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Remnant cholesterol and risk of incident hypertension: a population-based prospective cohort study
Da-Chuan Guo1, Jing-Wei Gao1, Xiang Wang2
1Department of Cardiology, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, 510120, China.
Insights
Elevated remnant cholesterol (RC) is an independent risk factor for developing hypertension. Monitoring RC levels may help prevent hypertension, even when other risk factors are controlled.
Area of Science:
- Cardiovascular Medicine
- Metabolic Health
- Epidemiology
Background:
- Remnant cholesterol (RC) is linked to cardiovascular disease, but its association with hypertension is not well-established.
- Hypertension is a major risk factor for cardiovascular events, necessitating identification of novel risk predictors.
Purpose of the Study:
- To investigate the prospective association between remnant cholesterol levels and the risk of developing incident hypertension.
- To determine if RC is an independent predictor of hypertension beyond traditional risk factors.
Main Methods:
- Prospective cohort study utilizing UK Biobank data from 295,062 participants initially free of hypertension.
- Cox proportional hazards regression and restricted cubic spline curves were employed to analyze RC-hypertension associations.
- Discordance analysis assessed hypertension risk in individuals with differing RC and low-density lipoprotein cholesterol (LDL-C) levels.
Main Results:
- Over a median follow-up of 12.8 years, 39,038 cases of incident hypertension were recorded.
- Higher RC levels were significantly associated with an increased risk of hypertension (HR: 1.20 for extreme quartiles).
- Each 1 mmol/L increase in RC independently predicted a 27% higher hypertension risk (aHR: 1.27) after adjustment for covariates.
Conclusions:
- Elevated remnant cholesterol is an independent risk factor for incident hypertension.
- These findings suggest that RC monitoring and targeted interventions could play a role in hypertension prevention strategies.
Abstract:
Remnant cholesterol (RC) has been associated with atherosclerotic cardiovascular disease, but its relationship with hypertension remains unclear. This prospective cohort study aimed to investigate the association between RC and subsequent hypertension risk. Data from the UK Biobank, comprising 295,062 participants initially free of hypertension, were analyzed. Cox proportional hazards regression assessed the association between RC quartiles and hypertension risk. Discordance analysis evaluated the risk of hypertension in discordant/concordant groups of RC and low-density lipoprotein cholesterol (LDL-C) using the difference in percentile units (>10 units). Restricted cubic spline curves were used to model the relationship between RC and hypertension risk. The mean ± SD age of participants was 55.1 ± 8.1 years, with 40.6% being men and 94.7% White. During a median follow-up of 12.8 years, 39,038 participants developed hypertension. Comparing extreme quartiles of RC, the hazard ratio (HR) for incident hypertension was 1.20 (95% CI: 1.17-1.24). After adjusting for traditional risk factors, each 1 mmol/L increase in RC levels was associated with a 27% higher risk of incident hypertension (HR: 1.27; 95% CI: 1.23-1.31). The discordant group with high RC/low LDL-C exhibited a higher risk of incident hypertension compared to the concordant group (HR: 1.06; 95% CI: 1.03-1.09). Spline curves further demonstrated a positive association between RC and the risk of incident hypertension. We concluded that elevated RC emerged as an independent risk factor of incident hypertension, extending beyond traditional risk factors. Monitoring RC levels and implementing interventions to lower RC may have potential benefits in preventing hypertension.
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