Anacetrapib
Only dalcetrapib preserves pre-beta HDL formation and boosts fecal sterol excretion, unlike torcetrapib and anacetrapib (J Lipid Res 2010)
Original title: Modulating cholesteryl ester transfer protein activity maintains efficient pre-β-HDL formation and increases reverse cholesterol transport
To understand how CETP activity affects HDL metabolism, this study compared dalcetrapib, torcetrapib, and anacetrapib. Unlike torcetrapib and anacetrapib, dalcetrapib requires cysteine 13 to decrease CETP-mediated transfer of cholesteryl ester from HDL to LDL and does not affect transfer from HDL3 to HDL2. Only dalcetrapib induced a conformational change in CETP in human plasma in vitro, also observed in vivo and correlated with CETP activity. CETP-induced pre-beta-HDL formation in vitro was unchanged by dalcetrapib at or below 3 micromolar and increased at 10 micromolar, while torcetrapib and anacetrapib dose-dependently inhibited pre-beta-HDL formation across 0.1 to 10 micromolar, indicating dalcetrapib modulates rather than blocks CETP activity. In hamsters injected with tritium-labeled cholesterol-loaded macrophages, only dalcetrapib significantly increased fecal elimination of both neutral sterols and bile acids, though all three compounds raised plasma HDL cholesterol, suggesting preserved pre-beta-HDL formation may be required for CETP modulation to enhance reverse cholesterol transport.
Original abstract
The mechanism by which cholesteryl ester transfer protein (CETP) activity affects HDL metabolism was investigated using agents that selectively target CETP (dalcetrapib, torcetrapib, anacetrapib). In contrast with torcetrapib and anacetrapib, dalcetrapib requires cysteine 13 to decrease CETP activity, measured as transfer of cholesteryl ester (CE) from HDL to LDL, and does not affect transfer of CE from HDL3 to HDL2. Only dalcetrapib induced a conformational change in CETP, when added to human plasma in vitro, also observed in vivo and correlated with CETP activity. CETP-induced pre-β-HDL formation in vitro in human plasma was unchanged by dalcetrapib ≤3 µM and increased at 10 µM. A dose-dependent inhibition of pre-β-HDL formation by torcetrapib and anacetrapib (0.1 to 10 µM) suggested that dalcetrapib modulates CETP activity. In hamsters injected with [³H]cholesterol-labeled autologous macrophages, and given dalcetrapib (100 mg twice daily), torcetrapib [30 mg once daily (QD)], or anacetrapib (30 mg QD), only dalcetrapib significantly increased fecal elimination of both [³H]neutral sterols and [³H]bile acids, whereas all compounds increased plasma HDL-[³H]cholesterol. These data suggest that modulation of CETP activity by dalcetrapib does not inhibit CETP-induced pre-β-HDL formation, which may be required to increase reverse cholesterol transport.
anacetrapibdalcetrapibmechanismstorcetrapib
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.