RNA therapeutics
Review asks whether RNA therapeutics can finally deliver effective Lp(a) lowering where prior drug classes failed (Cardiol Ther 2024)
Original title: Targeting Lipoprotein(a): Can RNA Therapeutics Provide the Next Step in the Prevention of Cardiovascular Disease?
This comprehensive review examines Lp(a) as a genetically determined, LDL-like particle with covalently linked apolipoprotein A and apolipoprotein B-100, whose pro-thrombotic, pro-inflammatory and pro-atherogenic properties are shaped by apo(a) isoform size, with shorter isoforms producing more particles. With no approved pharmacological therapy yet effectively lowering Lp(a), the authors detail RNA-based drugs in clinical trials targeting apo(a) expression, including pelacarsen, olpasiran, SLN360, and lepodisiran, and discuss the recent advances and remaining challenges facing RNA therapeutics specifically designed to reduce Lp(a) and, by extension, the risk of coronary heart disease, stroke and heart failure that elevated Lp(a) confers.
Original abstract
Numerous genetic and epidemiologic studies have demonstrated an association between elevated levels of lipoprotein(a) (Lp[a]) and cardiovascular disease. As a result, lowering Lp(a) levels is widely recognized as a promising strategy for reducing the risk of new-onset coronary heart disease, stroke, and heart failure. Lp(a) consists of a low-density lipoprotein-like particle with covalently linked apolipoprotein A (apo[a]) and apolipoprotein B-100, which explains its pro-thrombotic, pro-inflammatory, and pro-atherogenic properties. Lp(a) serum concentrations are genetically determined by the apo(a) isoform, with shorter isoforms having a higher rate of particle synthesis. To date, there are no approved pharmacological therapies that effectively reduce Lp(a) levels. Promising treatment approaches targeting apo(a) expression include RNA-based drugs such as pelacarsen, olpasiran, SLN360, and lepodisiran, which are currently in clinical trials. In this comprehensive review, we provide a detailed overview of RNA-based therapeutic approaches and discuss the recent advances and challenges of RNA therapeutics specifically designed to reduce Lp(a) levels and thus the risk of cardiovascular disease.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.