Torcetrapib
A review notes a meta-analysis linking CETP-lowering alleles to reduced coronary heart disease, distinct from the off-target failure of torcetrapib (J Lipid Res 2009)
Original title: The role of plasma lipid transfer proteins in lipoprotein metabolism and atherogenesis
This review examines how plasma lipid transfer proteins regulate lipoprotein metabolism and atherogenesis, contrasting CETP, which removes cholesteryl esters from HDL and lowers HDL levels, with phospholipid transfer protein (PLTP), which moves phospholipids into HDL and raises HDL levels. Transgenic mouse models and human genetic studies highlight the central regulatory role of both proteins: human CETP deficiency dramatically raises HDL cholesterol and apolipoprotein A-I, while PLTP variants with increased expression raise HDL levels. A recent meta-analysis found that common CETP alleles causing reduced CETP and increased HDL were associated with reduced coronary heart disease. The review notes the failure of the torcetrapib clinical trial may have been related in part to off-target toxicity, with ongoing phase 3 trials of other CETP inhibitors expected to clarify whether the strategy can succeed.
Original abstract
The plasma lipid transfer proteins promote the exchange of neutral lipids and phospholipids between the plasma lipoproteins. Cholesteryl ester transfer protein (CETP) facilitates the removal of cholesteryl esters from HDL and thus reduces HDL levels, while phospholipid transfer protein (PLTP) promotes the transfer of phospholipids from triglyceride-rich lipoproteins into HDL and increases HDL levels. Studies in transgenic mouse models and in humans with rare genetic deficiencies (CETP) or common genetic variants (CETP and PLTP) highlight the central role of these molecules in regulating HDL levels. Human CETP deficiency is associated with dramatic elevations of HDL cholesterol and apolipoprotein A-I levels, while PLTP variants with increased expression are associated with higher HDL levels. A recent meta-analysis suggests that common CETP alleles causing reduced CETP and increased HDL levels are associated with reduced coronary heart disease. The failure of a clinical trial with the CETP inhibitor torcetrapib may have been related in part to off-target toxicity. Ongoing phase 3 clinical trials with other CETP inhibitors may help to clarify if this strategy can ultimately be successful in the treatment of atherosclerosis.
geneticsHDL biologytorcetrapib
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.