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Published on: October 12, 2017
Lipoprotein-associated phospholipase A₂ activity and mass in relation to vascular disease and nonvascular mortality
Insights
Associations between lipoprotein-associated phospholipase A₂ (Lp-PLA₂) and coronary events are linked to lipid levels. Other cardiac event associations with Lp-PLA₂ may be due to confounding factors like medication and prior disease.
Area of Science:
- Cardiovascular Research
- Biomarkers
- Clinical Trials
Background:
- Lipoprotein-associated phospholipase A₂ (Lp-PLA₂) is a marker implicated in vascular disease.
- Its independent association with cardiovascular events requires further clarification.
Purpose of the Study:
- To determine if Lp-PLA₂ levels predict vascular disease independently of established risk factors.
- To investigate the relationship between Lp-PLA₂ and various cardiovascular outcomes.
Main Methods:
- Analysis of Lp-PLA₂ activity and mass in 19,037 high-risk individuals from a simvastatin trial.
- 5-year follow-up assessing occlusive coronary events, other cardiac events, ischemic stroke, and nonvascular mortality.
- Statistical adjustments for lipids, apolipoproteins, and other cardiovascular risk factors.
Main Results:
- Lp-PLA₂ activity and mass correlated with lipids and risk factors.
- Association of Lp-PLA₂ with occlusive coronary events became nonsignificant after adjusting for apolipoproteins.
- Associations with other cardiac events were attenuated after adjusting for nonlipid factors and appeared confounded.
- Simvastatin reduced Lp-PLA₂ levels but its efficacy did not vary with baseline Lp-PLA₂.
Conclusions:
- The link between Lp-PLA₂ and occlusive coronary events is significantly influenced by lipid levels.
- Associations of Lp-PLA₂ with other cardiac events may be attributed to confounding by medication and prior vascular disease.
- Lp-PLA₂ may not be an independent predictor of vascular disease in this high-risk population.
Objectives:
To assess whether associations of circulating lipoprotein-associated phospholipase A₂ (Lp-PLA₂) with vascular disease are independent of other risk factors.
Methods:
Lp-PLA₂ activity and mass, lipids and other characteristics were measured at baseline in 19,037 individuals at high risk of vascular disease in a randomized trial of simvastatin with 5-year average follow-up.
Results:
Lp-PLA₂ activity and mass were correlated with each other (r = 0.56), lipids and other vascular risk factors. The moderate association of Lp-PLA₂ activity with occlusive coronary events (n = 2531) in analyses adjusted for nonlipid factors (hazard ratio per 1 SD [HR] 1.11, 95% CI 1.06-1.15) became nonsignificant after further adjustment for apolipoproteins (HR 1.02, 0.97-1.06). Such adjustment also attenuated HRs with Lp-PLA₂ mass from 1.08 (1.03-1.12) to 1.05 (1.01-1.09). By contrast, the HR with apolipoprotein-B100 of 1.15 (1.10-1.19) was only slightly attenuated to 1.14 (1.09-1.19) after further adjustment for apolipoprotein A₁ and Lp-PLA₂. Age- and sex-adjusted HRs for other cardiac events (n = 1007) with either Lp-PLA₂ activity or mass were about 1.20, but HRs reduced after adjustment for nonlipid factors (activity: 1.11, 1.04-1.18; mass: 1.08, 1.02-1.15). Adjusted HRs for ischaemic stroke (n = 900) were weak and nonsignificant and for nonvascular mortality (n = 1040) were 1.01 (0.94-1.09) with activity and 1.12 (1.05-1.19) with mass. Simvastatin reduced Lp-PLA₂ levels by about one-quarter, but simvastatin's vascular protection did not vary with baseline Lp-PLA₂ concentration.
Conclusions:
Associations of Lp-PLA₂ with occlusive coronary events depend considerably on lipid levels, whereas those with other cardiac events appear to reflect confounding from cardiovascular medication and prior vascular disease.
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