Epidemiology
PROMISE trial analysis of 1,815 patients finds elevated Lp(a) predicts obstructive coronary disease regardless of LDL-C control, but not high-risk plaque (Am J Cardiol 2024)
Original title: Association Between Lipoprotein(a) and Obstructive Coronary Artery Disease and High-Risk Plaque: Insights From the PROMISE Trial
This secondary analysis of the PROMISE trial examined 1,815 primary-prevention patients with stable chest pain who underwent coronary CT angiography and had Lp(a) measured (elevated defined as 50 mg/100 mL or above). Patients with elevated Lp(a) were more often women and Black than those with lower Lp(a). Elevated Lp(a) was independently associated with 50% or greater coronary stenosis (odds ratio 1.57, 95% CI 1.14-2.15, p = 0.005) and 70% or greater stenosis (odds ratio 2.05, 95% CI 1.34-3.11, p = 0.0008), and this relationship did not differ by LDL-C above versus below 100 mg/100 mL (interaction p > 0.4). However, elevated Lp(a) was not independently associated with high-risk plaque once obstructive coronary artery disease was accounted for. The findings show Lp(a) predicts obstructive coronary disease independent of LDL-C control in primary prevention, underscoring residual atherosclerotic risk even when LDL-C is well managed.
Original abstract
The role of lipoprotein (a) (Lp[a]) in the development of obstructive coronary artery disease (CAD) and high-risk plaque (HRP) in primary prevention patients with stable chest pain is unknown. We sought to evaluate the relation of Lp(a), independent of low-density lipoprotein cholesterol (LDL-C), with the presence of obstructive CAD and HRP to improve understanding of the residual risk imparted by Lp(a) on CAD. We performed a secondary analysis in Prospective Multicenter Imaging Study for Evaluation of Chest Pain (PROMISE) Trial participants who had coronary computed tomographic angiography (CTA) performed and Lp(a) data available. Lp(a) concentration was analyzed as a binary variable, with elevated Lp(a) defined as ≥50 mg/100 ml. "Stenosis ≥50%" was defined as ≥50% coronary artery stenosis in any epicardial vessel, and "stenosis ≥70%" was defined as ≥70% coronary artery stenosis in any epicardial vessel and/or ≥50% left main coronary artery stenosis. HRP was defined as presence of plaque on CTA imaging with evidence of positive remodeling, low computed tomography attenuation, or napkin-ring sign. Multivariate logistic regression models were constructed to evaluate the association between Lp(a) and the outcomes of obstructive CAD and HRP stratified by LDL-C ≥100 versus <100 mg/100 ml. Of the 1,815 patients who underwent CTA and had Lp(a) data available, those with elevated Lp(a) were more commonly women and Black than those with lower Lp(a). Elevated Lp(a) was associated with stenosis ≥50% (odds ratio 1.57, 95% confidence interval 1.14 to 2.15, p = 0.005) and stenosis ≥70% (odds ratio 2.05, 95% confidence interval 1.34 to 3.11, p = 0.0008) in the multivariate models, and this relation was not modified by LDL-C ≥100 versus <100 mg/100 ml (interaction p >0.4). Elevated Lp(a) was not associated with HRP when adjusted for obstructive CAD. This study of patients without known CAD found that elevated Lp(a) ≥50 mg/100 ml was independently associated with the presence of obstructive CAD regardless of controlled versus uncontrolled LDL-C but was not independently associated with HRP when stenosis ≥50% or ≥70% was accounted for. Further research is warranted to delineate the role of Lp(a) in the residual risk for atherosclerotic cardiovascular disease that patients may have despite optimal LDL-C lowering.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.