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Elevated Lp(a) and oxidized phospholipids predict faster aortic stenosis progression and need for valve replacement, an ASTRONOMER substudy of 220 patients (J Am Coll Cardiol 2015)

Original title: Oxidized Phospholipids, Lipoprotein(a), and Progression of Calcific Aortic Valve Stenosis

J Am Coll Cardiol · · 8

Capoulade R, Chan KL, Yeang C, Mathieu P, Bossé Y, Dumesnil JG, Tam JW, Teo KK, Mahmut A, Yang X, Witztum JL, Arsenault BJ et al.

This substudy of the ASTRONOMER trial measured Lp(a) and oxidized phospholipids on apoB-100 (OxPL-apoB) in 220 patients with mild-to-moderate aortic stenosis (AS), followed for 3.5 years, to test their association with AS progression and related events. AS progressed faster in the top Lp(a) tertile (+0.26 vs +0.17 m/s/year, P=0.005) and top OxPL-apoB tertile (+0.26 vs +0.17 m/s/year, P=0.01), with both remaining independent predictors of faster progression after multivariable adjustment. After adjusting for age, sex and baseline severity, patients in the top tertile of Lp(a) or OxPL-apoB had increased risk of aortic valve replacement and cardiac death. The findings support Lp(a) driving AS progression through its associated oxidized phospholipids, providing a rationale for trials of Lp(a)- and OxPL-apoB-lowering therapies in AS.

Read the paper (DOI)PubMed

Original abstract

Background: Elevated lipoprotein(a) (Lp[a]) is associated with aortic stenosis (AS). Oxidized phospholipids (OxPL) are key mediators of calcification in valvular cells and are carried by Lp(a).

Objectives: This study sought to determine whether Lp(a) and OxPL are associated with hemodynamic progression of AS and AS-related events.

Methods: OxPL on apolipoprotein B-100 (OxPL-apoB), which reflects the biological activity of Lp(a), and Lp(a) levels were measured in 220 patients with mild-to-moderate AS. The primary endpoint was the progression rate of AS, measured by the annualized increase in peak aortic jet velocity in m/s/year by Doppler echocardiography; the secondary endpoint was need for aortic valve replacement and cardiac death during 3.5 ± 1.2 years of follow-up.

Results: AS progression was faster in patients in the top tertiles of Lp(a) (peak aortic jet velocity: +0.26 ± 0.26 vs. +0.17 ± 0.21 m/s/year; p = 0.005) and OxPL-apoB (+0.26 ± 0.26 m/s/year vs. +0.17 ± 0.21 m/s/year; p = 0.01). After multivariable adjustment, elevated Lp(a) or OxPL-apoB levels remained independent predictors of faster AS progression. After adjustment for age, sex, and baseline AS severity, patients in the top tertile of Lp(a) or OxPL-apoB had increased risk of aortic valve replacement and cardiac death.

Conclusions: Elevated Lp(a) and OxPL-apoB levels are associated with faster AS progression and need for aortic valve replacement. These findings support the hypothesis that Lp(a) mediates AS progression through its associated OxPL and provide a rationale for randomized trials of Lp(a)-lowering and OxPL-apoB-lowering therapies in AS. (Aortic Stenosis Progression Observation: Measuring Effects of Rosuvastatin [ASTRONOMER]; NCT00800800).

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Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.