Mechanisms
Lp(a) drives atherosclerosis through plaque formation, thrombogenicity and inflammation, but no approved drug specifically targets it yet, a review (Biomol Biomed 2023)
Original title: Lipoprotein(a): Role in atherosclerosis and new treatment options
This review outlines Lp(a) as a critical, genetically determined causal risk factor for cardiovascular events even after LDL cholesterol targets are achieved. Structurally an LDL-like particle, Lp(a) pathogenic potential is attributed to three mechanisms: promotion of plaque formation, thrombogenicity, and proinflammatory effects, while its catabolism remains incompletely understood. No hypolipidaemic agent is currently approved specifically for high Lp(a), and randomised trials directly linking Lp(a) lowering to reduced cardiovascular events remain limited, though the authors note that some existing evidence points to better cardiovascular outcomes as a benefit of Lp(a)-lowering therapy. The results of ongoing clinical trials of dedicated Lp(a)-lowering agents are described as eagerly awaited.
Original abstract
Atherosclerosis is a chronic process characterized by inflammation and the progressive accumulation of inflammatory cells and lipids in the blood vessel wall, resulting in narrowing of the blood vessel's circumference. Treatment of people with dyslipidemia aims to reduce the risk of developing atherosclerotic disease and prevent major adverse cardiovascular events (MACE). The results of previous studies indicated that lipoprotein(a) (Lp(a)) is a critical causal factor in the estimated risk of developing a cardiovascular (CV) incident even after achieving desirable low-density lipoprotein (LDL) cholesterol levels. Lp(a) is a low-density lipoprotein particle, like LDL cholesterol. The levels of Lp(a) in plasma are genetically determined. Lp(a) catabolism is still controversial. The pathogenic potential of Lp(a) can be divided into three categories: promotion of plaque formation, thrombogenicity, and proinflammatory effects. Lp(a) levels above the 75th percentile reduced the risk of aortic valve stenosis and myocardial infarction, whereas higher levels (above 90th percentile) were associated with an increased risk of heart failure. However, no hypolipidemic agents have been approved for targeted use in patients with high Lp(a) levels. There are insufficient randomized controlled trials assessing CV outcomes that would support the evidence that current treatment options, which effectively lower Lp(a) levels, also effectively prevent CV event. However, according to some studies, there is strong evidence that better CV outcome is one of the benefits of such therapy. The results of ongoing clinical trials are eagerly awaited.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.