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Author Spotlight: Assessing the Cardiovascular Profile of Patients with Metabolic Syndrome
Published on: September 27, 2024
Changes in Cardiovascular Health, Genetic Risk, and Cardiometabolic Diseases: Evidence From a Large-Scale Cohort
Shuaizhou Chen1,2, Jialin Li3,2, Qiuhong Man4
1Department of Epidemiology and Ministry of Education Key Laboratory of Public Health Safety, School of Public Health Fudan University Shanghai China.
Insights
Improving cardiovascular health (CVH) significantly lowers cardiometabolic disease (CMD) risk, particularly for younger individuals and those with high genetic predisposition. Maintaining or enhancing CVH is crucial for long-term health and disease prevention.
Area of Science:
- Cardiovascular Health and Disease Prevention
- Genetics and Cardiometabolic Risk
- Public Health and Lifestyle Interventions
Background:
- Superior cardiovascular health (CVH) is linked to reduced susceptibility to cardiometabolic diseases (CMDs).
- CVH dynamically changes throughout an individual's lifespan.
- The impact of CVH changes on CMD risk, especially concerning genetic predispositions, is not fully understood.
Purpose of the Study:
- To evaluate the association between baseline CVH, changes in CVH over time, and the risk of developing CMDs.
- To investigate how these associations differ across age groups and genetic risk profiles.
- To quantify the potential benefits of improving CVH in preventing CMDs.
Main Methods:
- Analysis of a large-scale community-based cohort (n=289,069 for baseline, n=37,702 for changes).
- Utilized Cox proportional hazards models with repeatedly assessed lifestyle and genetic data.
- Stratified analyses by age (≤65 vs. >65 years) and genetic risk tertiles (polygenic risk score).
Main Results:
- Higher baseline CVH correlated with lower CMD risk. Improvement from intermediate to ideal CVH reduced CMD risk by 36% (HR 0.64).
- Deterioration from intermediate to poor CVH increased CMD risk by 44% (HR 1.44).
- CVH changes had a greater impact on CMD risk in younger individuals (≤65 years). High genetic risk individuals improving CVH saw a 50% reduction in ischemic heart disease risk.
Conclusions:
- Enhanced CVH significantly mitigates CMD risk, with greater benefits observed in younger populations and those with high genetic risk.
- Interventions promoting cardiovascular well-being are vital for population-level CMD prevention.
- Findings support targeted preventive strategies and healthcare interventions for cardiovascular health improvement.
Background:
Evidence has firmly established the association between superior cardiovascular health (CVH) and reduced susceptibility to cardiometabolic diseases (CMDs). In reality, CVH experiences dynamic fluctuations throughout individuals' lifespans. However, the association between changes in CVH and the impact on CMDs among individuals with different genetic risks remains unclear.
Methods And Results:
Based on a large-scale community-based cohort, we evaluated the association between baseline CVH (n=289 069), changes in CVH between 2 examinations (n=37 702), and the risk of CMDs and its individual components (ischemic heart disease, type 2 diabetes, and stroke) using Cox proportional hazards models, leveraging detailed repeatedly assessed lifestyle information and genetic data. Estimations were also stratified by age groups (≤65 years, >65 years) and genetic risk groups, defined by the tertiles of the polygenic risk score for CMDs components. Population-attributable fractions and relative risk reduction were calculated to assess the potential benefits of improvement in CVH in preventing CMDs. For participants whose baseline CVH ranged from ideal to poor, an ascending trend was exhibited in the risk of CMDs overall, as well as its individual components. Based on a median of 5.4-year follow-up after the reassessment of CVH, individuals with an enhancement from intermediate to ideal CVH demonstrated a 36% lower risk of CMDs (hazard ratio [HR], 0.64 [95% CI, 0.53-0.77]; P<0.001), compared with those with constantly intermediate CVH, while those deteriorating from intermediate to poor faced a 44% higher risk (HR, 1.44 [95% CI, 1.17-1.78]; P<0.001). Interestingly, changes in CVH exerted a more pronounced impact on CMD risk within younger populations (≤65 years) (Pinteraction=0.006). Notably, among participants with a high genetic risk of ischemic heart disease, those who improved their CVH status from intermediate to ideal exhibited a 50% lower risk of ischemic heart disease (HR, 0.50 [95% CI, 0.34-0.74]; P<0.001), compared with those with constantly intermediate CVH.
Conclusions:
Individuals with better baseline CVH exhibited a lower risk of CMDs. Enhancement in CVH significantly mitigates the risk of CMDs, especially when efforts are made before the age of 65 years and within high genetic risk groups. These findings underscore the importance of interventions aimed at promoting cardiovascular well-being across entire populations, offering valuable insights for targeted preventive strategies and healthcare interventions.
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