The class
Review from the discoverer of CETP deficiency in Japan surveys anacetrapib and evacetrapib as candidate cures for atherogenic dyslipidemia (Mol Cells 2014)
Original title: Cholesteryl ester transfer protein (CETP) deficiency and CETP inhibitors
Low LDL cholesterol and high HDL cholesterol both reduce coronary heart disease risk, and CETP mediates the exchange of cholesteryl ester for triglycerides between HDL and VLDL/LDL. The authors, who published the first report of Japanese CETP-deficient patients with extremely high HDL-C, low LDL-C, and low coronary heart disease incidence, review how animal, clinical, and epidemiologic evidence supports CETP inhibition as a strategy to raise HDL-C and lower LDL-C. Four CETP inhibitors substantially raised HDL-C in dyslipidemic patients; anacetrapib 100 mg raised HDL-C by 138% and lowered LDL-C by 40%, while evacetrapib 500 mg raised HDL-C by 132% and lowered LDL-C by 40%. The review anticipates that larger long-term outcome trials, due to report final data in 2015, will determine whether CETP inhibitors meaningfully reduce atherosclerosis and cardiovascular events, potentially recreating a state resembling human CETP deficiency.
Original abstract
Epidemiologic studies have shown that low-density lipoprotein cholesterol (LDL-C) is a strong risk factor, whilst high-density lipoprotein cholesterol (HDL-C) reduces the risk of coronary heart disease (CHD). Therefore, strategies to manage dyslipidemia in an effort to prevent or treat CHD have primarily attempted at decreasing LDL-C and raising HDL-C levels. Cholesteryl ester transfer protein (CETP) mediates the exchange of cholesteryl ester for triglycerides between HDL and VLDL and LDL. We have published the first report indicating that a group of Japanese patients who were lacking CETP had extremely high HDL-C levels, low LDL-C levels and a low incidence of CHD. Animal studies, as well as clinical and epidemiologic evidences, have suggested that inhibition of CETP provides an effective strategy to raise HDL-C and reduce LDL-C levels. Four CETP inhibitors have substantially increased HDL-C levels in dyslipidemic patients. This review will discuss the current status and future prospects of CETP inhibitors in the treatment of CHD. At present anacetrapib by Merck and evacetrapib by Eli Lilly are under development. By 100mg of anacetrapib HDL-C increased by 138%, and LDL-C decreased by 40%. Evacetrapib 500 mg also showed dramatic 132% increase of HDL-C, while LDL-C decreased by 40%. If larger, long-term, randomized, clinical end point trials could corroborate other findings in reducing atherosclerosis, CETP inhibitors could have a significant impact in the management of dyslipidemic CHD patients. Inhibition of CETP synthesis by antisense oligonucleotide or small molecules will produce more similar conditions to human CETP deficiency and may be effective in reducing atherosclerosis and cardiovascular events. We are expecting the final data of prospective clinical trials by CETP inhibitors in 2015.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.