Aortic stenosis
Investigational agents cut Lp(a) by 80% to 100%, pharmacotherapy review (Am J Health Syst Pharm 2026)
Original title: Lp(a): A potentially modifiable cardiovascular risk factor
Review for health-system pharmacists on the pathophysiology, epidemiology, clinical assessment and management of elevated Lp(a) in atherosclerotic cardiovascular disease and calcific aortic valve stenosis. Lp(a) consists of an LDL moiety plus a single apolipoprotein(a) molecule bound to apoB; levels are genetically determined and barely modified by lifestyle change or currently available lipid-lowering drugs, so Lp(a) is rarely measured in practice. Several investigational agents that block apo(a) synthesis or its binding to apoB reduce Lp(a) by 80% to 100%, and phase 3 ASCVD outcome trials for several of these have completed enrolment. The authors conclude management remains limited to intensive traditional risk-factor control until these therapies are proven to improve clinical outcomes.
Original abstract
Purpose: The purpose of this article is to discuss the pathophysiology, epidemiology, clinical assessment, and management of elevated lipoprotein(a) (Lp(a)) levels in atherosclerotic cardiovascular disease (ASCVD) and calcific aortic valve stenosis (CAVS).
Summary: Lp(a) is a unique lipoprotein consisting of 2 components: a low-density lipoprotein (LDL) moiety and a single molecule of apolipoprotein(a) (apo(a)), which binds to apolipoprotein B in the LDL moiety. The cholesterol content of the LDL moiety promotes atherosclerosis while apo(a) confers additional atherogenic and inflammatory properties to Lp(a). Lp(a) is an independent and causal risk factor for ASCVD and CAVS as well as all-cause mortality. Elevations in Lp(a) levels are genetically determined with minimal reductions observed in response to nonpharmacological risk factor modification. Currently available lipid-lowering drugs produce minimal or only modest percent changes in Lp(a) levels. As a consequence, Lp(a) is rarely measured in clinical practice. Several investigational agents designed to specifically target Lp(a) reduce levels by 80% to 100%. These agents work by decreasing the synthesis of apo(a) or by inhibiting the binding of apo(a) to apolipoprotein B. Phase 3 ASCVD outcome trials for several of these agents have completed enrollment.
Conclusion: Elevated Lp(a) levels are a known risk factor for ASCVD and CAVS. Several investigational drugs produce 80% to 100% reductions in Lp(a) levels. However, until these therapies are proven to lead to favorable clinical outcomes, management of patients with elevated Lp(a) levels will continue to be limited to early and intensive ASCVD risk factor management.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.