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Published on: February 26, 2013
Acquired risk factors and incident atrial fibrillation according to age and genetic predisposition
Ningjian Wang1, Yuefeng Yu1, Ying Sun1
1Institute and Department of Endocrinology and Metabolism, Shanghai Ninth People's Hospital, Shanghai JiaoTong University School of Medicine, No. 639 Zhizaoju Road, Huangpu District, Shanghai 200011, China.
Insights
Understanding atrial fibrillation (AF) risk factors is key for prevention. Cardiometabolic factors are major contributors, with their impact varying by age and genetic predisposition, highlighting the need for personalized AF prevention strategies.
Area of Science:
- Cardiology
- Genetics
- Public Health
Background:
- Atrial fibrillation (AF) is the most common sustained arrhythmia in adults.
- Investigating AF risk factor profiles across different age and genetic risk groups is crucial for personalized prevention strategies.
Purpose of the Study:
- To examine the population-attributable risk (PAR) of incident AF associated with various risk factors.
- To analyze these associations across different age groups and genetic risk strata.
Main Methods:
- Utilized UK Biobank cohort data from 409,661 participants without baseline AF.
- Assessed 23 risk factors including social, health behaviors, cardiometabolic, and clinical comorbidities, alongside a genetic risk score (GRS).
- Analyzed hazard ratios and PAR percentages across three age groups (40-69 years) and three genetic risk groups (low, moderate, high GRS).
Main Results:
- Cardiometabolic factors were the largest contributors to incident AF (PAR: 36.2%-41.9%), with hypertension and overweight/obesity being leading modifiable factors.
- Associations between most cardiometabolic factors/clinical comorbidities and AF strengthened in younger age groups.
- AF risk attributable to cardiometabolic factors and clinical comorbidities decreased with increasing genetic risk.
Conclusions:
- This study provides comprehensive insights into age- and genetic predisposition-related AF risk factor profiles in UK adults.
- Stratifying risk factors by age and genetic predisposition can enhance the precision and efficiency of AF prevention efforts.
Background And Aims:
Atrial fibrillation (AF) is the most common sustained arrhythmia in adults. Investigations of risk factor profiles for AF according to age and genetic risk groups are essential to promote individualized strategies for the prevention and control of AF.
Methods:
A total of 409 661 participants (mean age, 56 years; 46% men) free of AF at baseline and with complete information about risk factors were included from the UK Biobank cohort. The hazard ratios and population-attributable risk (PAR) percentages of incident AF associated with 23 risk factors were examined, including 3 social factors, 7 health behaviours, 6 cardiometabolic factors, 6 clinical comorbidities, and the genetic risk score (GRS), across 3 age groups (40-49, 50-59, and 60-69 years) and 3 genetic risk groups (low, moderate, and high GRS).
Results:
After a follow-up of 5 027 587 person-years, 23 847 participants developed AF. Most cardiometabolic factors and clinical comorbidities showed a significant interaction with age, whereby the associations were generally strengthened in younger groups (Pinteraction < .002). However, only low LDL cholesterol, renal dysfunction, and cardiovascular disease showed a significant interaction with genetic risk, and the associations with these factors were stronger in lower genetic risk groups (Pinteraction < .002). Cardiometabolic factors consistently accounted for the largest number of incident AF cases across all age groups (PAR: 36.2%-38.9%) and genetic risk groups (34.0%-41.9%), with hypertension and overweight/obesity being the two leading modifiable factors. Health behaviours (PAR: 11.5% vs. 8.7%) and genetic risk factors (19.1% vs. 14.3%) contributed to more AF cases in the 40-49 years group than in the 60-69 years group, while the contribution of clinical comorbidities remained relatively stable across different age groups. The AF risk attributable to overall cardiometabolic factors (PAR: 41.9% in the low genetic risk group and 34.0% in the high genetic risk group) and clinical comorbidities (24.7% and 15.9%) decreased with increasing genetic risk. The impact of social factors on AF was relatively low across the groups by age and genetic risk.
Conclusions:
This study provided comprehensive information about age- and genetic predisposition-related risk factor profiles for AF in a cohort of UK adults. Prioritizing risk factors according to age and genetic risk stratifications may help to achieve precise and efficient prevention of AF.
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