Torcetrapib
Lipid-based drug delivery greatly improves oral exposure to two CETP inhibitors, torcetrapib and CP-532,623, in beagle dogs (Eur J Pharm Biopharm 2014)
Original title: In vitro-in vivo evaluation of lipid based formulations of the CETP inhibitors CP-529,414 (torcetrapib) and CP-532,623
Researchers tested self-emulsifying lipid based drug delivery systems (SEDDS) to improve the oral bioavailability of the CETP inhibitors torcetrapib and CP-532,623. An in vitro lipid digestion model showed CP-532,623 stayed solubilized during dispersion of most formulations in simulated intestinal fluid, though solubilization capacity fell to varying degrees during in vitro digestion, with similar trends for torcetrapib. In beagle dogs, oral administration of SEDDS formulations produced only moderate differences in plasma exposure relative to the differences seen in vitro, but in vivo exposure of CP-532,623 was greatly enhanced by lipid-based delivery compared with a powder formulation. The correlation between in vitro solubilization and in vivo exposure was present but nonlinear, suggesting that in vitro digestion testing can be a conservative predictor and that good in vivo exposure is achievable even when formulations show substantial drug precipitation during digestion.
Original abstract
The present study investigated the use of lipid based drug delivery systems to enhance the oral bioavailability of the CETP inhibitors CP-532,623 and torcetrapib. A series of self-emulsifying lipid based drug delivery systems (SEDDS) were assembled and examined using an in vitro lipid digestion model to evaluate patterns of drug precipitation under simulated intestinal conditions. Drug exposure after oral administration of the same formulations was subsequently assessed in beagle dogs. CP-532,623 was maintained in a solubilised state during dispersion of most formulations in simulated intestinal fluid, however, solubilisation capacity was reduced to various degrees upon in vitro digestion. Administration of SEDDS formulations to beagle dogs resulted in moderate differences in plasma AUC when compared to the differences in solubilisation observed in vitro. Similar trends were observed for torcetrapib. In all cases, however, in vivo exposure of CP-532,623 was greatly enhanced by administration in lipid based drug delivery systems when compared to a powder formulation. Some correlation between in vitro solubilisation and in vivo drug exposure (AUC) was evident; however, this was not linear. The data suggest that for highly lipophilic drugs such as CP-532,623 in vitro digestion data may be a conservative in vitro indicator of utility and that good exposure may be evident even for formulations that result in significant drug precipitation during in vitro digestion.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.