cetpinhibition.org

Anacetrapib

In vivo, anacetrapib promotes rather than blocks cholesteryl ester flux into large HDL, contradicting in vitro homotypic-transfer predictions (Eur J Pharmacol 2015)

Original title: Inhibition of cholesteryl ester transfer protein increases cholesteryl ester content of large HDL independently of HDL-to-HDL homotypic transfer: in vitro vs in vivo comparison using anacetrapib and dalcetrapib

Eur J Pharmacol · · 6

Johns DG, Chen Y, Wang SP, Castro-Perez J, Previs SF, Roddy TP

The HDL cholesterol rise seen with CETP inhibition is usually attributed to blocked cholesteryl ester transfer from HDL to LDL, but CETP can also mediate homotypic cholesteryl ester transfer between HDL particles in vitro, a process thought to generate anti-atherogenic pre-beta HDL that CETP inhibition might inadvertently suppress. Since anacetrapib does not reduce pre-beta HDL in vivo, this study directly tested homotypic transfer from HDL3 to HDL2 using deuterium-labeled HDL3, comparing in vitro and in vivo settings. In vitro, both anacetrapib and dalcetrapib inhibited cholesteryl ester transfer from HDL3 to HDL2. In CETP-transgenic mice, however, anacetrapib did not inhibit but instead promoted the appearance of labeled cholesteryl ester from HDL3 in HDL2, indicating that anacetrapib remodels HDL particles and does not impair cholesteryl ester flux into larger HDL in vivo, contrary to what the in vitro homotypic-transfer model would predict.

Read the paper (DOI)PubMed

Original abstract

The increase in high density lipoprotein (HDL)-cholesterol observed with cholesteryl ester transfer protein (CETP) inhibition is commonly attributed to blockade of cholesteryl ester (CE) transfer from HDL to low density lipoprotein particles. In vitro, it has been observed that CETP can mediate transfer of CE between HDL particles ("homotypic transfer"), and it is postulated that this contributes to HDL remodeling and generation of anti-atherogenic pre-beta HDL. Inhibition of CETP could limit this beneficial remodeling and reduce pre-beta HDL levels. We observed that anacetrapib does not reduce pre-beta HDL in vivo, but the role of HDL homotypic transfer was not examined. This study evaluated the effects of anacetrapib on homotypic transfer from HDL3 to HDL2 in vivo using deuterium-labeled HDL3, and compared this to in vitro settings, where homotypic transfer was previously described. In vitro, both anacetrapib and dalcetrapib inhibited transfer of CE from HDL3 to HDL2 particles. In CETP transgenic mice, anacetrapib did not inhibit the appearance of labeled CE derived from HDL3 in HDL2 particles, but rather promoted the appearance of labeled CE in HDL2. We concluded that inhibition of CETP by anacetrapib promoted HDL particle remodeling, and does not impair the flux of cholesterol ester into larger HDL particles when studied in vivo, which is not consistent with in vitro observations. We further conclude, therefore, that the in vitro conditions used to examine HDL-to-HDL homotypic transfer may not recapitulate the in vivo condition, where multiple mechanisms contribute to cholesteryl ester flux into and out of the HDL pool.

anacetrapibdalcetrapibmechanisms

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