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Anacetrapib

Review distinguishes CETP inhibitors from the CETP modulator dalcetrapib by their opposite effects on HDL2-to-HDL3 transfer (Curr Opin Lipidol 2011)

Original title: Different effects of compounds decreasing cholesteryl ester transfer protein activity on lipoprotein metabolism

Curr Opin Lipidol · · 6

Niesor EJ

This review compares how pharmacological inhibition or modulation of CETP affects lipoprotein characteristics, HDL remodeling, and function relative to human CETP deficiency. Torcetrapib, anacetrapib, and dalcetrapib all inhibited heterotypic cholesteryl ester transfer from HDL to LDL and VLDL with similar potency, though the potency of dalcetrapib was time-dependent. However, homotypic cholesteryl ester transfer from HDL3 to HDL2 via recombinant CETP was inhibited by torcetrapib and anacetrapib, classified as CETP inhibitors, but not by dalcetrapib, classified as a CETP modulator. In a hamster reverse cholesterol transport model, only dalcetrapib increased fecal sterol efflux from macrophages. Clinical dose-response studies showed qualitative and quantitative differences in HDL and LDL particle composition and distribution between the CETP inhibitors and the modulator, with ongoing outcomes studies expected to clarify the relative importance of CETP inhibition versus modulation for cardiovascular disease treatment.

Read the paper (DOI)PubMed

Original abstract

Purpose Of Review: Review literature on the effect of decreasing cholesteryl ester transfer protein (CETP) activity through pharmacological inhibition or modulation in preclinical and clinical settings compared to human CETP deficiency on lipoprotein characteristics, HDL remodelling and function.

Recent Findings: Torcetrapib, anacetrapib and dalcetrapib inhibited the heterotypic transfer of cholesteryl ester from HDL to LDL and/or VLDL with similar potency, although the potency of dalcetrapib was time dependent. Homotypic transfer of cholesteryl ester from HDL3 to HDL2 via recombinant human CETP was inhibited by torcetrapib and anacetrapib (CETP inhibitors, CETPi) but not by dalcetrapib (CETP modulator, CETPm). In a hamster model of reverse cholesterol transport, only dalcetrapib increased efflux of fecal sterols from macrophages to feces. In clinical studies, dose-responses of CETPi and CETPm demonstrate qualitative and quantitative changes in HDL and LDL particle composition and distribution.

Summary: Recent studies of the CETPi torcetrapib and anacetrapib and the CETPm dalcetrapib have shown differences in the resulting increase in HDL-cholesterol and in the level of HDL remodelling and potential for effective reverse cholesterol transport. Results from ongoing clinical outcomes studies with anacetrapib and dalcetrapib will clarify the relevance of CETP inhibition versus modulation towards HDL remodelling in the treatment of cardiovascular diseases.

anacetrapibdalcetrapibmechanismstorcetrapib

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