RNA therapeutics
Antisense apo(a) and apoB inhibitors could cut Lp(a) by up to 80%, a review of Lp(a)-lowering strategies for coronary disease (Drugs 2020)
Original title: Potential of Lipoprotein(a)-Lowering Strategies in Treating Coronary Artery Disease
This review by Gencer and Mach covers strategies to lower Lp(a) for coronary artery disease. The 2019 ESC/EAS dyslipidaemia guidelines recommend measuring Lp(a) at least once in every adult to identify those with levels above 180 mg/dL (430 nmol/L), whose cardiovascular risk approaches that of heterozygous familial hypercholesterolaemia. Niacin, PCSK9 inhibitors and CETP inhibitors lower Lp(a) as a secondary effect; prespecified FOURIER trial analyses found that PCSK9-inhibitor-driven Lp(a) reduction was associated with fewer cardiovascular events. Two antisense oligonucleotides are in development: mipomersen, targeting apolipoprotein B, reduces Lp(a) by 20-50%, and AKCEA-APO(a)-LRX, targeting Lp(a) directly, reduces it by 50-80% and is entering a phase III cardiovascular outcomes trial. The review highlights antisense apo(a) therapy as the most Lp(a)-specific approach nearing definitive outcome evidence.
Original abstract
High levels of lipoprotein(a) [Lp(a)] are considered causal risk factor of cardiovascular disease (CVD), including aortic stenosis. The 2019 ESC/EAC guidelines for the management of dyslipidaemias recommend to measure Lp(a) at least once in each adult person's lifetime to identify those with inherited Lp(a) levels > 180 mg/dL (> 430 nmol/L) who may have a cardiovascular risk similar to heterozygous familial hypercholesterolaemia or in selected patients with a family history of premature CVD and for reclassification in people who are borderline between moderate- and high-risk. Some lipid-lowering agents not specific for Lp(a) have shown to reduce Lp(a) levels (niacin, PCSK9 inhibitors and CETP inhibitors). Prespecified analyses from the FOURIER trial have shown that participants who had reduction in Lp(a) levels with PCSK9 levels had a decreased risk of cardiovascular events. To lower Lp(a), two antisense oligonucleotides are under development targeting apolipoprotein B and apolipoprotein (a). Mipomersen is an oligonucleotide that targets apolipoprotein B, with a potential benefit in reducing Lp(a) by 20-50%. AKCEA-APO(a)-LRX is another antisense oligonucleotide targeting Lp(a) and reducing Lp(a) by 50-80%. A Phase III study with AKCEA-APO(a)-LRX will start in order to evaluate the effect on cardiovascular outcomes.
aortic stenosisguidelinesPCSK9 inhibitionRNA therapeuticstherapy
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.