Torcetrapib
Torcetrapib alone clears apoB100 faster, but added to atorvastatin it instead cuts LDL and IDL production (Arterioscler Thromb Vasc Biol 2006)
Original title: Effects of the cholesteryl ester transfer protein inhibitor torcetrapib on apolipoprotein B100 metabolism in humans
Because CETP inhibition with torcetrapib reduces plasma triglyceride, LDL cholesterol, and apolipoprotein B (apoB) levels alongside raising HDL cholesterol, this study defined the kinetic mechanisms behind the apoB reduction. Nineteen subjects, 9 pretreated with atorvastatin 20 mg, received placebo for 4 weeks then torcetrapib 120 mg once daily for 4 weeks, with 6 non-atorvastatin subjects continuing to torcetrapib 120 mg twice daily; deuterated leucine infusion after each phase measured VLDL, IDL, and LDL apoB100 production and clearance rates. Torcetrapib alone significantly reduced VLDL, IDL, and LDL apoB100 pool sizes by enhancing the fractional catabolic rate of apoB100 in each fraction. On a background of atorvastatin, torcetrapib also significantly reduced these pool sizes, but the VLDL reduction was linked to enhanced clearance while the IDL and LDL reductions were linked to reduced production, showing torcetrapib lowers apoB100 mainly through faster clearance when used alone, but through both enhanced VLDL clearance and reduced IDL/LDL production when added to atorvastatin.
Original abstract
Objective: Cholesteryl ester transfer protein (CETP) inhibition with torcetrapib not only increases high-density lipoprotein cholesterol levels but also significantly reduces plasma triglyceride, low-density lipoprotein (LDL) cholesterol, and apolipoprotein B (apoB) levels. The goal of the present study was to define the kinetic mechanism(s) by which CETP inhibition reduces levels of apoB-containing lipoproteins.
Methods And Results: Nineteen subjects, 9 of whom were pretreated with 20 mg atorvastatin, received placebo for 4 weeks, followed by 120 mg torcetrapib once daily for 4 weeks. Six subjects in the nonatorvastatin group received 120 mg torcetrapib twice daily for an additional 4 weeks. After each phase, subjects underwent a primed-constant infusion of deuterated leucine to endogenously label newly synthesized apoB to determine very low-density lipoprotein (VLDL), intermediate-density lipoprotein (IDL) and LDL apoB100 production, and fractional catabolic rates (FCRs). Once-daily 120 mg torcetrapib significantly reduced VLDL, IDL, and LDL apoB100 pool sizes by enhancing the FCR of apoB100 within each fraction. On a background of atorvastatin, 120 mg torcetrapib significantly reduced VLDL, IDL, and LDL apoB100 pool sizes. The reduction in VLDL apoB100 was associated with an enhanced apoB100 FCR, whereas the decreases in IDL and LDL apoB100 were associated with reduced apoB100 production.
Conclusions: These data indicate that when used alone, torcetrapib reduces VLDL, IDL, and LDL apoB100 levels primarily by increasing the rate of apoB100 clearance. In contrast, when added to atorvastatin treatment, torcetrapib reduces apoB100 levels mainly by enhancing VLDL apoB100 clearance and reducing production of IDL and LDL apoB100.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.