Improvement of physiochemical properties of the tetrahydroazepinoindole series of farnesoid X receptor (FXR) agonists: beneficial modulation of lipids in primates

  • J Med Chem. 2010 Feb 25;53(4):1774-87. doi: 10.1021/jm901650u.
Joseph T Lundquist  1 ,  Douglas C Harnish ,  Callain Y Kim ,  John F Mehlmann ,  Rayomand J Unwalla ,  Kristin M Phipps ,  Matthew L Crawley ,  Thomas Commons ,  Daniel M Green ,  Weixin Xu ,  Wah-Tung Hum ,  Julius E Eta ,  Irene Feingold ,  Vikram Patel ,  Mark J Evans ,  Kehdih Lai ,  Lisa Borges-Marcucci ,  Paige E Mahaney ,  Jay E Wrobel
Affiliations
  • 1. Department of Chemical Sciences, Wyeth Research, 500 Arcola Road, Collegeville, Pennsylvania 19426, USA. [email protected]
Abstract

In an effort to develop orally active farnesoid X receptor (FXR) agonists, a series of tetrahydroazepinoindoles with appended solubilizing amine functionalities were synthesized. The crystal structure of the previously disclosed FXR agonist, 1 (FXR-450), aided in the design of compounds with tethered solubilizing functionalities designed to reach the solvent cavity around the hFXR receptor. These compounds were soluble in 0.5% methylcellulose/2% Tween-80 in water (MC/T) for oral administration. In vitro and in vivo optimization led to the identification of 14dd and 14cc, which in a dose-dependent fashion regulated low density lipoprotein Cholesterol (LDLc) in low density lipoprotein receptor knockout (LDLR(-/-)) mice. Compound 14cc was dosed in female rhesus monkeys for 4 weeks at 60 mg/kg daily in MC/T vehicle. After 7 days, triglyceride (TG) levels and very low density lipoprotein Cholesterol (VLDLc) levels were significantly decreased and LDLc was decreased 63%. These data are the first to demonstrate the dramatic lowering of serum LDLc levels by a FXR agonist in primates and supports the potential utility of 14cc in treating dyslipidemia in humans beyond just TG lowering.