Anacetrapib
White adipose tissue accumulates anacetrapib up to 40-fold, explaining its long elimination half-life in mice (Drug Metab Dispos 2016)
Original title: Disposition into Adipose Tissue Determines Accumulation and Elimination Kinetics of the Cholesteryl Ester Transfer Protein Inhibitor Anacetrapib in Mice
The long terminal half-life of anacetrapib in humans has been hypothesized to stem from disposition into adipose tissue and CETP binding, so this study dosed C57BL6 wild-type lean, wild-type diet-induced obese (DIO), CETP-transgenic lean, and CETP-transgenic DIO mice orally with 10 mg/kg anacetrapib daily for 42 days, measuring tissue drug levels up to 35 weeks post-dose. Blood concentrations at 72 hours post-dose accumulated 3- to 9-fold during dosing, while white adipose tissue accumulated approximately 20- to 40-fold, brown adipose 10- to 17-fold, and liver approximately 4-fold; brain levels stayed below 0.1 micromolar with no accumulation trend. The highest blood concentrations occurred in CETP-transgenic DIO mice and the lowest in wild-type lean mice, while adipose and liver concentrations were higher in DIO mice regardless of CETP status, indicating white adipose tissue serves as a drug depot that governs the long-term kinetics of anacetrapib.
Original abstract
The cholesteryl ester transfer protein (CETP) inhibitor anacetrapib exhibits a long terminal half-life (t½) in humans; however, the dispositional mechanisms that lead to this long t½ are still being elucidated. As it is hypothesized that disposition into adipose tissue and binding to CETP might play a role, we sought to delineate the relative importance of these factors using a preclinical animal model. A multiple-dose pharmacokinetic study was conducted in C57BL6 wild-type (WT) lean, WT diet-induced obese (DIO), natural flanking region (NFR) CETP-transgenic lean, and NFR-DIO mice. Mice were dosed orally with 10 mg/kg anacetrapib daily for 42 days. Drug concentrations in blood, brown and white adipose tissue, liver, and brain were measured up to 35 weeks postdose. During dosing, a 3- to 9-fold accumulation in 72-hour postdose blood concentrations of anacetrapib was observed. Drug concentrations in white adipose tissue accumulated ∼20- to 40-fold, whereas 10- to 17-fold accumulation occurred in brown adipose and approximately 4-fold in liver. Brain levels were very low (<0.1 μM), and a trend of accumulation was not seen. The presence of CETP as well as adiposity seems to play a role in determining the blood concentrations of anacetrapib. The highest blood concentrations were observed in NFR DIO mice, whereas the lowest concentrations were seen in WT lean mice. In adipose and liver tissue, higher concentrations were seen in DIO mice, irrespective of the presence of CETP. This finding suggests that white adipose tissue serves as a potential depot and that disposition into adipose tissue governs the long-term kinetics of anacetrapib in vivo.
anacetrapibmechanismspharmacology
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.