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Published on: October 12, 2017
Impaired High-Density Lipoprotein Function in Patients With Heart Failure
Johanna E Emmens1, Congzhuo Jia2,3, Leong L Ng4,5
1Department of Cardiology University of Groningen Groningen The Netherlands.
Insights
In heart failure patients, higher high-density lipoprotein (HDL) cholesterol efflux predicts lower mortality. HDL function, particularly cholesterol efflux, offers prognostic value beyond HDL cholesterol levels.
Area of Science:
- Cardiology
- Biochemistry
- Proteomics
Background:
- Low high-density lipoprotein (HDL) cholesterol predicts mortality in heart failure.
- HDL proteome composition may explain this association.
- The role of HDL function in heart failure prognosis remains unclear.
Purpose of the Study:
- To investigate the association between HDL function and prognosis in heart failure patients.
- To explore the relationship between HDL functionality and HDL proteome composition.
- To assess changes in HDL function over time in heart failure.
Main Methods:
- Measured HDL cholesterol efflux, antioxidative, and anti-inflammatory capacities in 446 heart failure patients.
- Assessed HDL functionality and proteome composition in 86 patients.
- Followed patients for mortality and hospitalization events.
Main Results:
- HDL cholesterol efflux and anti-inflammatory capacity declined over 9 months.
- Antioxidative capacity increased over 9 months.
- Higher baseline HDL cholesterol efflux was independently associated with lower mortality (HR, 0.81; P=0.001).
- Apolipoprotein A1 was the main HDL protein associated with functionality.
Conclusions:
- HDL cholesterol efflux is a significant independent predictor of mortality in heart failure.
- HDL function metrics provide additional prognostic information beyond HDL cholesterol levels.
- HDL function declines over time in heart failure patients.
Abstract:
Background We recently showed that, in patients with heart failure, lower high-density lipoprotein (HDL) cholesterol concentration was a strong predictor of death or hospitalization for heart failure. In a follow-up study, we suggested that this association could be partly explained by HDL proteome composition. However, whether the emerging concept of HDL function contributes to the prognosis of patients with heart failure has not been addressed. Methods and Results We measured 3 key protective HDL function metrics, namely, cholesterol efflux, antioxidative capacity, and anti-inflammatory capacity, at baseline and after 9 months in 446 randomly selected patients with heart failure from BIOSTAT-CHF (A Systems Biology Study to Tailored Treatment in Chronic Heart Failure). Additionally, the relationship between HDL functionality and HDL proteome composition was determined in 86 patients with heart failure. From baseline to 9 months, HDL cholesterol concentrations were unchanged, but HDL cholesterol efflux and anti-inflammatory capacity declined (both P<0.001). In contrast, antioxidative capacity increased (P<0.001). Higher HDL cholesterol efflux was associated with lower mortality after adjusting for BIOSTAT-CHF risk models and log HDL cholesterol (hazard ratio, 0.81; 95% CI, 0.71-0.92; P=0.001). Other functionality measures were not associated with outcome. Several HDL proteins correlated with HDL functionality, mainly with cholesterol efflux. Apolipoprotein A1 emerged as the main protein associated with all 3 HDL functionality measures. Conclusions Better HDL cholesterol efflux at baseline was associated with lower mortality during follow-up, independent of HDL cholesterol. HDL cholesterol efflux and anti-inflammatory capacity declined during follow-up in patients with heart failure. Measures of HDL function may provide clinical information in addition to HDL cholesterol concentration in patients with heart failure.
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