lp-a.org

RNA therapeutics

Olpasiran and pelacarsen cut Lp(a) by 85-90%, with phase 3 outcome trials testing whether this prevents aortic stenosis progression (Int J Mol Sci 2023)

Original title: Lp(a) in the Pathogenesis of Aortic Stenosis and Approach to Therapy with Antisense Oligonucleotides or Short Interfering RNA

Int J Mol Sci · · 7

Di Costanzo A, Indolfi C, Franzone A, Esposito G, Spaccarotella CAM

This review examines Lp(a) causal role in the pathogenesis of aortic stenosis, a fibrocalcific condition affecting about 6% of the elderly population for which no medical therapy currently slows progression. Since aortic stenosis shares pathogenic mechanisms with atherosclerosis, drugs targeting LDL, Lp(a), inflammation and calcification are being tested, including PCSK9 inhibitors, which may slow aortic stenosis progression and reduce the need for valve replacement. Antisense oligonucleotide and siRNA therapies, olpasiran and pelacarsen, reduce circulating Lp(a) by 85% to 90%, and phase 3 trials are underway to test whether this translates into reduced cardiovascular death, non-fatal myocardial injury, and non-fatal stroke in patients with elevated Lp(a) and cardiovascular disease. If successful, further trials would be needed to confirm whether Lp(a) lowering specifically prevents or slows aortic stenosis.

Read the paper (DOI)PubMed

Original abstract

To date, no medical therapy can slow the progression of aortic stenosis. Fibrocalcific stenosis is the most frequent form in the general population and affects about 6% of the elderly population. Over the years, diagnosis has evolved thanks to echocardiography and computed tomography assessments. The application of artificial intelligence to electrocardiography could further implement early diagnosis. Patients with severe aortic stenosis, especially symptomatic patients, have valve repair as their only therapeutic option by surgical or percutaneous technique (TAVI). The discovery that the pathogenetic mechanism of aortic stenosis is similar to the atherosclerosis process has made it possible to evaluate the hypothesis of medical therapy for aortic stenosis. Several drugs have been tested to reduce low-density lipoprotein (LDL) and lipoprotein(a) (Lp(a)) levels, inflammation, and calcification. The Proprotein Convertase Subtilisin/Kexin type 9 inhibitors (PCSK9-i) could decrease the progression of aortic stenosis and the requirement for valve implantation. Great interest is related to circulating Lp(a) levels as causally linked to degenerative aortic stenosis. New therapies with ASO (antisense oligonucleotides) and siRNA (small interfering RNA) are currently being tested. Olpasiran and pelacarsen reduce circulating Lp(a) levels by 85-90%. Phase 3 studies are underway to evaluate the effect of these drugs on cardiovascular events (cardiovascular death, non-fatal myocardial injury, and non-fatal stroke) in patients with elevated Lp(a) and CVD (cardiovascular diseases). For instance, if a reduction in Lp(a) levels is associated with aortic stenosis prevention or progression, further prospective clinical trials are warranted to confirm this observation in this high-risk population.

aortic stenosisolpasiranpelacarsenRNA therapeutics

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