RNA therapeutics
Lp(a)-targeted RNA therapies cut levels by 80-100%, but outcome data are still pending, Korean review (Korean Circ J 2026)
Original title: The Emerging Lipid Risk: Lipoprotein(a)
Review of lipoprotein(a) as an accepted causal risk factor for atherosclerotic cardiovascular disease and aortic stenosis, noting inter-ethnic differences even though 50 mg/dL or more is commonly used as the elevated-risk threshold. Lp(a) is largely genetically determined, chiefly by kringle IV type 2 repeat variation, and its apo(a) component competes with plasminogen to impair fibrinolysis while carrying oxidised phospholipids that promote oxidative stress, atherosclerosis and valve calcification. Trials of RNA-targeting therapeutics, including the antisense oligonucleotide pelacarsen, siRNAs olpasiran, lepodisiran and zerlasiran, and the small molecule muvalaplin, are under way; depending on the agent and dose, these lower Lp(a) by 80-100% versus control, though clinical outcome results have not yet been reported.
Original abstract
Based on epidemiological and genetic studies in recent decades, lipoprotein(a) (Lp(a)) has been accepted as a causal risk factor for atherosclerotic cardiovascular disease and aortic stenosis. Although inter-ethnic differences exist, Lp(a) level ≥50 mg/dL is commonly reported to indicate elevated cardiovascular risk. Blood Lp(a) levels are largely determined based on genetic background, and the kringle IV type 2 repeat variant is a major factor. Lp(a) is structurally similar to low-density lipoprotein (LDL) but also contains apolipoprotein(a) (apo(a)), which includes kringle domains associated with diverse effects depending on particles and individuals. The LDL-like property of Lp(a) and effect of apo(a) on vascular cells can promote atherosclerosis. Apo(a) competes with plasminogen and can inhibit the role of plasmin during fibrinolysis. Furthermore, oxidized phospholipids on apo(a) may induce oxidative stress to enhance atherosclerosis and can affect valve calcification. Trials on new therapeutics targeting Lp(a) RNA, including antisense oligonucleotide (e.g., pelacarsen), siRNAs (e.g., olpasiran, lepodisiran, and zerlasiran), and small molecules (e.g., muvalaplin), are under way. Depending on the study or dose, these agents lowered Lp(a) levels by 80-100% compared with the control; however, results of clinical outcomes have yet to be reported.
ancestryolpasiranpelacarsenRNA therapeutics
Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.