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Published on: November 28, 2016
Recombinant LCAT (Lecithin:Cholesterol Acyltransferase) Rescues Defective HDL (High-Density Lipoprotein)-Mediated
Alice Ossoli1, Sara Simonelli1, Marisa Varrenti2,3
1From the Centro E. Grossi Paoletti (A.O., S.S., M.G., A.S., G.F., L.C.), Università degli Studi di Milano, Italy.
Insights
Acute coronary syndrome reduces lecithin:cholesterol acyltransferase (LCAT) levels, impairing high-density lipoprotein (HDL) function. Recombinant LCAT (rhLCAT) can restore HDL
Area of Science:
- Cardiovascular Medicine
- Biochemistry
- Lipid Metabolism
Background:
- Acute coronary syndromes (ACS) are associated with endothelial dysfunction.
- High-density lipoprotein (HDL) plays a crucial role in reverse cholesterol transport and possesses vasoprotective properties.
- The function of HDL in ACS, particularly its ability to promote nitric oxide (NO) production, requires further investigation.
Purpose of the Study:
- To evaluate changes in lecithin:cholesterol acyltransferase (LCAT) concentration and activity in patients with ST-segment-elevation myocardial infarction (STEMI).
- To determine if LCAT alterations correlate with impaired HDL-mediated endothelial nitric oxide (NO) production.
- To assess the potential of recombinant human LCAT (rhLCAT) to restore defective HDL function in STEMI patients.
Main Methods:
- Plasma samples from 30 STEMI patients were collected at multiple time points (admission, 48/72 hours, discharge, 30-day follow-up).
- LCAT concentration and activity were measured.
- HDL's capacity to promote NO production in cultured endothelial cells was assessed, with and without rhLCAT treatment in vitro.
Main Results:
- STEMI patients exhibited significantly decreased plasma LCAT concentration and activity.
- HDL isolated from STEMI patients showed a progressive loss of ability to promote endothelial NO production, correlating with reduced LCAT levels.
- In vitro incubation with rhLCAT restored HDL's capacity to stimulate NO production in endothelial cells.
Conclusions:
- Impaired cholesterol esterification due to reduced LCAT activity is a key factor in HDL dysfunction during acute coronary syndrome.
- rhLCAT demonstrates potential in restoring HDL-mediated NO production, suggesting LCAT as a therapeutic target for improving HDL functionality in ACS.
Abstract:
Objective- Aim of this study was to evaluate changes in LCAT (lecithin:cholesterol acyltransferase) concentration and activity in patients with an acute coronary syndrome, to investigate if these changes are related to the compromised capacity of HDL (high-density lipoprotein) to promote endothelial nitric oxide (NO) production, and to assess if rhLCAT (recombinant human LCAT) can rescue the defective vasoprotective HDL function. Approach and Results- Thirty ST-segment-elevation myocardial infarction (STEMI) patients were enrolled, and plasma was collected at hospital admission, 48 and 72 hours thereafter, at hospital discharge, and at 30-day follow-up. Plasma LCAT concentration and activity were measured and related to the capacity of HDL to promote NO production in cultured endothelial cells. In vitro studies were performed in which STEMI patients' plasma was added with rhLCAT and HDL vasoprotective activity assessed by measuring NO production in endothelial cells. The plasma concentration of the LCAT enzyme significantly decreases during STEMI with a parallel significant reduction in LCAT activity. HDL isolated from STEMI patients progressively lose the capacity to promote NO production by endothelial cells, and the reduction is related to decreased LCAT concentration. In vitro incubation of STEMI patients' plasma with rhLCAT restores HDL ability to promote endothelial NO production, possibly related to significant modification in HDL phospholipid classes. Conclusions- Impairment of cholesterol esterification may be a major factor in the HDL dysfunction observed during acute coronary syndrome. rhLCAT is able to restore HDL-mediated NO production in vitro, suggesting LCAT as potential therapeutic target for restoring HDL functionality in acute coronary syndrome.
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