Anacetrapib
A new non-steady-state tracer method shows anacetrapib blocks 97% of postprandial triglyceride flux into HDL (J Lipid Res 2016)
Original title: Evaluation of CETP activity in vivo under non-steady-state conditions: influence of anacetrapib on HDL-TG flux
Lipoprotein kinetics studies have almost exclusively relied on steady-state modeling, so this study developed a non-steady-state experimental design and modeling strategy to examine how CETP mediates HDL triglyceride flux in vivo in rhesus macaques. Two isotopomers of oleic acid, deuterium-11 and carbon-13-18, were administered orally and intravenously respectively to label triglycerides in apoB-containing lipoproteins, and the flux of a specific triglyceride species (52:2) from these donor lipoproteins into HDL served as the measure of CETP activity. Peak total postprandial triglyceride flux to HDL via CETP was estimated at approximately 13 mg per hour per kg, and this transfer was inhibited by 97% following anacetrapib treatment, demonstrating that HDL triglyceride flux can serve as an in vivo measure of CETP activity and that donor lipoproteins can be labeled in situ using established stable isotope tracer techniques in free-living subjects under any physiological condition.
Original abstract
Studies in lipoprotein kinetics almost exclusively rely on steady-state approaches to modeling. Herein, we have used a non-steady-state experimental design to examine the role of cholesteryl ester transfer protein (CETP) in mediating HDL-TG flux in vivo in rhesus macaques, and therefore, we developed an alternative strategy to model the data. Two isotopomers ([(2)H11] and [(13)C18]) of oleic acid were administered (orally and intravenously, respectively) to serve as precursors for labeling TGs in apoB-containing lipoproteins. The flux of a specific TG (52:2) from these donor lipoproteins to HDL was used as the measure of CETP activity; calculations are also presented to estimate total HDL-TG flux. Based on our data, we estimate that the peak total postprandial TG flux to HDL via CETP is ∼ 13 mg · h(-1) · kg(-1) and show that this transfer was inhibited by 97% following anacetrapib treatment. Collectively, these data demonstrate that HDL TG flux can be used as a measure of CETP activity in vivo. The fact that the donor lipoproteins can be labeled in situ using well-established stable isotope tracer techniques suggests ways to measure this activity for native lipoproteins in free-living subjects under any physiological conditions.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.