Torcetrapib
Doubling the dose of torcetrapib from 60 to 120 mg turns a modest boost in macrophage cholesterol efflux into a dramatic one (Arterioscler Thromb Vasc Biol 2007)
Original title: Inhibition of cholesteryl ester transfer protein by torcetrapib modestly increases macrophage cholesterol efflux to HDL
This study examined how pharmacological CETP inhibition affects the ability of HDL to promote net cholesterol efflux from human THP-1 macrophage foam cells. Two groups of 8 healthy, moderately hyperlipidemic subjects received torcetrapib at 60 or 120 mg daily for 8 weeks, raising HDL cholesterol by 50% and 60% respectively. The 60 mg dose increased HDL-mediated net cholesterol efflux from foam cells primarily by raising HDL concentration, while the 120 mg dose increased efflux both by raising HDL concentration and by boosting efflux at matched HDL concentrations. HDL2 showed increased content of lecithin:cholesterol acyltransferase and apolipoprotein E only at the 120 mg dose, and ABCG1 activity accounted for 40% to 50% of net cholesterol efflux to both control and torcetrapib-modified HDL. CETP inhibition with torcetrapib thus produced a modest efflux increase at 60 mg but a more dramatic increase at 120 mg, tied to enhanced HDL particle functionality.
Original abstract
Objective: This study examines the effects of pharmacological inhibition of cholesteryl ester transfer protein (CETP) on the ability of high-density lipoprotein particles (HDL) to promote net cholesterol efflux from human THP-1 macrophage foam cells.
Methods And Results: Two groups of 8 healthy, moderately hyperlipidemic subjects received the CETP inhibitor torcetrapib at 60 or 120 mg daily for 8 weeks. Torcetrapib increased HDL cholesterol levels in both groups by 50% and 60%, respectively. Compared with baseline, torcetrapib 60 mg daily increased HDL-mediated net cholesterol efflux from foam cells primarily by increasing HDL concentrations, whereas 120 mg daily torcetrapib increased cholesterol efflux both by increasing HDL concentration and by causing increased efflux at matched HDL concentrations. There was an increased content of lecithin:cholesterol acyltransferase (LCAT) and apolipoprotein E (apoE) in HDL-2 only at the 120 mg dose. ABCG1 activity was responsible for 40% to 50% of net cholesterol efflux to both control and T-HDL.
Conclusions: These data indicate that inhibition of CETP by torcetrapib causes a modest increase in the ability of HDL to promote net cholesterol efflux at the 60 mg dose, and a more dramatic increase at the 120 mg dose in association with enhanced particle functionality.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.