cetpinhibition.org

Outcomes trials

Schwartz reviews conflicting CETP genetic and animal evidence ahead of the anacetrapib and dalcetrapib outcomes trials (Curr Atheroscler Rep 2012)

Original title: New horizons for cholesterol ester transfer protein inhibitors

Curr Atheroscler Rep · · 6

Schwartz GG

This review examines cholesteryl ester transfer protein (CETP) inhibition as an HDL-targeted strategy to reduce cardiovascular risk, noting that no HDL-targeted intervention has yet proven effective. Most, though not all, observational studies link CETP polymorphisms associated with reduced activity and higher HDL cholesterol to reduced cardiovascular risk, and some, but not all, studies show CETP inhibition slows atherosclerosis in rabbits, while transgenic CETP expression promotes atherosclerosis in mice. Torcetrapib, the first CETP inhibitor in phase III trials, was abandoned after excess mortality linked to increased aldosterone and blood pressure, while anacetrapib produces very large HDL-C increases and large LDL-C reductions beyond statins, and dalcetrapib produces smaller HDL-C increases with minimal LDL-C effect; both allow macrophage cholesterol efflux to HDL in vitro without affecting blood pressure or aldosterone in vivo. The author concludes the two ongoing outcomes trials, with anacetrapib and dalcetrapib, will provide a conclusive test of whether CETP inhibition reduces cardiovascular risk.

Read the paper (DOI)PubMed

Original abstract

High-density lipoprotein (HDL) cholesterol levels bear an inverse relationship to cardiovascular risk. To date, however, no intervention specifically targeting HDL has been demonstrated to reduce cardiovascular risk. Cholesterol ester transfer protein (CETP) mediates transfer of cholesterol ester from HDL to apolipoprotein B-containing particles. Most, but not all observational cohort studies indicate that genetic polymorphisms of CETP associated with reduced activity and higher HDL cholesterol levels are also associated with reduced cardiovascular risk. Some, but not all studies indicate that CETP inhibition in rabbits retards atherosclerosis, whereas transgenic CETP expression in mice promotes atherosclerosis. Torcetrapib, the first CETP inhibitor to reach phase III clinical development, was abandoned due to excess mortality associated with increases in aldosterone and blood pressure. Two other CETP inhibitors have entered phase III clinical development. Anacetrapib is a potent inhibitor of CETP that produces very large increases in HDL cholesterol and large reductions in low-density lipoprotein (LDL) cholesterol, beyond those achieved with statins. Dalcetrapib is a less potent CETP inhibitor that produces smaller increases in HDL cholesterol with minimal effect on LDL cholesterol. Both agents appear to allow efflux of cholesterol from macrophages to HDL in vitro, and neither agent affects blood pressure or aldosterone in vivo. Two large cardiovascular outcomes trials, one with anacetrapib and one with dalcetrapib, should provide a conclusive test of the hypothesis that inhibition of CETP decreases cardiovascular risk.

the classoutcomes trials

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.