Anacetrapib
In rhesus macaques, anacetrapib reproduces the human lipid response and significantly lowers plasma PCSK9 (Eur J Pharmacol 2014)
Original title: Effects of anacetrapib on plasma lipids, apolipoproteins and PCSK9 in healthy, lean rhesus macaques
Because studying the broader effects of anacetrapib on lipoprotein metabolism and cardiovascular risk beyond HDL has been difficult in existing models, this study tested anacetrapib in healthy, lean rhesus macaques and compared results to dyslipidemic humans. Across two studies, anacetrapib (150 mg/kg once daily for 10 days) reduced CETP activity by more than 70% and raised HDL cholesterol by more than 110%, changes similar to those reported clinically in dyslipidemic humans. LDL cholesterol fell by more than 60%, a somewhat larger reduction than seen clinically. Treatment also produced statistically significant reductions in plasma PCSK9 and reduced cholesterol excursion in the combined chylomicron and remnant lipoprotein fraction isolated by fast protein liquid chromatography, suggesting rhesus macaques are a useful translational model for studying the mechanistic effects of CETP inhibition beyond HDL and LDL changes alone.
Original abstract
Inhibition of cholesteryl ester transfer protein (CETP) has been vigorously pursued as a potential therapy to treat patients who are at an elevated risk for coronary artery disease. Anacetrapib, a novel CETP inhibitor, has been shown clinically to raise HDL cholesterol and reduce LDL cholesterol when provided as monotherapy or when co-administered with a statin. Preclinically, the effects of anacetrapib on the functionality and composition of HDL have been extensively studied. In contrast, the effects of anacetrapib on other parameters related to lipoprotein metabolism and cardiovascular risk have been difficult to explore. The aim of the present investigation was to evaluate the effects of anacetrapib in rhesus macaques and to compare these to effects reported in dyslipidemic humans. Our results from two separate studies show that administration of anacetrapib (150 mg/kg q.d. for 10 days) to rhesus macaques results in alterations in CETP activity (reduced by more than 70%) and HDL cholesterol (increased by more than 110%) which are similar to those reported in dyslipidemic humans. Levels of LDL cholesterol were reduced by more than 60%, an effect slightly greater than what has been observed clinically. Treatment with anacetrapib in this model was also found to lead to statistically significant reductions in plasma PCSK9 and to reduce cholesterol excursion in the combined chylomicron and remnant lipoprotein fraction isolated from plasma by fast protein liquid chromatography. Collectively, these data suggest that rhesus macaques may be a useful translational model to study the mechanistic effects of CETP inhibition.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.