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Aortic stenosis

Lipids and lipoproteins in calcific aortic valve disease (Curr Opin Lipidol 2026)

Original title: Lipids and lipoproteins in calcific aortic valve disease

Curr Opin Lipidol · · 5

Aksoy O, Tintut Y, Demer LL

This review examines the role of lipids and lipoproteins, particularly lipoprotein(a) [Lp(a)], in calcific aortic valve disease (CAVD). While genetic studies consistently link CAVD with Lp(a), a major carrier of oxidized phospholipids, lipid-lowering therapies tested in CAVD have shown disappointing trial outcomes. The authors discuss recent evidence supporting a key role for Lp(a) levels in CAVD pathogenesis, alongside new diagnostic concepts such as pH-sensitive fluorescence probes and natural antibodies to modified LDL. Potential therapeutic advances include Lp(a) lowering strategies, SGLT2 inhibition, and soluble guanylate cyclase reactivation, with ongoing clinical trials expected to clarify these approaches.

Read the paper (DOI)PubMed

Original abstract

Purpose Of Review: Lipids and lipoproteins have established roles in calcific atherosclerosis, but there is less awareness of their role in calcific aortic valve disease (CAVD). Clinical studies link CAVD with severe hypercholesterolemia, and genetic studies consistently link it with lipoprotein little (a) [Lp(a)], a major carrier of oxidized phospholipids. Given the remarkable similarities between calcific atherosclerotic plaques and calcific aortic valves, lipids are incriminated. Hence, lipid-lowering therapies used for atherosclerosis have been tested in CAVD, but results have been inexplicably disappointing. New evidence for the importance of lipids, despite failure of lipid-lowering, and new concepts in diagnostic and therapeutic approaches are discussed.

Recent Findings: Evidence supports a key role of Lp(a) levels in CAVD. Potential diagnostic advances include pH-sensitive-fluorescence probes for visualizing lipid droplets in valves and identification of natural antibodies to modified LDL that associate inversely with CAVD. Potential therapeutic advances include Lp(a) lowering, SGLT2 inhibition, and reactivation of soluble guanylate cyclase. Trial outcomes currently remain mixed.

Summary: Recent studies clarify the mechanisms by which lipids, lipoproteins, and Lp(a) contribute to CAVD. New potential diagnostic techniques include screening for natural antibodies and visualizing lipid deposits. New therapeutic agents include oligonucleotides and nanoparticles. New clinical trials are underway.

aortic stenosisgeneticsmechanismstherapy

Summary written by lp-a.org from the published abstract; figures as published. Page updated 20 August 2026. Methods.