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Torcetrapib

Torcetrapib partly restores healthy HDL2 and HDL3 function in type IIB hyperlipidemia, boosting cholesterol efflux by up to 38 percent (Arterioscler Thromb Vasc Biol 2009)

Original title: Torcetrapib differentially modulates the biological activities of HDL2 and HDL3 particles in the reverse cholesterol transport pathway

Arterioscler Thromb Vasc Biol · · 6

Catalano G, Julia Z, Frisdal E, Vedie B, Fournier N, Le Goff W, Chapman MJ, Guerin M

This study examined how torcetrapib affects the metabolism and function of HDL2 and HDL3 particles in patients with type IIB hyperlipidemia (n=14) compared with healthy controls (n=11). After atorvastatin 10 mg per day alone for 6 weeks, then torcetrapib plus atorvastatin 60/10 mg per day for 6 more weeks, partial CETP inhibition reduced the abnormally high cholesteryl ester transfer rate from HDL3 to apoB-lipoproteins by 58% (p < 0.0001) toward normal, while transfer from HDL2, previously subnormal compared with controls (10.7 plus or minus 0.9 versus 29.3 plus or minus 4.8 microgram CE per hour per mL plasma), was not corrected. Torcetrapib enhanced the subnormal capacity of HDL2 to mediate free cholesterol efflux through both SR-BI and ABCG1 pathways by 38% and 35% respectively (both p < 0.03) versus baseline, and both in vitro and mouse studies showed CETP inhibition enhanced selective hepatic uptake of cholesteryl ester from HDL by 1.7-fold (p < 0.0003), which may compensate for the attenuated cholesteryl ester transfer to apoB-lipoproteins caused by torcetrapib.

Read the paper (DOI)PubMed

Original abstract

Objective: Therapeutic strategies to raise low plasma HDL-cholesterol levels, with concomitant normalization of the intravascular metabolism, physicochemical properties, and antiatherogenic function of HDL particles, are a major focus in atherosclerosis prevention.

Methods And Results: Patients displaying Type IIB hyperlipidemia (n=14) and healthy controls (n=11) were recruited. After drug washout, dyslipidemic patients first received atorvastatin (10 mg/d) for 6 weeks and subsequently torcetrapib/atorvastatin (60/10 mg/d) for the same period. Partial CETP inhibition markedly reduced supranormal CE transfer rates to normal levels from HDL3 (-58%; P<0.0001) to apoB-lipoproteins; endogenous CE transfer rates from HDL2 to apoB-lipoproteins were markedly subnormal as compared to those in control subjects (10.7+/-0.9 versus 29.3+/-4.8 microg CE/h/mL plasma, respectively). Torcetrapib enhanced the subnormal capacity of HDL2 particles from dyslipidemic patients to mediate free cholesterol efflux via both SR-BI and ABCG1 pathways (+38%; P<0.003 and +35%; P<0.03, respectively) as compared to baseline. In vitro observations and in vivo studies in mice demonstrated that CETP inhibition was associated with an enhanced selective hepatic uptake of CE from HDL particles (1.7-fold; P<0.0003).

Conclusions: CETP inhibition partially corrected the abnormal physicochemical and functional properties of HDL2 and HDL3 particles in type IIB hyperlipidemia. Enhanced hepatic selective uptake of HDL-CE may compensate for attenuated indirect CE transfer to apoB-containing lipoproteins via CETP attributable to torcetrapib.

HDL biologymechanismstorcetrapib

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