Eur J Epidemiol. 2026 Sep 23. doi: 10.1007/s10654-026-01459-2. Online ahead of print.
ABSTRACT
Elevated blood pressure is an established risk factor for abdominal aortic aneurysm (AAA), yet traditional measures inadequately capture dynamic hemodynamic stress. This study examined the association between visit-to-visit systolic blood pressure variability (SBPV) and incident AAA, assessed whether genetic susceptibility modified this association, and explored protein-specific indirect associations. Visit-to-visit SBPV was calculated from ≥3 systolic blood pressure measurements in 189,770 UK Biobank participants with linked primary care records. Cox proportional hazards models evaluated SBPV-AAA associations, adjusting for cardiovascular risk factors and mean systolic blood pressure. Polygenic risk scores stratified genetic susceptibility. Proteomic profiling was used for exploratory protein-specific indirect-effect analyses. Over median follow-up of 10.7 years, 1,036 incident AAA cases occurred. Higher SBPV was independently associated with increased AAA risk across all metrics (all P for trend ≤0.003), with 33%-54% increased risk comparing the highest versus lowest tertile. Dose-response relationships were approximately linear (all P for non-linearity >0.05). High SBPV conferred elevated risk even with mean systolic blood pressure <130 mmHg. Participants with both high SBPV and high genetic risk had more than two-fold increased AAA risk (hazard ratio 2.07-2.28, all P<0.001). Ten circulating proteins showed FDR-significant protein-specific indirect effects in separate exploratory models, with descriptive coefficient-attenuation estimates ranging from 6.7% to 30.4%; these protein-specific estimates are non-additive and do not establish causal mediation. Associations remained robust across multiple sensitivity analyses. Higher visit-to-visit SBPV was associated with increased AAA risk, particularly among genetically susceptible individuals. These findings support SBPV as a potential AAA risk marker and warrant external validation, but do not establish that reducing SBPV would prevent AAA.
PMID:42776465 | DOI:10.1007/s10654-026-01459-2

