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Updated: Feb 10, 2026

High-Density Lipoprotein-Specific Phospholipid Efflux Assay
Published on: September 30, 2025
[Dysfunctional High-Density Lipoproteins: Role in Atherogenesis and Potential Targets for Phospholipid Therapy]
T I Torchovskaya1, V A Kudinov1, T S Zakharova1
1Institute of Biomedical Chemistry.
Insights
Dysfunctional high-density lipoproteins (HDL) contribute to atherosclerosis. Improving HDL quality, particularly phospholipid content, may restore cholesterol efflux and offer a novel therapeutic approach for atherosclerosis.
Area of Science:
- Cardiovascular Research
- Biochemistry
- Atherosclerosis Pathophysiology
Background:
- Increasing research highlights impaired high-density lipoproteins (HDL) properties in atherosclerosis patients.
- HDL's cholesterol efflux capacity from macrophages is crucial for its antiatherogenic function.
- Dysfunctional HDL, characterized by reduced cholesterol acceptor capacity, correlates with atherosclerosis severity.
Purpose of the Study:
- To review cellular cholesterol efflux pathways and methods for detecting dysfunctional HDL.
- To analyze studies investigating HDL composition and mechanisms of HDL property damage.
- To explore potential therapeutic targets for correcting HDL dysfunctionality.
Main Methods:
- Assessment of cellular cholesterol efflux ex vivo.
- Analysis of HDL composition using proteomics and lipidomics.
- Review of clinical studies correlating HDL function with patient outcomes.
Main Results:
- Cholesterol acceptor capacity of HDL is inversely related to atherosclerosis severity, independent of HDL cholesterol levels.
- No definitive targets for correcting HDL dysfunction have been established.
- HDL phospholipids significantly correlate with cellular cholesterol efflux activity.
Conclusions:
- The focus is shifting from HDL quantity to HDL quality (functionality).
- Phospholipid levels are critical for maintaining HDL's cholesterol removal function.
- Phospholipid therapy for atherosclerosis may work by improving HDL quality rather than lowering cholesterol.
Abstract:
In recent years the number of articles on damages of high-density lipoproteins (HDL) properties in patients with atherosclerosis has sharply increased. First, it concerns their ability to accept cholesterol (CH) from macrophages - the basis of antiatherogenic action of HDL. This ability was assessed ex vivo - by activity of cell cholesterol (CH) efflux to HDL or into patient's serum. In many works inverse relationship was shown between CH acceptor capacity of HDL and severity of atherosclerotic disease or frequency of its exacerbations during long-term observation, independent from HDL CH concentration. This led to the emergence of the concept of importance of "not only HDL quantity but also of their quality", i. e. functionality. In this review we consider pathways of cellular CH efflux (mainly mediated by cell proteins), methods used for detection of dysfunctional HDL, and results of relevant studies in various categories of patients. These studies directed to identification of mechanisms of damages of HDL properties by means of analysis of their composition, used various approaches including those of proteomics and lipidomics. However, now there are no proven targets for correction of HDL dysfunctionality. The only factor, that is underlined by many authors, is the significance of HDL phospholipids, which level correlates with activity of cellular CH efflux. This allows to take a fresh look at previously used phospholipid therapy of atherosclerosis. Its mechanism is apparently not lowering of plasma CH, as was previously expected, but the improvement of HDL antiatherogenic properties. For its practical usage it is necessary to elaborate principally novel formulations with high bioavailability of phospholipids - for HDL enrichment by phospholipid and thereby normalization of their ability to remove CH from tissues.
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