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Published on: September 26, 2018
Apolipoprotein E-Containing High-Density Lipoprotein is Independently Associated with Atherosclerotic Plaque
Pinfei Ni1, Jiangtao Li1, Youling Duan1
1Center for Clinical and Epidemiologic Research, Beijing Anzhen Hospital, Capital Medical University, Beijing Institute of Heart, Lung and Blood Vessel Diseases, The Key Laboratory of Remodeling-Related Cardiovascular Diseases, Ministry of Education, Beijing Municipal Key Laboratory of Clinical Epidemiology.
Aim:
Mounting evidence suggests apolipoprotein E-containing high-density lipoprotein cholesterol (APOE-HDLC) as an indicator of the anti-atherogenic function of HDLC, but data are lacking on whether or not APOE-HDLC is involved in the development of atherosclerosis in humans. This study was performed to explore whether or not APOE-HDLC is associated with atherosclerotic plaque progression in humans.
Methods:
Among 823 participants 45 to 74 years old who were free of cardiovascular disease, we assessed nuclear magnetic resonance spectroscopy-measured HDL particle concentrations, APOE-HDLC levels and HDLC levels at baseline, and performed carotid ultrasound measurements in surveys conducted in 2002 and again in 2007 after a 5-year interval. The ratio of APOE-HDLC to total HDLC (APOE-HDLC/HDLC ratio) was calculated to assess the relative proportion of APOE-HDLC in total HDLC, given the strong correlation between them.
Results:
The baseline APOE-HDLC/HDLC ratio was significantly associated with the risk of 5-year plaque progression (relative risk [RR] = 0.71; 95% confidence interval [CI] = 0.53-0.95), which is independent of the ratio of HDLC to the HDL particle number (HDLC/P ratio). In particular, participants with an HDLC/P ratio ≥ 44.8 (denoted very high level of cholesterol content per HDLP, a marker of dysfunctional HDL) had a 36% reduced 5-year plaque progression risk (RR = 0.64; 95% CI = 0.43-0.97) if combined with the highest APOE-HDLC/HDLC ratio, as compared with the lowest APOE-HDLC/HDLC ratio.
Conclusions:
These results highlight the potential utility of APOE-containing HDL as a candidate emerging biomarker for the anti-atherosclerotic function of HDL particles.
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