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Elevated Lp(a) drives residual cardiovascular risk even at optimal LDL-C, but proof that lowering it helps still awaits trial data, a review (J Cardiovasc Med 2021)

Original title: Lipoprotein(a): a genetic marker for cardiovascular disease and target for emerging therapies

J Cardiovasc Med (Hagerstown) · · 5

Cesaro A, Schiavo A, Moscarella E, Coletta S, Conte M, Gragnano F, Fimiani F, Monda E, Caiazza M, Limongelli G, D'Erasmo L, Riccio C et al.

This review examines Lp(a) as a genetic marker of cardiovascular disease and target for emerging therapies. Lp(a) proatherogenic, LDL-like properties and prothrombotic, plasminogen-like activity of apolipoprotein(a) underpin its causal association with atherosclerotic disease, particularly in young individuals given its strong genetic determination. Elevated Lp(a) may significantly contribute to residual cardiovascular risk in coronary artery disease patients who have achieved optimal LDL cholesterol levels, though whether lowering Lp(a) itself reduces cardiovascular events in primary or secondary prevention still awaits confirmation from randomised trials. No Lp(a)-specific lowering agent is currently approved, and existing lipid-lowering drugs have limited effect. The authors provide an updated overview of current Lp(a) evidence and the therapeutic strategies now under investigation.

Read the paper (DOI)PubMed

Original abstract

Lipoprotein(a) [Lp(a)] is an established cardiovascular risk factor, and growing evidence indicates its causal association with atherosclerotic disease because of the proatherogenic low-density lipoprotein (LDL)-like properties and the prothrombotic plasminogen-like activity of apolipoprotein(a) [apo(a)]. As genetics significantly influences its plasma concentration, Lp(a) is considered an inherited risk factor of atherosclerotic cardiovascular disease (ASCVD), especially in young individuals. Moreover, it has been suggested that elevated Lp(a) may significantly contribute to residual cardiovascular risk in patients with coronary artery disease and optimal LDL-C levels. Nonetheless, the fascinating hypothesis that lowering Lp(a) could reduce the risk of cardiovascular events - in primary or secondary prevention - still needs to be demonstrated by randomized clinical trials. To date, no specific Lp(a)-lowering agent has been approved for reducing the lipoprotein levels, and current lipid-lowering drugs have limited effects. In the future, emerging therapies targeting Lp(a) may offer the possibility to further investigate the relation between Lp(a) levels and cardiovascular outcomes in randomized controlled trials, ultimately leading to a new era in cardiovascular prevention. In this review, we aim to provide an updated overview of current evidence on Lp(a) as well as currently investigated therapeutic strategies that specifically address the reduction of the lipoprotein.

geneticsrisk prediction

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