Torcetrapib
Torcetrapib impairs endothelial function and raises vascular oxidative stress in hypertensive rats, reversed by endothelin blockade (Eur Heart J 2012)
Original title: Torcetrapib impairs endothelial function in hypertension
To explain the off-target harm of torcetrapib seen in the ILLUMINATE trial, researchers treated spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto rats with torcetrapib (100 mg/kg/day) or placebo for 3 weeks. In SHR, torcetrapib caused a transient blood pressure rise, then markedly impaired acetylcholine-induced endothelium-dependent relaxation and downregulated endothelial nitric oxide synthase (eNOS) mRNA and protein (P < 0.0001, P < 0.01, and P < 0.05, respectively, versus placebo-treated SHR). Torcetrapib reduced nitric oxide release from cultured aortic endothelial cells (P < 0.01), increased vascular reactive oxygen species (P < 0.05), and increased endothelin-1 reactivity and aortic tissue content (P < 0.05) in SHR. The endothelin receptor A/B antagonist bosentan normalized endothelial function in torcetrapib-treated SHR (P < 0.05), leading the authors to conclude torcetrapib causes sustained endothelial dysfunction via reduced NO and increased oxidative stress and endothelin production, an off-target effect that should be ruled out when developing future CETP inhibitors.
Original abstract
Aims: A marked increase in HDL notwithstanding, the cholesterol ester transfer protein (CETP) inhibitor torcetrapib was associated with an increase in all-cause mortality in the ILLUMINATE trial. As underlying mechanisms remain elusive, the present study was designed to delineate potential off-target effects of torcetrapib.
Methods And Results: Spontaneously hypertensive rats (SHRs) and Wistar-Kyoto (WKY) rats were treated with torcetrapib (100 mg/kg/day; SHR-T and WKY-T) or placebo (SHR-P and WKY-P) for 3 weeks. Blood pressure transiently increased during the first 3 days of torcetrapib administration in SHRs and returned to baseline thereafter despite continued drug administration. Acetylcholine-induced endothelium-dependent relaxations of aortic rings were markedly impaired, and endothelial nitric oxide synthase (eNOS) mRNA and protein were down-regulated after 3 weeks of torcetrapib treatment in SHR (P < 0.0001, <0.01, and <0.05, resp. vs. SHR-P). Torcetrapib reduced NO release in cultured aortic endothelial cells (P < 0.01 vs. vehicle-treated cells) and increased generation of reactive oxygen species in aortas of SHR-T (P < 0.05, vs. SHR-P). Vascular reactivity to endothelin-1 (ET-1) and aortic ET-1 tissue content were increased in SHR-T (P < 0.05 vs. SHR-P). Importantly, the ET-1 receptor A/B (ET(A/B)) antagonist bosentan normalized endothelial function in SHR-T (P < 0.05).
Conclusion: Torcetrapib induces a sustained impairment of endothelial function, decreases eNOS mRNA, protein as well as NO release, stimulates vascular ROS and ET production, an effect that is prevented by chronic ET(A/B)-receptor blockade. These unexpected off-target effects of torcetrapib need to be ruled out in the clinical development of novel CETP inhibitors, particularly before a large patient population at increased cardiovascular risk is exposed to these compounds.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.