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Torcetrapib

Torcetrapib is extensively metabolized in humans with terminal half-lives of 211 to 373 hours (Drug Metab Dispos 2008)

Original title: Pharmacokinetics, metabolism, and excretion of torcetrapib, a cholesteryl ester transfer protein inhibitor, in humans

Drug Metab Dispos · · 4

Dalvie D, Chen W, Zhang C, Vaz AD, Smolarek TA, Cox LM, Lin J, Obach RS

Researchers investigated the pharmacokinetics, metabolism, and excretion of a 120-mg oral dose of [14C]torcetrapib, a selective CETP inhibitor, in healthy male volunteers. Total recovery of radiolabeled dose after 21 days was 75.7%, mostly excreted in urine (63%), with mean terminal elimination half-lives of 373 hours for total radioactivity and 211 hours for unchanged torcetrapib. Torcetrapib was extensively metabolized via oxidation, with only 5.2% excreted unchanged in feces and none unchanged in urine; the primary pathway involved initial CYP3A-mediated oxidative decarbamoylation followed by further oxidation, yielding the metabolites M1 (bistrifluoromethylbenzoic acid, 7.0% of dose) and M4 (quinaldic acid and conjugates, 40% of dose) as the major circulating and excretory species.

Read the paper (DOI)PubMed

Original abstract

The pharmacokinetics, metabolism, and excretion of torcetrapib, a selective inhibitor of human cholesteryl ester transfer protein, were investigated in healthy human male volunteers after oral administration of [(14)C]torcetrapib (120-mg dose). The total mean recovery of radiolabeled dose after 21 days was 75.7%, and most of the dose (63%) was excreted in the urine. The total circulating radioactivity and unchanged torcetrapib plasma concentrations increased over the first 6 h and then declined slowly with mean terminal elimination half-lives of 373 and 211 h. Metabolism of torcetrapib was extensive in humans. Only 5.2% of the total dose constituted unchanged torcetrapib in the feces, whereas no parent was excreted unchanged in the urine. Similarly, pharmacokinetic analysis of total radioactivity and unchanged torcetrapib revealed that the area under the concentration versus time curve from zero to infinity of torcetrapib accounted for approximately 7.0% of the circulating radioactivity. Torcetrapib was metabolized to numerous metabolites via oxidation. The primary metabolic pathway involved initial oxidative decarbamoylation followed by extensive further oxidation, resulting in the formation of bistrifluoromethylbenzoic acid (M1) and quinaldic acid (M4) metabolites. A mean 40% of the total dose was excreted in the urine as M4 (and its glucuronide and urea conjugates), whereas 7.0% of the total dose was excreted as M1. In vitro studies using human subcellular fractions suggested that the initial metabolism of torcetrapib proceeds via CYP3A-mediated decarbamoylation. Subsequent oxidations lead to the major circulating and excretory metabolites M1 and M4.

pharmacologytorcetrapib

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