HDL Phospholipids, but Not Cholesterol Distinguish Acute Coronary Syndrome From Stable Coronary Artery Disease
Peter J Meikle1, Melissa F Formosa1, Natalie A Mellett1
11 Baker Heart and Diabetes Institute Melbourne Australia.
Insights
Biologically active lipids, particularly lysophospholipids in high-density lipoprotein, differ between acute coronary syndromes (ACS) and stable coronary artery disease. Lipidomics offers superior discrimination for ACS compared to traditional risk factors.
Area of Science:
- Cardiovascular Medicine
- Lipidomics
- Biochemistry
Background:
- Acute coronary syndromes (ACS) represent a significant cause of death and illness.
- The role of specific lipid species and their carriers in ACS plaque instability remains unclear.
Purpose of the Study:
- To identify and characterize lipid species within lipoprotein particles that distinguish ACS from stable coronary artery disease.
- To evaluate the discriminatory power of lipidomics compared to conventional risk factors in ACS.
Main Methods:
- Lipidomic analysis of 533 lipid species using liquid chromatography-electrospray ionization/tandem mass spectrometry.
- Analysis of whole plasma and lipoprotein subfractions (apolipoprotein A1 and apolipoprotein B).
- Comparison of lipid profiles in 130 individuals with ACS (n=47) and stable coronary artery disease (n=83).
Main Results:
- ACS plasma showed lower levels of phospholipids, including lysophospholipids and plasmalogens, compared to stable coronary artery disease.
- Most differentiating lipid species were found within high-density lipoprotein (113 lipids) and plasma (73 lipids).
- Lipidomic models, especially those using plasma lipids, significantly improved discrimination between ACS and stable groups (C-statistic 0.80) over conventional risk factors.
Conclusions:
- Low concentrations of specific lysophospholipids within high-density lipoprotein are associated with ACS.
- Lipidomics analysis of plasma or lipoprotein fractions is more effective than conventional risk factors for differentiating ACS.
- These findings suggest novel avenues for ACS prevention, prognosis, and therapy.
Abstract:
Background Although acute coronary syndromes (ACS) are a major cause of morbidity and mortality, relationships with biologically active lipid species potentially associated with plaque disruption/erosion in the context of their lipoprotein carriers are indeterminate. The aim was to characterize lipid species within lipoprotein particles which differentiate ACS from stable coronary artery disease. Methods and Results Venous blood was obtained from 130 individuals with de novo presentation of an ACS (n=47) or stable coronary artery disease (n=83) before coronary catheterization. Lipidomic measurements (533 lipid species; liquid chromatography electrospray ionization/tandem mass spectrometry) were performed on whole plasma as well as 2 lipoprotein subfractions: apolipoprotein A1 (apolipoprotein A, high-density lipoprotein) and apolipoprotein B. Compared with stable coronary artery disease, ACS plasma was lower in phospholipids including lyso species and plasmalogens, with the majority of lipid species differing in abundance located within high-density lipoprotein (high-density lipoprotein, 113 lipids; plasma, 73 lipids). Models including plasma lipid species alone improved discrimination between the stable and ACS groups by 0.16 (C-statistic) compared with conventional risk factors. Models utilizing lipid species either in plasma or within lipoprotein fractions had a similar ability to discriminate groups, though the C-statistic was highest for plasma lipid species (0.80; 95% CI, 0.75-0.86). Conclusions Multiple lysophospholipids, but not cholesterol, featured among the lipids which were present at low concentration within high-density lipoprotein of those presenting with ACS. Lipidomics, when applied to either whole plasma or lipoprotein fractions, was superior to conventional risk factors in discriminating ACS from stable coronary artery disease. These associative mechanistic insights elucidate potential new preventive, prognostic, and therapeutic avenues for ACS which require investigation in prospective analyses.
More Related Videos
18:11A Research Method For Detecting Transient Myocardial Ischemia In Patients With Suspected Acute Coronary Syndrome Using Continuous ST-segment Analysis
Published on: December 28, 2012
06:16Signal Acquisition, Score Interpretation, and Economics of a Non-Invasive Point-of-Care Test for Coronary Artery Disease
Published on: August 9, 2024
Related Concept Videos
Acute Coronary Syndrome I: Introduction
Acute Coronary Syndrome V: Nursing Management
Coronary Artery Disease I: Introduction
Coronary Artery Disease II: Pathophysiology
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations
Acute Coronary Syndrome III: Diagnostic Studies
