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HDL biology

A fluorescence assay tracks CETP-mediated lipid transfer to equilibrium in under 30 minutes, supporting an adsorption-exchange-desorption-diffusion mechanism (Chem Phys Lipids 1995)

Original title: Method for measuring the activities of cholesteryl ester transfer protein (lipid transfer protein)

Chem Phys Lipids · · 6

Epps DE, Harris JS, Greenlee KA, Fisher JF, Marschke CK, Castle CK, Ulrich RG, Moll TS, Melchior GW, Kézdy FJ

A continuous recording fluorescence assay was developed to measure CETP activity, based on the increase in fluorescence as fluorescent cholesteryl esters and triglycerides relocate from a donor to an acceptor emulsion. In the absence of CETP, the fluorescent lipids show low quantum yield due to self-quenching at their high donor-emulsion concentrations, but CETP catalyzes redistribution to the acceptor emulsion and substantially increases fluorescence. Efficient sonication and incorporation of apolipoproteins from human HDL into the emulsions significantly increased transfer rates. Under optimal conditions, redistribution of the fluorescent compounds reached equilibrium in under 30 minutes, with kinetics consistent with a simple first-order reaction pathway. The redistribution kinetics support a mechanism of adsorption, exchange, desorption, and diffusion.

Read the paper (DOI)PubMed

Original abstract

A continuous recording fluorescence assay was developed for cholesteryl ester transfer protein (CETP). The assay measures the increase in fluorescence accompanying the relocation of fluorescent lipids, cholesteryl esters and triglycerides, from a donor emulsion to an acceptor emulsion. In the absence of CETP, the quantum yields of the fluorescent lipids is low because their high concentrations in the donor emulsions result in self-quenching. CETP catalyzes the redistribution of the fluorescent lipids from the donor to the acceptor emulsions and fluorescence increases substantially. Efficient sonication and incorporation of apolipoproteins from human HDL into the emulsions significantly increased the transfer rates. Under optimal conditions, the redistribution of fluorescent compounds reaches equilibrium within < 30 min and the kinetics of this process are consistent with a simple, first-order reaction pathway. The redistribution kinetics support a mechanism of adsorption --> exchange --> desorption --> diffusion.

HDL biologymechanisms

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