2005•Journal of Medicinal ChemistryOpen access
Discovery and Preclinical Profile of Saxagliptin (BMS-477118): A Highly Potent, Long-Acting, Orally Active Dipeptidyl Peptidase IV Inhibitor for the Treatment of Type 2 Diabetes
David J. Augeri, Jeffrey A. Robl, David A. Betebenner, David R. Magnin, Ashish Khanna, James G. Robertson, Aiying Wang, Ligaya M. Simpkins, Prakash C. Taunk, Qi Zhong Huang, Song‐Ping Han, Benoni E. Abboa‐Offei, Michael Cap, Li Xin, Li Tao, Effie Tozzo, Gustav E. Welzel, Donald M. Egan, Jovita A. Marcinkeviciene, Shu Y. Chang, Scott A. Biller, Mark Kirby, Rex A. Parker, Lawrence G. Hamann
Abstract
Efforts to further elucidate structure-activity relationships (SAR) within our previously disclosed series of beta-quaternary amino acid linked l-cis-4,5-methanoprolinenitrile dipeptidyl peptidase IV (DPP-IV) inhibitors led to the investigation of vinyl substitution at the beta-position of alpha-cycloalkyl-substituted glycines. Despite poor systemic exposure, vinyl-substituted compounds showed extended duration of action in acute rat ex vivo plasma DPP-IV inhibition models. Oxygenated putative metabolites were prepared and were shown to exhibit the potency and extended duration of action of their precursors in efficacy models measuring glucose clearance in Zucker(fa/fa) rats. Extension of this approach to adamantylglycine-derived inhibitors led to the discovery of highly potent inhibitors, including hydroxyadamantyl compound BMS-477118 (saxagliptin), a highly efficacious, stable, and long-acting DPP-IV inhibitor, which is currently undergoing clinical trials for treatment of type 2 diabetes.