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Inhibiting CETP amplifies apoA-IV and apoE redistribution among lipoproteins during ex vivo plasma incubation (J Lipid Res 1989)

Original title: Effect of a neutralizing monoclonal antibody to cholesteryl ester transfer protein on the redistribution of apolipoproteins A-IV and E among human lipoproteins

J Lipid Res · · 6

Bisgaier CL, Siebenkas MV, Hesler CB, Swenson TL, Blum CB, Marcel YL, Milne RW, Glickman RM, Tall AR

In plasma from seven normal men incubated for 6 hours at 37 degrees C with the neutralizing monoclonal antibody TP2 against CETP, or a control immunoglobulin, researchers tracked apoA-IV and apoE distribution among lipoproteins by gel filtration and radioimmunoassay. TP2 had no effect on LCAT activity. With active CETP and LCAT, incubation raised lipoprotein-associated apoA-IV by 240% of baseline, but when CETP was inhibited, this rose further to 315% of baseline. Incubation also shifted apoE from HDL to larger lipoproteins, to 131% of baseline normally, rising to 155% of baseline when CETP was inhibited, and this increased apoE movement was not explained by apoA-IV displacement, since it occurred even without apoA-IV movement onto HDL. These consistent effects across all seven subjects show CETP inhibition amplifies, rather than blocks, apolipoprotein redistribution during lipoprotein remodeling.

PubMed

Original abstract

The effect of inhibiting cholesteryl ester transfer protein (CETP) on the in vitro redistribution of apolipoproteins(apo) A-IV and apoE among lipoproteins in whole plasma was studied in seven normal male subjects. Plasmas were incubated in the presence of a purified monoclonal antibody TP2 (Mab TP2) that neutralizes the activity of CETP. Mab TP2 had no effect on lecithin:cholesterol acyltransferase (LCAT) activity. Prior to and following a 6-h incubation at 37 degrees C in the presence of Mab TP2 or a control mouse myeloma immunoglobulin (IgG), plasmas were gel-filtered on Sephacryl S-300 and the distribution of apoA-IV and apoE among lipoproteins was determined by radioimmunoassay. Incubation (i.e., with active LCAT and CETP) increased the amount of apoA-IV associated with lipoproteins by 240%. When CETP activity was inhibited during incubation, the amount of apoA-IV that became lipoprotein-associated was significantly increased (315% of basal). Plasma incubation also caused a redistribution of apoE from high density lipoproteins (HDL) to larger lipoproteins (131% of basal); however, when CETP was inhibited, significantly greater amounts of apoE became associated with the larger particles (155% of basal). These effects were observed in all seven subjects. Increased movement of apoE from HDL to triglyceride-rich particles was not due to displacement by apoA-IV since loss of apoE from HDL was still observed when no movement of apoA-IV onto HDL occurred, such as during LCAT or combined LCAT and CETP inhibition. We speculate that low CETP activity (e.g., in species such as rats) may lead to an increased content of HDL apoA-IV and also to apoE enrichment of triglyceride-rich lipoproteins, augmenting their clearance.

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