Anacetrapib
Same drug, opposite effect: dalcetrapib raised HDL in rabbits but cut it 48% in monkeys, while anacetrapib behaved consistently across species (J Lipid Res 2017)
Original title: Dalcetrapib and anacetrapib differently impact HDL structure and function in rabbits and monkeys
Circulating CETP levels vary across species, and this study compared how dalcetrapib and anacetrapib, the two CETP inhibitors then in large clinical outcomes trials, affect HDL particle subclasses and cholesterol efflux capacity in New Zealand White rabbits and vervet monkeys. In rabbits, both CETP inhibitors raised HDL-C, increased small and large alpha-migrating HDL, and boosted ABCA1-mediated cholesterol efflux. Anacetrapib produced similar results in monkeys, but dalcetrapib had the opposite effect: LDL-C rose 42% and HDL-C fell 48% (P < 0.01), with alpha-HDL down 16% and prebeta-HDL down 69% (P < 0.001 and P < 0.01), reducing serum cholesterol efflux capacity. The authors conclude CETP inhibitors modulate mature and small HDL levels and consequently efflux capacity in vivo, but the opposite effects of dalcetrapib between species indicate its impact on HDL metabolism can vary greatly depending on the metabolic environment, a preclinical divergence relevant to interpreting animal data for this drug class.
Original abstract
Inhibition of cholesteryl ester transfer protein (CETP) increases HDL cholesterol (HDL-C) levels. However, the circulating CETP level varies and the impact of its inhibition in species with high CETP levels on HDL structure and function remains poorly characterized. This study investigated the effects of dalcetrapib and anacetrapib, the two CETP inhibitors (CETPis) currently being tested in large clinical outcome trials, on HDL particle subclass distribution and cholesterol efflux capacity of serum in rabbits and monkeys. New Zealand White rabbits and vervet monkeys received dalcetrapib and anacetrapib. In rabbits, CETPis increased HDL-C, raised small and large α-migrating HDL, and increased ABCA1-induced cholesterol efflux. In vervet monkeys, although anacetrapib produced similar results, dalcetrapib caused opposite effects because the LDL-C level was increased by 42% and HDL-C decreased by 48% (P < 0.01). The levels of α- and preβ-HDL were reduced by 16% (P < 0.001) and 69% (P < 0.01), resulting in a decrease of the serum cholesterol efflux capacity. CETPis modulate the plasma levels of mature and small HDL in vivo and consequently the cholesterol efflux capacity. The opposite effects of dalcetrapib in different species indicate that its impact on HDL metabolism could vary greatly according to the metabolic environment.
anacetrapibdalcetrapibHDL biology
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.