RNA therapeutics
Lp(a)'s link to venous thromboembolism stays unsettled even as new agents cut Lp(a) by up to 98%, review by a KOL-heavy author group finds (Thromb Haemost 2025)
Original title: Lipoprotein(a) and Venous Thromboembolism: Association, Causality, and Medications
This review, co-authored by a large group of prominent cardiovascular researchers including O'Donoghue, Nissen, Nicholls, Natarajan, Plutzky and Libby, examines the evidence linking Lp(a), a roughly 80% genetically determined lipoprotein with atherogenic, inflammatory and antifibrinolytic properties, to venous thromboembolism (VTE, encompassing deep vein thrombosis and pulmonary embolism). While elevated Lp(a) has a well-established causal link to atherosclerotic cardiovascular disease and aortic stenosis, its relationship to VTE has remained less clear: in vitro work suggests antifibrinolytic and prothrombotic properties, but clinical and genetic studies give inconsistent results, with some suggesting an association only at very high Lp(a) levels, and the effect of Lp(a) on outcomes after incident VTE has not been comprehensively studied. The review notes that at least five agents in development show preliminary Lp(a) reductions of up to 98%, though their effect on VTE events specifically remains unknown, in contrast to statins, which lower VTE risk without touching Lp(a).
Original abstract
Lipoprotein(a) [Lp(a)] is a circulating plasma lipoprotein with structural similarities to low-density lipoprotein (LDL), distinguished by the addition of apolipoprotein(a) to the LDL structure. Lp(a) levels are approximately 80% genetically determined, and distinct components of this complex particle are thought to confer atherogenic, inflammatory, and antifibrinolytic properties contributing to cardiovascular risk. A growing body of evidence has shown a causal association between elevated Lp(a) levels and both atherosclerotic cardiovascular disease (ASCVD) and valvular aortic stenosis. However, the link with venous thromboembolism (VTE) (encompassing deep vein thrombosis [DVT] and pulmonary embolism [PE]) has been less clear. Although in vitro studies suggest antifibrinolytic and prothrombotic properties for Lp(a), clinical and genetic studies have yielded inconsistent results related to thrombogenicity, with some studies suggesting an association with VTE only with very high Lp(a) levels. The effect of Lp(a) levels on outcomes in patients with incident VTE has not been comprehensively investigated. Although there are currently no approved therapies specifically targeting Lp(a) reduction, at least five agents are in development, with preliminary data demonstrating reductions in Lp(a) levels of up to 98%. The impact of these therapies on VTE events remains unknown. In turn, other lipid-modifying agents, which have no effect on reducing Lp(a), such as statins, were shown to reduce incident VTE. This review summarizes the current evidence regarding the association between Lp(a) and VTE, focusing on its pathophysiology and critically analyzing the existing evidence from experimental, epidemiological, and genetic studies.
mechanismsRNA therapeuticsthrombosis
Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.