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Aortic stenosis

Lp(a) causally drives both mitral and aortic valve calcification, mediating 31% of its effect on aortic stenosis, in 97,890 Copenhagen participants (Atherosclerosis 2022)

Original title: Elevated lipoprotein(a) in mitral and aortic valve calcification and disease: The Copenhagen General Population Study

Atherosclerosis · · 8

Kaltoft M, Sigvardsen PE, Afzal S, Langsted A, Fuchs A, Kühl JT, Køber L, Kamstrup PR, Kofoed KF, Nordestgaard BG

In the Copenhagen General Population Study, 12,006 participants underwent cardiac CT for mitral and aortic valve calcification, and 85,884 were followed for heart valve disease risk. At age 70-79, 29% had mitral and 54% had aortic valve calcification. For each 10-fold higher Lp(a), multivariable-adjusted odds ratios were 1.26 (95% CI 1.13-1.41) for mitral and 1.62 (95% CI 1.48-1.77) for aortic valve calcification, and hazard ratios were 0.93 (95% CI 0.40-2.15, 19 events) for mitral and 1.54 (95% CI 1.38-1.71, 1,158 events) for aortic valve stenosis. Genetic analyses using kringle IV type 2 repeat number and the LPA variant rs10455872 showed concordant associations with valve calcification. Aortic valve calcification mediated 31% (95% CI 16%-76%) of Lp(a) effect on aortic valve stenosis. The findings establish Lp(a) as a genetically and observationally confirmed causal driver of both mitral and aortic valve disease.

Read the paper (DOI)PubMed

Original abstract

Background And Aims: We tested the hypotheses (i) that elevated lipoprotein(a) is causally associated with both mitral and aortic valve calcification and disease, and (ii) that aortic valve calcification mediates the effect of elevated lipoprotein(a) on aortic valve stenosis.

Methods: From the Copenhagen General Population study, we included 12,006 individuals who underwent cardiac computed tomography to measure mitral and aortic valve calcification and 85,884 to examine risk of heart valve disease. Participants had information on plasma lipoprotein(a) and genetic instruments associated with plasma lipoprotein(a) to investigate potential causality.

Results: At age 70-79 years, 29% and 54% had mitral and aortic valve calcification, respectively. For 10-fold higher lipoprotein(a) levels, multifactorially adjusted odds ratios for mitral and aortic valve calcification were 1.26 (95% confidence interval: 1.13-1.41) and 1.62 (1.48-1.77). For mitral and aortic valve stenosis, corresponding hazard ratios were 0.93 (95%CI:0.40-2.15, 19 events) and 1.54 (1.38-1.71, 1158 events), respectively. For ≤23 versus ≥36 kringle IV type 2 number of repeats, the age and sex adjusted odds ratios for mitral and aortic valve calcification were 1.53 (1.18-1.99) and 2.23 (1.81-2.76). For carriers versus non-carriers of LPA rs10455872, odds ratios for mitral and aortic valve calcification were 1.33 (1.13-1.57) and 1.86 (1.64-2.13). For aortic valve stenosis, 31% (95%CI:16%-76%) of the effect of lipoprotein(a) was mediated through calcification.

Conclusions: Elevated lipoprotein(a) was genetically and observationally associated with mitral and aortic valve calcification and aortic valve stenosis. Aortic valve calcification mediated 31% of the effect of elevated lipoprotein(a) on aortic valve stenosis.

aortic stenosisgenetics

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