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Anacetrapib

Anacetrapib inhibited CETP 94% and boosted macrophage-to-feces cholesterol excretion in hamsters (J Lipid Res 2011)

Original title: Anacetrapib promotes reverse cholesterol transport and bulk cholesterol excretion in Syrian golden hamsters

J Lipid Res · · 6

Castro-Perez J, Briand F, Gagen K, Wang SP, Chen Y, McLaren DG, Shah V, Vreeken RJ, Hankemeier T, Sulpice T, Roddy TP, Hubbard BK et al.

To test whether anacetrapib promotes reverse cholesterol transport (RCT) in a dyslipidemic model, researchers injected 3H-cholesterol-loaded macrophages into Syrian golden hamsters treated with anacetrapib (60 mg/kg/day, 2 weeks) or vehicle and tracked the tracer. Anacetrapib inhibited CETP by 94% and raised HDL cholesterol by 47%; the 3H-tracer in HDL rose 69%, indicating increased cholesterol efflux from macrophages to HDL, while 3H-tracer in fecal cholesterol and bile acids rose 90% and 57%, respectively, indicating increased macrophage-to-feces RCT. Mass spectrometry of HDL from anacetrapib-treated hamsters showed increased free cholesterol and cholesteryl ester, and bulk fecal cholesterol and cholic acid were also increased. The authors conclude CETP inhibition with anacetrapib promotes macrophage-to-feces reverse cholesterol transport, supporting its development as a lipid therapy for dyslipidemia and atherosclerosis.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) transfers cholesteryl ester (CE) and triglyceride between HDL and apoB-containing lipoproteins. Anacetrapib (ANA), a reversible inhibitor of CETP, raises HDL cholesterol (HDL-C) and lowers LDL cholesterol in dyslipidemic patients; however, the effects of ANA on cholesterol/lipoprotein metabolism in a dyslipidemic hamster model have not been demonstrated. To test whether ANA (60 mg/kg/day, 2 weeks) promoted reverse cholesterol transport (RCT), ³H-cholesterol-loaded macrophages were injected and (3)H-tracer levels were measured in HDL, liver, and feces. Compared to controls, ANA inhibited CETP (94%) and increased HDL-C (47%). ³H-tracer in HDL increased by 69% in hamsters treated with ANA, suggesting increased cholesterol efflux from macrophages to HDL. ³H-tracer in fecal cholesterol and bile acids increased by 90% and 57%, respectively, indicating increased macrophage-to-feces RCT. Mass spectrometry analysis of HDL from ANA-treated hamsters revealed an increase in free unlabeled cholesterol and CE. Furthermore, bulk cholesterol and cholic acid were increased in feces from ANA-treated hamsters. Using two independent approaches to assess cholesterol metabolism, the current study demonstrates that CETP inhibition with ANA promotes macrophage-to-feces RCT and results in increased fecal cholesterol/bile acid excretion, further supporting its development as a novel lipid therapy for the treatment of dyslipidemia and atherosclerotic vascular disease.

anacetrapibmechanisms

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