The class
Review distills lessons from the torcetrapib failure for the CETP inhibitors that followed it into clinical development (Curr Clin Pharmacol 2012)
Original title: Current status of CETP inhibitors in the treatment of hyperlipidemia: an update
The inverse relationship between HDL-C and cardiovascular disease risk, largely attributed to the role of HDL in reverse cholesterol transport, motivated development of CETP inhibitors, which showed clinical efficacy in preliminary trials by substantially raising HDL-C. The field suffered a major setback when the phase 3 trial of torcetrapib, the first CETP inhibitor, was prematurely terminated for increased cardiovascular and noncardiovascular mortality, though subsequent animal and clinical studies indicated this mortality increase was specific to the torcetrapib molecule rather than a consequence of CETP inhibition itself. Dalcetrapib and anacetrapib, the next two CETP inhibitors, were well tolerated in phase I and II trials and, unlike torcetrapib, did not affect blood pressure or aldosterone levels. This review discusses the lessons drawn from the torcetrapib failure alongside the preclinical and clinical development of these subsequent CETP inhibitors and their potential role in managing hyperlipidemia and cardiovascular risk.
Original abstract
Introduction: The inverse relationship between HDL-C and cardiovascular disease risk suggests that increasing HDL-C could potentially reduce the disease risk. Reverse cholesterol transport is considered to be the primary mechanism by which HDL-C exerts its anti-atherogenic effects. A key regulator of RCT is cholesteryl ester transfer protein (CETP).
Areas Covered: Inhibition of CETP has been identified as a possible strategy for substantially increasing HDL-C levels and CETP inhibitors have demonstrated clinical efficacy in preliminary clinical trials. The development of this novel class suffered a major setback when the major phase 3 trial of torcetrapib, the first CETP inhibitior was prematurely terminated due to an increase in cardiovascular and noncardiovascular mortality. Subsequent animal and clinical studies have shown that the increase in cardiovascular mortality reported with torcetrapib was molecule specific and independent of its CETP inhibition effect. The other two CETP inhibitors i.e. dalcetrapib and anacetrapib were well tolerated in phase I and II clinical trials and unlike torcetrapib, did not affect blood pressure and aldosterone levels. In this review article the authors have discussed the lessons learned from torcetrapib failure and important preclinical and clinical developments of CETP inhibitors and their role in management of hyperlipidemia and cardiovascular risk reduction.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.