI:10.1161/hypertensionaha.125.26388
摘要

BACKGROUNDS: White matter hyperintensities (WMH), a marker of cerebral small vessel disease, are associated with cardiovascular risk factors and disease. However, the extent to which these associations are driven by shared genetic architecture remains unclear. METHODS: and multivariable linear regression models. Cox models assessed whether WMH burden modified cardiovascular risk across genetic risk strata. Multiomics data were examined to identify biomarkers jointly associated with WMH and disease-specific PRSs. RESULTS: Higher WMH burden was associated with increased PRSs for cardiovascular disease (CVD), hypertension, ischemic stroke, and blood pressure, with the strongest associations observed for total WMH. WMH burden was prospectively associated with higher CVD incidence among individuals with high CVD PRS (hazard ratio, 2.54 [95% CI, 1.44-4.45]), but not among those with low PRS. For hypertension, WMH burden was associated with increased risk in both PRS strata, with stronger associations in individuals with high hypertension PRS, indicating additive contributions of genetic susceptibility and WMH burden. Lifestyle influences varied by genetic background: longer sleep duration and lower body mass index were protective only with low CVD PRS. Multiomics analyses identified 46 circulating biomarkers jointly associated with WMH and CVD PRSs, predominantly related to lipid metabolism. CONCLUSIONS: The association between WMH burden and cardiovascular-related disease risk is influenced by genetic background, supporting precision risk stratification and prevention in clinical practice.
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