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About one-third of aortic stenosis cases are linked to high Lp(a) and oxidized phospholipids, a review of emerging Lp(a)-targeted therapies (Circ Res 2019)

Original title: Potential Causality and Emerging Medical Therapies for Lipoprotein(a) and Its Associated Oxidized Phospholipids in Calcific Aortic Valve Stenosis

Circ Res · · 7

Tsimikas S

This review by Tsimikas examines the potential causal role of Lp(a) and its associated oxidized phospholipids in calcific aortic valve disease, and emerging medical therapies to address it. Current treatment for advanced or symptomatic aortic stenosis is limited to surgical or percutaneous valve replacement, with no medical therapy yet shown to slow disease progression. Recent studies suggest approximately one-third of aortic stenosis cases are associated with highly elevated Lp(a) and pathways involving procalcifying oxidized phospholipids, which can be carried into valve leaflets by Lp(a) or formed locally from cell membranes, lipoproteins and apoptotic cells. The review summarises clinical evidence for Lp(a)/oxidized phospholipid causality, describes emerging Lp(a)-lowering therapeutic agents, and proposes clinical trial designs to test whether lowering Lp(a) can slow aortic stenosis progression and reduce the need for valve replacement.

Read the paper (DOI)PubMed

Original abstract

The prevalence of calcific aortic valve disease is increasing with aging of the population. Current treatment options for advanced or symptomatic aortic stenosis are limited to traditional surgical or percutaneous aortic valve replacement. Medical therapies that impact the progression of calcific aortic valve disease do not currently exist. New pathophysiological insights suggest that the processes leading to calcific aortic valve disease are metabolically active for many years before and during the clinical expression of disease. The identification of genetic and potentially causal mediators of calcific aortic valve disease allows opportunities for therapies that may slow progression to the point where aortic valve replacement can be avoided. Recent studies suggest that approximately one-third of aortic stenosis cases are associated with highly elevated lipoprotein(a) [Lp(a)] and pathways related to the metabolism of procalcifying oxidized phospholipids. Oxidized phospholipids can be carried by Lp(a) into valve leaflets but can also be formed in situ from cell membranes, lipoproteins, and apoptotic cells. This review will summarize the clinical data implicating the potential causality of Lp(a)/oxidized phospholipids, describe emerging therapeutic agents, and propose clinical trial designs to test the hypothesis that lowering Lp(a) will reduce progression aortic stenosis and the need for aortic valve replacement.

aortic stenosismechanismsRNA therapeutics

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