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Genetic susceptibility, elevated blood pressure, and risk of atrial fibrillation: a Mendelian randomization study
Milad Nazarzadeh1,2, Ana-Catarina Pinho-Gomes2, Zeinab Bidel1,2
1Deep Medicine, Oxford Martin School, University of Oxford, 1st Floor, Hayes House, 75 George Street, Oxford, OX1 2BQ, UK.
Insights
Elevated blood pressure (BP) is a causal risk factor for atrial fibrillation (AF). BP-lowering treatments may prevent AF, especially in genetically susceptible individuals.
Area of Science:
- Cardiology
- Genetics
- Pharmacology
Background:
- The relationship between elevated blood pressure (BP) and atrial fibrillation (AF) risk is not definitively established.
- Investigating the causal link and potential modifiability of this association is crucial for cardiovascular health.
- Understanding how genetic susceptibility influences this relationship is key to personalized prevention strategies.
Purpose of the Study:
- To determine if elevated blood pressure (BP) causally increases the risk of atrial fibrillation (AF).
- To assess if this association varies based on an individual's genetic predisposition to AF.
- To predict the effectiveness of common BP-lowering drug classes in preventing AF.
Main Methods:
- Two-sample Mendelian randomization using large genome-wide association studies (N=1 million).
- Analysis of UK Biobank data (N=329,237) to examine BP effects on AF risk stratified by genetic susceptibility.
- Genetic prediction of treatment effects for ACE inhibitors, beta-blockers, and calcium channel blockers on AF risk.
Main Results:
- A 10-mmHg increase in systolic BP was associated with a 19% increased risk of AF (OR 1.19).
- This association was confirmed in the UK Biobank.
- The effect of BP on AF risk was significantly stronger in individuals with high genetic susceptibility compared to those with low genetic risk.
Conclusions:
- Elevated blood pressure is likely a causal risk factor for atrial fibrillation.
- BP-lowering therapies may be beneficial for AF prevention, with potentially greater impact in genetically susceptible individuals.
- Personalized risk assessment considering genetic factors may optimize AF prevention strategies.
Background:
Whether elevated blood pressure (BP) is a modifiable risk factor for atrial fibrillation (AF) is not established. We tested (1) whether the association between BP and risk of AF is causal, (2) whether it varies according to individual's genetic susceptibility for AF, and (3) the extent to which specific BP-lowering drugs are expected to reduce this risk.
Methods:
First, causality of association was assessed through two-sample Mendelian randomization, using data from two independent genome-wide association studies that included a population of one million Europeans in total. Second, the UK Biobank data of 329,237 participants at baseline was used to study the effect of BP on AF according to genetic susceptibility of developing AF. Third, a possible treatment effect with major BP-lowering drug classes on AF risk was predicted through genetic variants in genes encode the therapeutic targets of each drug class. Estimated drug effects were compared with effects on incident coronary heart disease, for which direct trial evidence exists.
Results:
The two-sample Mendelian randomization analysis indicated that, on average, exposure to a higher systolic BP increased the risk of AF by 19% (odds ratio per each 10-mmHg [OR] 1.19 [1.12 to 1.27]). This association was replicated in the UK biobank using individual participant data. However, in a further genetic risk-stratified analysis, there was evidence for a linear gradient in the relative effects of systolic BP on AF; while there was no conclusive evidence of an effect in those with low genetic risk, a strong effect was observed among those with high genetic susceptibility for AF. The comparison of predicted treatment effects using genetic proxies for three main drug classes (angiotensin-converting enzyme inhibitors, beta-blockers, and calcium channel blockers) suggested similar average effects for the prevention of atrial fibrillation and coronary heart disease.
Conclusions:
The effect of elevated BP on the risk of AF is likely to be causal, suggesting that BP-lowering treatment may be effective in AF prevention. However, average effects masked clinically important variations, with a more pronounced effect in individuals with high genetic susceptibility risk for AF.
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