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Lp(a) clinical utility remains undefined despite mounting evidence for its causal role in atherosclerosis and aortic valve disease, a review of remaining questions (Curr Opin Lipidol 2018)

Original title: The journey towards understanding lipoprotein(a) and cardiovascular disease risk: are we there yet?

Curr Opin Lipidol · · 5

Boffa MB, Koschinsky ML

This review by Boffa and Koschinsky examines remaining challenges in understanding Lp(a) biological actions and clinical significance. Evidence continues to mount for Lp(a) role in mediating atherothrombotic and calcific aortic valve disease risk, but substantial uncertainty remains regarding Lp(a) biosynthesis, catabolism, mechanisms of action, and the significance of its isoform size heterogeneity, and Lp(a) precise clinical utility remains undefined. Larger studies continue to refine Lp(a) contribution to cardiovascular risk, with particular scrutiny on its emerging role in calcific aortic valve disease, and mechanistic studies point to Lp(a)-associated oxidized phospholipids as a common driver across atherosclerosis and valve disease. The authors highlight that demonstrating a clinical benefit from lowering Lp(a), now being tested as effective Lp(a)-lowering therapies enter clinical trials, remains the most important open question.

Read the paper (DOI)PubMed

Original abstract

Purpose Of Review: Evidence continues to mount for an important role for elevated plasma concentrations of lipoprotein(a) [Lp(a)] in mediating risk of atherothrombotic and calcific aortic valve diseases. However, there continues to be great uncertainty regarding some basic aspects of Lp(a) biology including its biosynthesis and catabolism, its mechanisms of action in health and disease, and the significance of its isoform size heterogeneity. Moreover, the precise utility of Lp(a) in the clinic remains undefined.

Recent Findings: The contribution of elevated Lp(a) to cardiovascular risk continues to be more precisely defined by larger studies. In particular, the emerging role of Lp(a) as a potent risk factor for calcific aortic valve disease has received much scrutiny. Mechanistic studies have identified commonalities underlying the impact of Lp(a) on atherosclerosis and aortic valve disease, most notably related to Lp(a)-associated oxidized phospholipids. The mechanisms governing Lp(a) concentrations remain a source of considerable dispute.

Summary: This article highlights some key remaining challenges in understanding Lp(a) actions and clinical significance. Most important in this regard is demonstration of a beneficial effect of lowering Lp(a), a development that is on the horizon as effective Lp(a)-lowering therapies are being tested in the clinic.

aortic stenosismechanismsRNA therapeutics

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