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Torcetrapib

Torcetrapib raises blood pressure across four independent cardiovascular models, validating them as predictive lead-optimization tools (J Cardiovasc Pharmacol 2012)

Original title: Strategic integration of in vivo cardiovascular models during lead optimization: predictive value of 4 models independent of species, route of administration, and influence of anesthesia

J Cardiovasc Pharmacol · · 5

Fryer RM, Harrison PC, Muthukumarana A, Nodop Mazurek SG, Ng KJ, Chen RR, Harrington KE, Dinallo RM, Chi L, Reinhart GA

To determine how to strategically use in vivo cardiovascular models during lead optimization, researchers profiled torcetrapib and a novel steroid hormone mimetic (SHM-1121X), both known to carry off-target cardiovascular liabilities, across four in vivo models spanning species, route of administration, and anesthesia state. In anesthetized rats, intravenous torcetrapib raised mean arterial pressure (MAP) by 2 to 18 mmHg above vehicle across low and high doses, and in anesthetized dogs by 4 to 22 mmHg. In conscious rats, a single oral dose raised MAP by 10 to 18 mmHg, and in conscious dogs by 3 to 12 mmHg, while SHM-1121X produced marked hypotension in the same models. Pharmacokinetic-pharmacodynamic analysis showed strong correlation across models for both compounds, validating the predictive value of these models for cardiovascular liability screening and enabling a decisive no-go decision for SHM-1121X.

Read the paper (DOI)PubMed

Original abstract

The strategic integration of in vivo cardiovascular models is important during lead optimization to enable a wide therapeutic index for cardiovascular safety. However, under what conditions (eg, species, route of administration, anesthesia) studies should be performed to drive go/no-go is open to interpretation. Two compounds, torcetrapib and a novel steroid hormone mimetic (SHM-1121X), both with off-target cardiovascular liabilities, were profiled in 4 in vivo cardiovascular models. Overlapping plasma concentrations of torcetrapib were achieved in all models tested; values ranged from therapeutic to supratherapeutic. In anesthetized rats, intravenous torcetrapib elicited dose-dependent increases in mean arterial pressure (MAP; 2-18 mm Hg above vehicle during the low- and high-dose infusion), and in anesthetized dogs, torcetrapib increased MAP from 4 to 22 mm Hg. In conscious rats, a single oral dose of torcetrapib increased MAP from 10 to 18 mm Hg in the low-dose and high-dose groups, respectively, whereas in conscious dogs, MAP increased from 3 to 12 mm Hg. SHM-1121X produced marked hypotension in the same models. Pharmacokinetic-pharmacodynamic analysis demonstrated strong correlation across the models tested for both compounds. Results suggest that equivalency across models allows for flexibility to address key issues and enable go/no-go during lead optimization without concern for discordant results. The predictive value of each model was validated with torcetrapib and, when put into practice, led to a decisive no-go for SHM-1121X.

blood pressuresafetytorcetrapib

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