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Updated: Aug 19, 2026

Cell-free Biochemical Fluorometric Enzymatic Assay for High-throughput Measurement of Lipid Peroxidation in High Density Lipoprotein
Published on: October 12, 2017
Current understanding of the metabolism and biological actions of HDL
Arnold von Eckardstein1, Martin Hersberger, Lucia Rohrer
1Institute of Clinical Chemistry, University Hospital Zurich, Rämistrasse 100, CH 8091 Zurich, Switzerland. arnold.voneckardstein@usz.ch
Insights
High-density lipoprotein (HDL) offers protection against atherosclerosis and inflammation-induced organ damage through its diverse functions, including cholesterol efflux and antioxidative properties.
Area of Science:
- Cardiovascular Science
- Immunology
- Molecular Biology
Background:
- Low high-density lipoprotein (HDL) cholesterol is a significant risk factor for coronary heart disease.
- HDL possesses functions beyond lipid transport, impacting inflammation and organ protection.
Purpose of the Study:
- To review novel functions of HDL in protecting against atherosclerosis.
- To summarize HDL's protective roles in inflammation-induced organ damage.
Main Methods:
- Review of scientific literature on HDL interactions and functions.
- Analysis of HDL's role in cellular signaling pathways.
- Examination of HDL's impact on cholesterol efflux and oxidative stress.
Main Results:
- HDL interacts with cellular receptors (e.g., SR-BI, ABC transporters) to induce cholesterol efflux.
- HDL-associated apolipoproteins and enzymes exhibit antioxidative functions.
- HDL signaling activates pathways (e.g., Akt) regulating apoptosis, nitric oxide production, and endothelial cell function.
Conclusions:
- HDL's properties in cytokine modulation, lipid oxidation, and cholesterol transport position it as a protective agent.
- HDL is a potential therapeutic target for atherosclerosis and inflammation-induced organ damage.
Purpose Of Review:
A low concentration of HDL-cholesterol is an important risk factor for coronary heart disease. The purpose of this review is to summarize the novel functions of HDL that may protect not only from atherosclerosis, but also from inflammation-induced organ damage.
Recent Findings:
HDL interacts with several cellular receptors and lipid transporters. The interactions of HDL or apolipoprotein A-I with the scavenger receptor BI or adenosine triphosphate binding cassette transporters A1, G1 and G4 induce cholesterol efflux. Apolipoproteins and enzymes carried by HDL exert antioxidative functions. Some oxidative modifications of apolipoprotein A-I, for example of tyrosine residues, may however interfere with anti-atherosclerotic activities. The interactions of HDL and lysosphingolipids therein with scavenger receptor BI and sphingolipid receptors, respectively, elicit signals activating the protein kinase Akt, which in turn is a regulator of apoptosis in beta, endothelial and smooth muscle cells as well as a regulator of nitric oxide production and adhesion molecule expression in endothelial cells. Other signal transduction cascades are also elicited by HDL, some of which induce cholesterol efflux or activate mitogen-activated protein kinases.
Summary:
Properties with respect to cytokine production, lipid oxidation, cholesterol efflux and reverse cholesterol transport make HDL a protective agent and thus an interesting therapeutic target in atherosclerosis and inflammation-induced organ damage.
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