cetpinhibition.org

Anacetrapib

CETP inhibitors raise blood pressure through a CETP-independent, redox- and STAT3-dependent vascular contraction pathway (J Pharmacol Exp Ther 2016)

Original title: Off-Target Vascular Effects of Cholesteryl Ester Transfer Protein Inhibitors Involve Redox-Sensitive and Signal Transducer and Activator of Transcription 3-Dependent Pathways

J Pharmacol Exp Ther · · 7

Rios FJ, Lopes RA, Neves KB, Camargo LL, Montezano AC, Touyz RM

Since elevated blood pressure was an unexpected finding in some CETP inhibitor trials, this study tested whether torcetrapib, dalcetrapib, and anacetrapib directly affect vascular function, using resistance arteries and vascular smooth muscle cells from rats, which naturally lack the CETP gene. All three inhibitors increased phenylephrine-stimulated vascular contraction (logEC50 6.6 plus or minus 0.1, 6.4 plus or minus 0.06, and 6.2 plus or minus 0.09 versus control 5.9 plus or minus 0.05), and only torcetrapib reduced endothelium-dependent vasorelaxation. These effects were blunted by the reactive oxygen species scavenger N-acetylcysteine and by the STAT3 inhibitor S3I-201, and the inhibitors increased phosphorylation of the procontractile proteins myosin light chain and MYPT1 as well as STAT3 phosphorylation (3- to 4-fold), with STAT3 phosphorylation unaffected by N-acetylcysteine or a Nox1/4 inhibitor. Since rats lack the CETP gene, these vasoactive effects occur independently of CETP itself, through redox-sensitive, STAT3-dependent, MAPK-independent pathways that may explain the hypertension seen with these drugs.

Read the paper (DOI)PubMed

Original abstract

Elevated blood pressure was an unexpected outcome in some cholesteryl ester transfer protein (CETP) inhibitor trials, possibly due to vascular effects of these drugs. We investigated whether CETP inhibitors (torcetrapib, dalcetrapib, anacetrapib) influence vascular function and explored the putative underlying molecular mechanisms. Resistance arteries and vascular smooth muscle cells (VSMC) from rats, which lack the CETP gene, were studied. CETP inhibitors increased phenylephrine-stimulated vascular contraction (logEC50 (:) 6.6 ± 0.1; 6.4 ± 0.06, and 6.2 ± 0.09 for torcetrapib, dalcetrapib, and anacetrapib, respectively, versus control 5.9 ± 0.05). Only torcetrapib reduced endothelium-dependent vasorelaxation. The CETP inhibitor effects were ameliorated by N-acetylcysteine (NAC), a reactive oxygen species (ROS) scavenger, and by S3I-201 [2-hydroxy-4-[[2-(4-methylphenyl)sulfonyloxyacetyl]amino]benzoic acid], a signal transducer and activator of transcription 3 (STAT3) inhibitor. CETP inhibitors increased the phosphorylation (2- to 3-fold) of vascular myosin light chain (MLC) and myosin phosphatase target subunit 1 (MYPT1) (procontractile proteins) and stimulated ROS production. CETP inhibitors increased the phosphorylation of STAT3 (by 3- to 4-fold), a transcription factor important in cell activation. Activation of MLC was reduced by NAC, GKT137831 [2-(2-chlorophenyl)-4-[3-(dimethylamino)phenyl]-5-methyl-1H-pyrazolo[4,3-c]pyridine-3,6-dione] (Nox1/4 inhibitor), and S3I-201. The phosphorylation of STAT3 was unaffected by NAC and GKT137831. CETP inhibitors did not influence activation of mitogen-activated proteins kinases (MAPK) or c-Src. Our data demonstrate that CETP inhibitors influence vascular function and contraction through redox-sensitive, STAT3-dependent, and MAPK-independent processes. These phenomena do not involve CETP because the CETP gene is absent in rodents. Findings from our study indicate that CETP inhibitors have vasoactive properties, which may contribute to the adverse cardiovascular effects of these drugs such as hypertension.

anacetrapibdalcetrapibsafetytorcetrapib

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