RNA therapeutics
Nicholls reviews mipomersen, pelacarsen, RNAi agents and muvalaplin as guidelines already push universal Lp(a) measurement (Drugs 2024)
Original title: Therapeutic Potential of Lipoprotein(a) Inhibitors
This review surveys the therapeutic landscape for Lp(a), given mounting evidence for its causal role in atherosclerosis and calcific aortic stenosis and current guidelines advocating universal Lp(a) measurement to guide cardiovascular risk assessment and triage to more intensive preventive therapy. It covers early antisense oligonucleotides (mipomersen, pelacarsen), RNA interference agents (olpasiran, zerlasiran, lepodisiran), and small-molecule inhibitors (muvalaplin), all of which have demonstrated effective Lp(a) lowering with good tolerability in early studies. These agents are now advancing through clinical development specifically to determine whether lowering Lp(a) translates into reduced cardiovascular risk, results the author frames as having the potential to transform the broader approach to cardiovascular disease prevention.
Original abstract
Increasing evidence has implicated lipoprotein(a) [Lp(a)] in the causality of atherosclerosis and calcific aortic stenosis. This has stimulated immense interest in developing novel approaches to integrating Lp(a) into the setting of cardiovascular prevention. Current guidelines advocate universal measurement of Lp(a) levels, with the potential to influence cardiovascular risk assessment and triage of higher-risk patients to use of more intensive preventive therapies. In parallel, considerable activity has been undertaken to develop novel therapeutics with the potential to achieve selective and substantial reductions in Lp(a) levels. Early studies of antisense oligonucleotides (e.g., mipomersen, pelacarsen), RNA interference (e.g., olpasiran, zerlasiran, lepodisiran) and small molecule inhibitors (e.g., muvalaplin) have demonstrated effective Lp(a) lowering and good tolerability. These agents are moving forward in clinical development, in order to determine whether Lp(a) lowering reduces cardiovascular risk. The results of these studies have the potential to transform our approach to the prevention of cardiovascular disease.
oral inhibitionRNA therapeutics
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.