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Published on: November 10, 2017
High-density lipoprotein particle subclass heterogeneity and incident coronary heart disease
Akintunde O Akinkuolie1, Nina P Paynter, Latha Padmanabhan
1Divisions of Preventive Medicine and Cardiovascular Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA.
Insights
Higher levels of large high-density lipoprotein (HDL) particles are linked to reduced coronary heart disease (CHD) risk. Conversely, small HDL particles may increase CHD risk, highlighting subclass importance for cardiovascular health.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Preventive Cardiology
Background:
- Elevating high-density lipoprotein (HDL) cholesterol is a strategy for cardiovascular disease prevention.
- HDL particles are heterogeneous, with varying antiatherogenic potential.
- Understanding HDL subclasses is crucial for targeted therapies.
Purpose of the Study:
- To prospectively evaluate the association between HDL subclasses and incident coronary heart disease (CHD).
- To investigate the role of HDL particle heterogeneity in cardiovascular risk.
- To inform the development of HDL-modulating therapies.
Main Methods:
- Prospective cohort study of 26,332 initially healthy women.
- HDL particle concentrations measured by nuclear magnetic resonance spectroscopy into 5 subclasses.
- Incident CHD ascertained over a median follow-up of 17 years.
Main Results:
- Inverse associations with incident CHD for very large, large, and medium HDL subclasses.
- Positive associations with incident CHD for small and very small HDL subclasses.
- After adjusting for metabolic factors, inverse associations remained for large, medium, and small HDL subclasses.
Conclusions:
- HDL particle subclass composition is associated with incident CHD risk.
- HDL subclass differences may be relevant for developing novel HDL-modulating therapies.
- Targeting specific HDL subclasses could enhance cardiovascular disease prevention strategies.
Background:
Raising the cholesterol of high-density lipoprotein (HDL) particles is targeted as a cardiovascular disease prevention strategy. However, HDL particles are heterogeneous in composition and structure, which may relate to differences in antiatherogenic potential. We prospectively evaluated the association of HDL subclasses, defined by a recently proposed nomenclature, with incident coronary heart disease (CHD).
Methods And Results:
Baseline HDL particle concentrations were measured by nuclear magnetic resonance spectroscopy and categorized into 5 subclasses (very large, large, medium, small, and very small) among 26 332 initially healthy women. During a median follow-up of 17 years, 969 cases of incident CHD (myocardial infarction, revascularization, and CHD death) were ascertained. In Cox models that adjusted for age, race/ethnicity, blood pressure, smoking, postmenopausal status, and hormone therapy, associations with incident CHD were inverse (P trend<0.0001) for concentrations of very large (hazard ratio for top versus bottom quartile, 0.49; 95% confidence interval, 0.41-0.60), large (0.54; 0.45-0.64), and medium (0.69; 0.58-0.83) HDL subclasses. Conversely, hazard ratios (95% confidence intervals) for small and very small HDL were 1.22 (1.01-1.46; P trend=0.08) and 1.67 (1.39-2.02; P trend<0.0001), respectively. However, after additionally adjusting for metabolic and lipoprotein variables, associations for the spectrum of large, medium, and small HDL subclasses were inverse (P trend<0.05 for large and small and 0.07 for medium), whereas subclasses at either end of the spectrum were not associated with CHD (P trend=0.97 for very large and 0.21 for very small HDL).
Conclusions:
In this prospective study, associations with incident CHD differed by HDL particle subclass, which may be relevant for developing HDL-modulating therapies.
Clinical Trial Registration:
URL: http://www.clinicaltrials.gov. Unique identifier: NCT00000479.
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