lp-a.org

RNA therapeutics

Antisense therapy could push Lp(a) below the 30-50 mg/dL risk threshold, a review of Lp(a) mechanisms and emerging therapeutics (Crit Rev Clin Lab Sci 2018)

Original title: Lipoprotein(a) in clinical practice: New perspectives from basic and translational science

Crit Rev Clin Lab Sci · · 6

Scipione CA, Koschinsky ML, Boffa MB

This review by Scipione, Koschinsky and Boffa examines new perspectives on Lp(a) from basic and translational science. Genetic, epidemiological and in vitro evidence strongly supports a pathogenic role for Lp(a) in coronary heart disease and calcific aortic valve stenosis, though many questions about Lp(a) metabolism and pathophysiology remain unanswered despite growing efforts to develop Lp(a)-lowering therapies. Antisense oligonucleotide therapy targeting apolipoprotein(a) shows potential to lower Lp(a) below the 30-50 mg/dL (75-150 nmol/L) cardiovascular risk threshold, though the full mechanisms of Lp(a) lowering remain incompletely understood. The authors conclude this therapeutic approach should help clarify the clinical benefit of lowering Lp(a).

Read the paper (DOI)PubMed

Original abstract

Elevated plasma concentrations of lipoprotein(a) (Lp(a)) are a causal risk factor for coronary heart disease (CHD) and calcific aortic valve stenosis (CAVS). Genetic, epidemiological and in vitro data provide strong evidence for a pathogenic role for Lp(a) in the progression of atherothrombotic disease. Despite these advancements and a race to develop new Lp(a) lowering therapies, there are still many unanswered and emerging questions about the metabolism and pathophysiology of Lp(a). New studies have drawn attention to Lp(a) as a contributor to novel pathogenic processes, yet the mechanisms underlying the contribution of Lp(a) to CVD remain enigmatic. New therapeutics show promise in lowering plasma Lp(a) levels, although the complete mechanisms of Lp(a) lowering are not fully understood. Specific agents targeted to apolipoprotein(a) (apo(a)), namely antisense oligonucleotide therapy, demonstrate potential to decrease Lp(a) to levels below the 30-50 mg/dL (75-150 nmol/L) CVD risk threshold. This therapeutic approach should aid in assessing the benefit of lowering Lp(a) in a clinical setting.

mechanismsRNA therapeuticstesting

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