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Mechanisms

CETP activity and cholesteryl ester transfer rise two- to fourfold in hypercholesterolemic and dysbetalipoproteinemic plasma (J Clin Invest 1987)

Original title: Accelerated transfer of cholesteryl esters in dyslipidemic plasma. Role of cholesteryl ester transfer protein

J Clin Invest · · 6

Tall A, Granot E, Brocia R, Tabas I, Hesler C, Williams K, Denke M

Incubated hypercholesterolemic rabbit plasma showed a twofold increase in mass transfer of cholesteryl ester from HDL to apoB-containing lipoproteins compared with control, alongside a two- to fourfold increase in CETP activity measured by isotopic assay, and a CETP-like molecule was isolated in increased amounts from the hypercholesterolemic plasma. Incubated plasma from four dysbetalipoproteinemic subjects likewise showed a threefold increase in cholesteryl ester mass transfer compared with normolipidemic controls, with a twofold increase in CETP activity in whole or lipoprotein-free plasma. These findings establish that dyslipidemic rabbit and human plasma both show enhanced transfer of cholesteryl esters from HDL to potentially atherogenic apoB-containing lipoproteins, driven in part by increased CETP activity, possibly reflecting an increase in CETP mass itself.

Read the paper (DOI)PubMed

Original abstract

Plasma cholesteryl esters, synthesized in the high density lipoproteins (HDL), may be transferred to other lipoproteins by a cholesteryl ester transfer protein (CETP). We found a twofold increase in mass transfer of cholesteryl ester from HDL to apoB-containing lipoproteins in incubated hypercholesterolemic rabbit plasma compared with control. There was a two- to fourfold increase in the activity of CETP, measured in an isotopic assay in hypercholesterolemic plasma. A CETP-like molecule was isolated in increased amounts from hypercholesterolemic plasma. Incubated plasma from four dysbetalipoproteinemic subjects also showed an increase (threefold) in cholesteryl ester mass transfer, compared with normolipidemic controls. There was a twofold increase in the activity of CETP, assayed in whole or lipoprotein-free plasma. Thus, there is increased transfer of cholesteryl esters from HDL to potentially atherogenic apoB-containing lipoproteins in dyslipidemic rabbit and human plasma. The enhanced transfer results in part from increased activity of CETP, possibly reflecting an increase in CETP mass.

mechanisms

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