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Aortic stenosis

LPA shares up to 70% of its sequence with plasminogen, explaining Lp(a) triple threat of atherosclerosis, thrombosis and inflammation, a review (Biomolecules 2022)

Original title: Lipoprotein(a)-The Crossroads of Atherosclerosis, Atherothrombosis and Inflammation

Biomolecules · · 6

Ugovšek S, Šebeštjen M

This review examines Lp(a) three interlinked pathogenic mechanisms: atherosclerotic, thrombogenic and inflammatory. Lp(a) is an independent predictor of coronary artery disease, degenerative aortic stenosis, and heart failure independent of these conditions, with levels genetically determined in an autosomal dominant pattern showing substantial variation within and between ethnicities, driven mainly by variation in the LPA gene on chromosome 6. Lp(a) carries all the atherogenic risk of LDL cholesterol while being more prone to oxidation and endothelial penetration to promote foam cell formation. Its thrombogenic properties arise because apolipoprotein(a) shares up to 70% sequence homology with plasminogen, allowing it to compete for the same endothelial binding sites, inhibiting fibrinolysis and promoting thrombosis, while oxidised phospholipids on Lp(a) drive pro-inflammatory macrophage differentiation and cytokine secretion. The review aims to clarify which of these mechanisms predominates in different patient populations.

Read the paper (DOI)PubMed

Original abstract

Increased lipoprotein(a) (Lp(a)) levels are an independent predictor of coronary artery disease (CAD), degenerative aortic stenosis (DAS), and heart failure independent of CAD and DAS. Lp(a) levels are genetically determinated in an autosomal dominant mode, with great intra- and inter-ethnic diversity. Most variations in Lp(a) levels arise from genetic variations of the gene that encodes the apolipoprotein(a) component of Lp(a), the LPA gene. LPA is located on the long arm of chromosome 6, within region 6q2.6-2.7. Lp(a) levels increase cardiovascular risk through several unrelated mechanisms. Lp(a) quantitatively carries all of the atherogenic risk of low-density lipoprotein cholesterol, although it is even more prone to oxidation and penetration through endothelia to promote the production of foam cells. The thrombogenic properties of Lp(a) result from the homology between apolipoprotein(a) and plasminogen, which compete for the same binding sites on endothelial cells to inhibit fibrinolysis and promote intravascular thrombosis. LPA has up to 70% homology with the human plasminogen gene. Oxidized phospholipids promote differentiation of pro-inflammatory macrophages that secrete pro-inflammatory cytokines (e. g., interleukin (IL)-1β, IL-6, IL-8, tumor necrosis factor-α). The aim of this review is to define which of these mechanisms of Lp(a) is predominant in different groups of patients.

aortic stenosisinflammationmechanismsthrombosis

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