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Updated: Feb 10, 2026

High-Density Lipoprotein-Specific Phospholipid Efflux Assay
Published on: September 30, 2025
High-density lipoprotein mediated cellular cholesterol efflux in acute coronary syndromes
Anouar Hafiane1, Bashar Jabor1, Isabelle Ruel1
1Cardiovascular Research Laboratories, Division of Cardiology, McGill University Faculty of Medicine, Royal Victoria Hospital, Montreal, Quebec, Canada.
Insights
Systemic inflammation in acute coronary syndrome (ACS) impairs high-density lipoprotein (HDL) function, reducing cholesterol removal capacity. This dysfunction persists long-term and is not solely due to inflammation markers or HDL cholesterol levels.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Inflammation Biology
Background:
- Systemic inflammation associated with acute coronary syndrome (ACS) may impact high-density lipoprotein (HDL) functionality.
- HDL particles play a crucial role in reverse cholesterol transport, removing cholesterol from macrophages.
Purpose of the Study:
- To investigate and characterize the cholesterol efflux capacity of HDL in patients experiencing ACS.
- To compare HDL efflux capacity in ACS patients with healthy controls and patients with stable coronary artery disease (CAD).
Main Methods:
- Utilized a cell-based system with [3H]-cholesterol-labeled J774 macrophages to measure cholesterol efflux from apolipoprotein B-depleted plasma.
- Analyzed HDL efflux capacity in ACS patients acutely (ACS1) and 3 months post-event (ACS2), alongside normal subjects and stable CAD patients.
Main Results:
- ACS patients exhibited reduced HDL cholesterol efflux capacity acutely, which remained diminished at 3 months and in stable CAD patients.
- Inflammatory markers like high-sensitivity C-reactive protein and serum amyloid A were elevated in ACS1, but serum amyloid A did not fully explain the efflux impairment.
- A weak correlation between HDL cholesterol levels and HDL efflux capacity was observed (r = 0.233; p = 0.049), indicating HDL cholesterol is a poor functional marker in these conditions.
Conclusions:
- HDL dysfunction and impaired cholesterol efflux are characteristic of ACS, independent of HDL cholesterol or apolipoprotein A-I levels.
- The findings suggest that HDL function is compromised in ACS, contributing to the disease process.
- HDL cholesterol levels may not accurately reflect HDL's functional capacity, especially during inflammatory states and in CAD.
Abstract:
Systemic inflammation at the development of an acute coronary syndrome (ACS) might alter the high-density lipoprotein (HDL) components and function. One of the major functions of HDL particles is their ability to remove cellular cholesterol from macrophages. The aim of the present study was to characterize the HDL efflux capacity in patients with ACS. We analyzed the cholesterol efflux in those ACS (within 72 hours of symptoms [ACS1]) and, again, 3 months later (ACS2). As controls, we used normal subjects without coronary artery disease (CAD) and patients with chronic, stable CAD. The 4 groups were matched for age and HDL cholesterol levels. We used a cell-based efflux system in (3)[H]-cholesterol-labeled J774 macrophages to measure cholesterol efflux from apolipoprotein B-depleted plasma. The present study included 20 patients with ACS. Their mean age was 58 ± 9 years, and the mean HDL cholesterol level was 1.06 ± 0.22 mmol/L (41 ± 9 mg/dl). The ACS1 group showed a marked increase in high-sensitivity C-reactive protein and serum amyloid A, reflecting systemic inflammation. The HDL cholesterol efflux capacity was reduced in ACS1 subjects and remained reduced 12 weeks later and in those with stable CAD. These results suggest that the acute presence of serum amyloid A does not account for the impairment of HDL-mediated cholesterol efflux capacity in the ACS1 group. Little correlation was found between HDL cholesterol and HDL efflux capacity (r = 0.233; p = 0.049), suggesting that HDL cholesterol is a poor marker of HDL function in inflammatory states and CAD. In conclusion, our data support the concept that atherogenic HDL dysfunction and impaired efflux occur in ACS, independent of changes in plasma HDL cholesterol and apolipoprotein A-I levels.
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