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Estimating the Population Benefits of Blood Pressure Lowering: A Wide-Angled Mendelian Randomization Study in UK
Hannah Higgins1, Amy M Mason1, Susanna C Larsson2,3
1Department of Public Health and Primary Care University of Cambridge United Kingdom.
Insights
Elevated systolic blood pressure (SBP) causes many cardiovascular diseases (CVDs). Lowering population SBP could significantly reduce CVD prevalence and disease burden.
Area of Science:
- Cardiovascular Science
- Genetics
- Epidemiology
Background:
- Causal link between elevated blood pressure and cardiovascular diseases (CVDs) remains uncertain.
- Population-level impact of blood pressure reduction strategies requires systematic assessment.
Purpose of the Study:
- To systematically evaluate the causal relevance of systolic blood pressure (SBP) for various CVDs.
- To estimate the potential reduction in CVD prevalence from population-wide SBP lowering.
Main Methods:
- Utilized a 2-sample Mendelian randomization framework.
- Investigated associations between genetically predicted SBP (using 256 genetic variants) and 21 CVDs in 376,703 UK Biobank participants.
- Assessed participants of European ancestry aged 40-69 years.
Main Results:
- Genetically predicted SBP showed a positive association with 14 out of 21 CVDs (P<0.002).
- Included outcomes were dilated cardiomyopathy, endocarditis, peripheral vascular disease, and rheumatic heart disease.
- Population SBP reductions predicted significant decreases in CVD morbidity: 16.9% for 5-mm Hg, 30.8% for 10-mm Hg, and 56.2% for 22.7-mm Hg decrease.
Conclusions:
- Long-term differences in SBP significantly influence the risk of numerous CVDs.
- Substantial reduction in the burden of a wide range of CVDs is achievable through population-wide SBP lowering.
Abstract:
Background The causal relevance of elevated blood pressure for several cardiovascular diseases (CVDs) is uncertain, as is the population impact of blood pressure lowering. This study systematically assesses evidence of causality for various CVDs in a 2-sample Mendelian randomization framework, and estimates the potential reduction in the prevalence of these diseases attributable to long-term population shifts in the distribution of systolic blood pressure (SBP). Methods and Results We investigated associations of genetically predicted SBP as predicted by 256 genetic variants with 21 CVDs in UK Biobank, a population-based cohort of UK residents. The sample consisted of 376 703 participants of European ancestry, aged 40 to 69 years at recruitment. Genetically predicted SBP was positively associated with 14 of the outcomes (P<0.002), including dilated cardiomyopathy, endocarditis, peripheral vascular disease, and rheumatic heart disease. Using genetic variation to estimate the long-term impact of blood pressure lowering on disease in a middle-aged to early late-aged UK-based population, population reductions in SBP were predicted to result in an overall 16.9% (95% CI, 12.2%-21.3%) decrease in morbidity for a 5-mm Hg decrease from a population mean of 137.7 mm Hg, 30.8% (95% CI, 22.8%-38.0%) decrease for a 10-mm Hg decrease, and 56.2% (95% CI, 43.7%-65.9%) decrease for a 22.7-mm Hg decrease in SBP (22.7 mm Hg represents a shift from the current mean SBP to 115 mm Hg). Conclusions Risk of many CVDs is influenced by long-term differences in SBP. The burden of a broad range of CVDs could be substantially reduced by long-term population-wide reductions in the distribution of blood pressure.
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