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Cell-free Biochemical Fluorometric Enzymatic Assay for High-throughput Measurement of Lipid Peroxidation in High Density Lipoprotein
Published on: October 12, 2017
Dual effect of hypochlorite in the modification of high density lipoproteins
Angela Pirillo1, Patrizia Uboldi, Alberico L Catapano
1Department of Pharmacological Sciences, University of Milan, Milan, Italy. angela.pirillo@guest.unimi.it
Insights
Low concentrations of hypochlorous acid (HOCl) enhance HDL function in reverse cholesterol transport and retain anti-inflammatory properties. Higher HOCl levels, however, impair HDL
Area of Science:
- Biochemistry
- Cardiovascular Research
- Immunology
Background:
- High-density lipoprotein (HDL) cholesterol is inversely linked to cardiovascular disease risk.
- HDL's atheroprotective function depends on its quality, not just quantity.
- HDL can transition from anti-atherogenic to pro-atherogenic states through modification.
Purpose of the Study:
- To investigate the impact of hypochlorous acid (HOCl) modification on HDL function.
- To determine how different HOCl concentrations affect HDL's cholesterol transport and anti-inflammatory properties.
Main Methods:
- Modification of HDL with varying concentrations of HOCl.
- Analysis of HDL particle migration (pre-β formation).
- Assessment of HDL's role in cholesterol efflux and anti-inflammatory activity.
Main Results:
- Low HOCl concentrations induced pre-β-migrating HDL particles, enhancing cholesterol removal.
- Low HOCl concentrations preserved HDL's anti-inflammatory activity.
- High HOCl concentrations abolished pre-β particles and diminished anti-inflammatory effects.
Conclusions:
- Early inflammation (low HOCl) may enhance HDL's cholesterol-scavenging ability while maintaining anti-inflammatory functions.
- Late-stage or acute inflammation (high HOCl) severely compromises HDL's protective functions against atherosclerosis and inflammation.
Abstract:
HDL-cholesterol levels are inversely correlated to the risk of cardiovascular disease. In recent years the concept that not only the quantity, but also the quality of HDL is related to their atheroprotective function has gained momentum. In fact several studies have showed that HDL can shift their properties from anti-atherogenic to pro-atherogenic upon chemical or enzymatic "modification". However, not all kind of modifications affect the antiatherogenic properties of HDL. For example, tyrosylation of HDL improves its ability to remove cholesterol from cultured cells and inhibits mice atherosclerotic lesion formation; oxidation of HDL(3) with 15-lipoxygenase or with copper ions for short time induce the formation of pre-β-migrating particles that are highly effective as cholesterol acceptors from lipid laden cells. Myeloperoxidase modifies HDL and apoA-I and reduces their ability to promote ABCA1-mediated cholesterol efflux. In the present study we show that modification with low concentration HOCl (a myeloperoxidase product) induces the formation of pre-β-migrating particles, thus improving the function of HDL in the reverse cholesterol transport, without affecting the anti-inflammatory activity. At higher HOCl concentration, pre-β-migrating particles were not detectable and the anti-inflammatory properties of HDL were lost. These findings suggest that during early phases of inflammation, when a low HOCl concentration is generated, changes in HDL occur that increase their ability to remove cholesterol and sparing anti-inflammatory properties; later during acute inflammation, when higher HOCl concentration are present changes in HDL occur that severely decrease their ability to remove cholesterol from macrophages and to protect endothelial cells from pro-inflammatory stimuli.
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