Dalcetrapib
The dal-ACUTE trial finds dalcetrapib raises HDL cholesterol by a third after acute coronary syndrome but boosts cholesterol efflux by only a tenth (Eur Heart J 2014)
Original title: The effect of cholesteryl ester transfer protein inhibition on lipids, lipoproteins, and markers of HDL function after an acute coronary syndrome: the dal-ACUTE randomized trial
The dal-ACUTE trial randomized 300 patients 1:1 to dalcetrapib 600 mg per day or placebo within one week of an acute coronary syndrome. After 4 weeks, dalcetrapib increased HDL cholesterol by 33.7% and apolipoprotein A1 by 11.8% (both p < 0.001), and total cholesterol efflux by 9.5% (p = 0.003), principally through a non-ABCA1-mediated pathway, without significant changes in pre-beta1-HDL levels. The rise in total efflux correlated most strongly with increases in apolipoprotein A1 and HDL-C rather than pre-beta1-HDL. The much larger increase in HDL-C than in efflux and apolipoprotein A1 supports a dissociation between improvements in HDL function and HDL-C levels.
Original abstract
Aims: The effects of cholesteryl ester transfer protein (CETP) inhibition on lipids, inflammation, and markers of high-density lipoprotein (HDL) function, following an acute coronary syndrome (ACS), are unknown.
Methods And Results: The dal-ACUTE study randomized 300 patients (1 : 1) to dalcetrapib 600 mg/day or placebo within 1 week of an ACS. The primary endpoint was per cent change in HDL-cholesterol (HDL-C) after 4 weeks. Secondary endpoints included apolipoprotein levels, markers of HDL function, and inflammation. Dalcetrapib treatment increased HDL-C and apolipoprotein A1 by 33.7 and 11.8%, respectively (both P < 0.001) and total cholesterol efflux by 9.5% (P = 0.003) after 4 weeks, principally via an increase in non-ATP-binding cassette transporter (ABC) A1-mediated efflux, without statistically significant changes in pre-β1-HDL levels. The increase in total efflux with dalcetrapib correlated most strongly with increases in apolipoprotein A1 and HDL-C (r = 0.46 and 0.43, respectively) rather than the increase in pre-β1-HDL (r = 0.32). Baseline and on-treatment ABCA1-mediated efflux correlated most strongly with pre-β1-HDL levels; in contrast, non-ABCA1-mediated efflux correlated better with apolipoprotein A1 and HDL-C levels.
Conclusions: High-density lipoprotein raised through CETP inhibition with dalcetrapib improves cholesterol efflux, principally via a non-ABCA1-mediated pathway. While HDL-C was increased by one-third, apolipoprotein A1 and total efflux were increased only by one-tenth, supporting the concept of dissociation between improvements in HDL function and HDL-C levels, which may be of relevance to ongoing trials and the development of therapeutic interventions targeting HDL.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.