lp-a.org

RNA therapeutics

Lp(a) above 50 mg/dL raises cardiovascular risk, above 180 mg/dL matches familial hypercholesterolaemia, a review 57 years after Lp(a) discovery (Prog Cardiovasc Dis 2020)

Original title: What do we know about the role of lipoprotein(a) in atherogenesis 57 years after its discovery?

Prog Cardiovasc Dis · · 6

Cybulska B, Kłosiewicz-Latoszek L, Penson PE, Banach M

This review by Cybulska, Kłosiewicz-Latoszek, Penson and Banach revisits lipoprotein(a) [Lp(a)] 57 years after its discovery. Elevated Lp(a) is strongly linked to atherosclerotic cardiovascular disease and aortic stenosis in both observational and genetic studies; the authors recommend everyone have Lp(a) measured once in their lifetime. Cardiovascular risk rises when Lp(a) exceeds 50 mg/dL (≥100 mmol/L), and levels above 180 mg/dL (≥430 mmol/L) confer cardiovascular risk similar to familial hypercholesterolaemia. Niacin lowers Lp(a) potently but is no longer recommended, since it fails to improve clinical outcomes and carries severe adverse effects. Post hoc analyses of PCSK9 inhibitor trials show clinical benefit from Lp(a) lowering independent of LDL cholesterol reduction. Apheresis effectively lowers Lp(a) and reduces cardiovascular risk but is reserved for patients with very high Lp(a) and progressive disease; antisense oligonucleotide and siRNA approaches targeting apolipoprotein(a) synthesis are in development.

Read the paper (DOI)PubMed

Original abstract

Elevated circulating concentrations of lipoprotein(a) [Lp(a)] is strongly associated with increased risk of atherosclerotic cardiovascular disease (CVD) and degenerative aortic stenosis. This relationship was first observed in prospective observational studies, and the causal relationship was confirmed in genetic studies. Everybody should have their Lp(a) concentration measured once in their lifetime. CVD risk is elevated when Lp(a) concentrations are high i.e. > 50 mg/dL (≥100 mmol/L). Extremely high Lp(a) levels >180 mg/dL (≥430 mmol/L) are associated with CVD risk similar to that conferred by familial hypercholesterolemia. Elevated Lp(a) level was previously treated with niacin, which exerts a potent Lp(a)-lowering effect. However, niacin is currently not recommended because, despite the improvement in lipid profile, no improvements on clinical outcomes have been observed. Furthermore, niacin use has been associated with severe adverse effects. Post hoc analyses of clinical trials with proprotein convertase subtilisin/kexin type-9 (PCSK9) inhibitors have shown that these drugs exert clinical benefits by lowering Lp(a), independent of their potent reduction of low-density lipoprotein cholesterol (LDL-C). It is not yet known whether PCSK9 inhibitors will be of clinical use in patients with elevated Lp(a). Apheresis is a very effective approach to Lp(a) reduction, which reduces CVD risk but is invasive and time-consuming and is thus reserved for patients with very high Lp(a) levels and progressive CVD. Studies are ongoing on the practical application of genetic approaches to therapy, including antisense oligonucleotides against apolipoprotein(a) and small interfering RNA (siRNA) technology, to reduce the synthesis of Lp(a).

aortic stenosisapheresisPCSK9 inhibitionRNA therapeuticstesting

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