RNA therapeutics
The CHARGE consortium's discovery that LPA variants cause aortic valve calcification affects over 2.5 million North Americans, a review by the discovering author (J Lipid Res 2016)
Original title: Lipoprotein (a) in calcific aortic valve disease: from genomics to novel drug target for aortic stenosis
This review by Thanassoulis, whose CHARGE consortium genome-wide association study first linked LPA genetic variants to aortic valve calcium and clinical aortic stenosis (AS), summarises the evidence for Lp(a)-mediated valve disease. Calcific AS, the most common valve disease in the Western world, affects over 2.5 million people in North America, yet no medical treatment slows its progression. A Mendelian randomisation analysis showed the LPA variant effect on AS is mediated by plasma Lp(a), directly implicating elevated Lp(a) as a cause of aortic valve calcium and progression to AS, sparking intense interest in Lp(a) as a modifiable target. The review surveys the epidemiological and genetic evidence for Lp(a)-mediated valve disease, discusses potential mechanisms, and outlines steps toward translating this discovery into a preventive or therapeutic strategy for aortic valve disease.
Original abstract
Calcific aortic stenosis (AS) is the most common form of valve disease in the Western world and affects over 2.5 million individuals in North America. Despite the large burden of disease, there are no medical treatments to slow the development of AS, due at least in part to our incomplete understanding of its causes. The Cohorts for Heart and Aging Research in Genetic Epidemiology extra-coronary calcium consortium reported a genome-wide association study demonstrating that genetic variants in LPA are strongly associated with aortic valve (AV) calcium and clinical AS. Using a Mendelian randomization study design, it was demonstrated that the effect of this genetic variant is mediated by plasma lipoprotein (a) [Lp(a)], directly implicating elevations in Lp(a) as a cause of AV calcium and progression to AS. This discovery has sparked intense interest in Lp(a) as a modifiable cause for AV disease. Herein, we will review the mounting epidemiological and genetic findings in support of Lp(a)-mediated valve disease, discuss potential mechanisms underlying this observation, and outline the steps to translate this discovery to a much needed novel preventive and/or therapeutic strategy for AV disease.
aortic stenosisgeneticsRNA therapeutics
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.