Anacetrapib
Anacetrapib doubles HDL cholesterol and, unlike niacin, boosts cholesterol efflux per particle at high HDL levels (ATVB 2010)
Original title: Cholesterol efflux potential and antiinflammatory properties of high-density lipoprotein after treatment with niacin or anacetrapib
Eighteen patients received niacin 2 g/d for 4 weeks and 20 received anacetrapib 300 mg/d for 8 weeks, with placebo groups for comparison, to test how each drug affects HDL-mediated cholesterol efflux from macrophages and the anti-inflammatory suppression of toll-like receptor signaling by HDL. HDL cholesterol rose 30% with niacin and approximately 100% with anacetrapib. Niacin increased net cholesterol efflux from foam cells mainly by raising HDL concentration, whereas anacetrapib increased efflux both by raising HDL concentration and by boosting efflux at matched HDL concentrations, an effect most pronounced above 12 microgram/mL HDL cholesterol and linked to greater LCAT and apoE content, entirely dependent on ABCA1 and ABCG1 expression. All HDL preparations showed similar, HDL-concentration-proportional anti-inflammatory effects on macrophages, partly dependent on ABCA1/ABCG1, indicating CETP inhibition by anacetrapib enhances HDL particle functionality beyond simply raising its concentration.
Original abstract
Objective: To examine the effects of treatments with niacin or anacetrapib (an inhibitor of cholesteryl ester transfer protein) on the ability of high-density lipoprotein (HDL) to promote net cholesterol efflux and reduce toll-like receptor-mediated inflammation in macrophages.
Methods And Results: A total of 18 patients received niacin, 2 g/d, for 4 weeks; 20 patients received anacetrapib, 300 mg/d, for 8 weeks; and 2 groups (n=4 and n=5 patients) received placebo. HDL samples were isolated by polyethylene glycol precipitation or ultracentrifugation, tested for the ability to promote cholesterol efflux in cholesterol-loaded THP-I or mouse peritoneal macrophages, or used to pretreat macrophages, followed by lipopolysaccharide exposure. HDL cholesterol levels were increased by 30% in response to niacin and by approximately 100% in response to anacetrapib. Niacin treatment increased HDL-mediated net cholesterol efflux from foam cells, primarily by increasing HDL concentration, whereas anacetrapib treatment increased cholesterol efflux by both increasing HDL concentration and causing increased efflux at matched HDL concentrations. The increased efflux potential of anacetrapib-HDL was more prominent at higher HDL cholesterol concentrations (>12 microg/mL), which was associated with an increased content of lecithin-cholesterol acyltransferase (LCAT) and apolipoprotein E and completely dependent on the expression of ATP binding cassette transporters (ABCA1 and ABCG1). Potent antiinflammatory effects of HDL were observed at low HDL concentrations (3 to 20 microg/mL) and were partly dependent on the expression of ABCA1 and ABCG1. All HDL preparations showed similar antiinflammatory effects, proportionate to the HDL cholesterol concentration.
Conclusions: Niacin treatment caused a moderate increase in the ability of HDL to promote net cholesterol efflux, whereas inhibition of cholesteryl ester transfer protein via anacetrapib led to a more dramatic increase in association with enhanced particle functionality at higher HDL concentrations. All HDLs exhibited potent ability to suppress macrophage toll-like receptor 4-mediated inflammatory responses, in a process partly dependent on cholesterol efflux via ABCA1 and ABCG1.
anacetrapibHDL biologymechanisms
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.