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HDL biology

Estradiol fatty-acid esters transfer from HDL to LDL via a CETP-associated process, a review finds, while their broader physiologic roles remain under study (Cardiovasc Res 2002)

Original title: Lipoprotein-associated estrogens

Cardiovasc Res · · 4

Tikkanen MJ, Vihma V, Jauhiainen M, Höckerstedt A, Helisten H, Kaamanen M

This review discusses the discovery of a family of hormonal steroids esterified with fatty acids that circulate as lipoprotein components. Current evidence indicates lecithin:cholesterol acyltransferase associated with HDL catalyzes esterification of estrogens, and recent results show estradiol esters transfer from HDL to LDL particles in a cholesteryl ester transfer protein (CETP)-associated process. Proposed physiologic roles for these esters include serving as fat-soluble antioxidants protecting lipoproteins from oxidation, providing a hormone storage mechanism in lipoproteins and fat tissue, and offering a novel hormone transport system via lipoprotein receptors. Quantitative methods for measuring these esters have been developed, and preliminary work suggests diet-derived plant estrogens may also form fat-soluble derivatives incorporated into lipoproteins.

Read the paper (DOI)PubMed

Original abstract

The discovery of a family of hormonal steroids esterified with fatty acid has raised questions concerning their physiologic role. Because of their water-insolubility these compounds are present in the circulation only as components of lipoprotein particles. Current evidence supports the hypothesis that estrogen esterification is catalyzed by lecithin:cholesterol acyltransfearse associated with HDL. In addition, recent results indicate that estradiol esters are transferred from HDL to LDL particles in a cholesteryl ester transfer protein (CETP)-associated process. The studies now focus on the various possible physiologic roles proposed for these hormone derivatives, (1) functioning as fat-soluble antioxidants incorporated in lipoproteins rendering protection against oxidation of these particles, (2) providing a mechanism for hormonal storage in lipoproteins and fat tissues, (3) providing a novel hormone transport system using lipoprotein as carriers and lipoprotein receptors for entry into cells. Quantitative methods of determination of estradiol fatty acid esters in human body fluids have been developed. Preliminary studies suggest that diet-derived plant estrogens may also form fat-soluble derivatives which become incorporated in lipoproteins.

HDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.