RNA therapeutics
ISIS-APO(a)Rx cuts Lp(a) by up to 89% in a phase 1 trial, the first drug specifically designed to lower Lp(a), a review of antisense inhibition of apo(a) (J Lipid Res 2016)
Original title: Antisense inhibition of apolipoprotein (a) to lower plasma lipoprotein (a) levels in humans
This review by Graham, Viney, Crooke and Tsimikas covers antisense oligonucleotide (ASO) inhibition of apolipoprotein(a) [apo(a)] to lower Lp(a). Lp(a) above 50 mg/dL is highly prevalent, affecting 20% of the general population, and is overrepresented in patients with cardiovascular disease and aortic stenosis, yet no effective Lp(a)-specific therapy previously existed. In apo(a) transgenic mice, an apo(a) ASO reduced plasma apo(a)/Lp(a) and associated oxidized phospholipid levels by 86% and 93%, and in cynomolgus monkeys, the second-generation ASO ISIS-APO(a)Rx reduced hepatic apo(a) mRNA expression and plasma Lp(a) by more than 80%. In a phase 1 study in healthy volunteers, ISIS-APO(a)Rx reduced Lp(a) and oxidized phospholipid levels by up to 89% and 93%, respectively, with minimal effects on other lipoproteins. The authors present ISIS-APO(a)Rx as the first specific, potent Lp(a)-lowering drug in clinical development, with potential to reduce cardiovascular events and aortic stenosis progression.
Original abstract
Epidemiological, genetic association, and Mendelian randomization studies have provided strong evidence that lipoprotein (a) [Lp(a)] is an independent causal risk factor for CVD, including myocardial infarction, stroke, peripheral arterial disease, and calcific aortic valve stenosis. Lp(a) levels >50 mg/dl are highly prevalent (20% of the general population) and are overrepresented in patients with CVD and aortic stenosis. These data support the notion that Lp(a) should be a target of therapy for CVD event reduction and to reduce progression of aortic stenosis. However, effective therapies to specifically reduce plasma Lp(a) levels are lacking. Recent animal and human studies have shown that Lp(a) can be specifically targeted with second generation antisense oligonucleotides (ASOs) that inhibit apo(a) mRNA translation. In apo(a) transgenic mice, an apo(a) ASO reduced plasma apo(a)/Lp(a) levels and their associated oxidized phospholipid (OxPL) levels by 86 and 93%, respectively. In cynomolgus monkeys, a second generation apo(a) ASO, ISIS-APO(a)Rx, significantly reduced hepatic apo(a) mRNA expression and plasma Lp(a) levels by >80%. Finally, in a phase I study in normal volunteers, ISIS-APO(a)Rx ASO reduced Lp(a) levels and their associated OxPL levels up to 89 and 93%, respectively, with minimal effects on other lipoproteins. ISIS-APO(a)Rx represents the first specific and potent drug in clinical development to lower Lp(a) levels and may be beneficial in reducing CVD events and progression of calcific aortic valve stenosis.
aortic stenosisphase 1RNA therapeutics
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.