Anacetrapib
Nearly 87% of an oral anacetrapib dose is eliminated unchanged in feces, with only trace CYP3A4-generated metabolites (Drug Metab Dispos 2010)
Original title: Metabolism and excretion of anacetrapib, a novel inhibitor of the cholesteryl ester transfer protein, in humans
Six healthy men received a single oral dose of 150 mg anacetrapib containing 165 microCi of carbon-14-labeled drug, with plasma, urine, and fecal samples collected for up to 14 days to characterize absorption, distribution, metabolism, and excretion. The majority of administered radioactivity (87%) was eliminated by fecal excretion, with negligible urinary excretion (0.1%), and peak plasma radioactivity of approximately 2 micromolar equivalents occurred around 4 hours post-dose. Unchanged parent anacetrapib was the major radioactive species in plasma and feces (79-94% of total radioactivity), with three oxidative metabolites, M1 (O-demethylated), M2, and M3 (secondary hydroxylated derivatives of M1), each present at 14% or less of total radioactivity. In vitro data showed anacetrapib is metabolized mainly by CYP3A4 to form these three metabolites, indicating the drug undergoes low-to-moderate oral absorption with the absorbed fraction eliminated largely through CYP3A4-catalyzed oxidation followed by biliary-fecal excretion.
Original abstract
Anacetrapib is a novel cholesteryl ester transfer protein inhibitor being developed for the treatment of primary hypercholesterolemia and mixed dyslipidemia. The absorption, distribution, metabolism, and excretion of anacetrapib were investigated in an open-label study in which six healthy male subjects received a single oral dose of 150 mg and 165 microCi of [(14)C]anacetrapib. Plasma, urine, and fecal samples were collected at predetermined times for up to 14 days postdose and were analyzed for total radioactivity, the parent compound, and metabolites. The majority of the administered radioactivity (87%) was eliminated by fecal excretion, with negligible amounts present in urine (0.1%). The peak level of radioactivity in plasma (approximately 2 microM equivalents of [(14)C]anacetrapib) was achieved approximately 4 h postdose. The parent compound was the major radioactive component (79-94% of total radioactivity) in both plasma and feces. Three oxidative metabolites, M1, M2, and M3, were detected in plasma and feces and were identified as the O-demethylated species (M1) and two secondary hydroxylated derivatives of M1 (M2 and M3). Each metabolite was detected at low levels, representing <or=14% of the radioactivity in plasma or fecal samples. In vitro data indicated that anacetrapib is metabolized mainly by CYP3A4 to form M1, M2, and M3. Overall, these data, along with those from other preclinical and clinical studies, indicate that anacetrapib probably exhibits a low-to-moderate degree of oral absorption in humans and the absorbed fraction of the dose is eliminated largely via CYP3A4-catalyzed oxidative metabolism, followed by excretion of metabolites by the biliary-fecal route.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.