Outcomes trials
Barter and Rye review the CETP inhibition hypothesis after the harm caused by torcetrapib and the futility of dalcetrapib (J Lipid Res 2012)
Original title: Cholesteryl ester transfer protein inhibition as a strategy to reduce cardiovascular risk
This review examines cholesteryl ester transfer protein (CETP) inhibition as a strategy to reduce cardiovascular risk. Inhibiting CETP in humans and rabbits raises HDL cholesterol while lowering non-HDL cholesterol, and inhibits diet-induced atherosclerosis in rabbits, yet torcetrapib failed to reduce atheroma in three imaging trials and caused excess deaths and cardiovascular events in a large outcome trial, likely from effects unrelated to CETP inhibition itself. A trial of the weaker CETP inhibitor dalcetrapib, which raises HDL less than torcetrapib and does not lower non-HDL lipoproteins, was later stopped early for futility but showed no evidence of harm. Despite these setbacks, the authors note the CETP inhibition hypothesis remains under active testing with anacetrapib and evacetrapib, more potent inhibitors that lack the off-target effects of torcetrapib.
Original abstract
Human and rabbit plasma contain a cholesteryl ester transfer protein (CETP) that promotes net mass transfers of cholesteryl esters from high density lipoproteins (HDL) to other plasma lipoprotein fractions. As predicted, inhibition of CETP in both humans and rabbits increases the concentration of cholesterol in the potentially protective HDL fraction, while decreasing it in potentially proatherogenic non-HDL fractions. Inhibition of CETP in rabbits also inhibits the development of diet-induced atherosclerosis. However, use of the CETP inhibitor torcetrapib in humans did not reduce atheroma in three imaging trials and caused an excess of deaths and cardiovascular events in a large clinical outcome trial. The precise explanation for the harm caused by torcetrapib is unknown but may relate to documented, potentially harmful effects unrelated to inhibition of CETP. More recently, a trial using the weak CETP inhibitor dalcetrapib, which raises HDL levels less effectively than torcetrapib and does not lower non-HDL lipoprotein levels, was terminated early for reasons of futility. There was no evidence that dalcetrapib caused harm in that trial. Despite these setbacks, the hypothesis that CETP inhibitors will be antiatherogenic in humans is still being tested in studies with anacetrapib and evacetrapib, two CETP inhibitors that are much more potent than dalcetrapib and that do not share the off-target adverse effects of torcetrapib.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.