| Literature DB >> 26359680 |
Chunjian Liu1, James Lin1, John Hynes1, Hong Wu1, Stephen T Wrobleski1, Shuqun Lin1, T G Murali Dhar1, Vivekananda M Vrudhula1, Jung-Hui Sun1, Sam Chao1, Rulin Zhao1, Bei Wang1, Bang-Chi Chen1, Gerry Everlof1, Christoph Gesenberg1, Hongjian Zhang1, Punit H Marathe1, Kim W McIntyre1, Tracy L Taylor1, Kathleen Gillooly1, David J Shuster1, Murray McKinnon1, John H Dodd1, Joel C Barrish1, Gary L Schieven1, Katerina Leftheris1.
Abstract
In search for prodrugs to address the issue of pH-dependent solubility and exposure associated with 1 (BMS-582949), a previously disclosed phase II clinical p38α MAP kinase inhibitor, a structurally novel clinical prodrug, 2 (BMS-751324), featuring a carbamoylmethylene linked promoiety containing hydroxyphenyl acetic acid (HPA) derived ester and phosphate functionalities, was identified. Prodrug 2 was not only stable but also water-soluble under both acidic and neutral conditions. It was effectively bioconverted into parent drug 1 in vivo by alkaline phosphatase and esterase in a stepwise manner, providing higher exposure of 1 compared to its direct administration, especially within higher dose ranges. In a rat LPS-induced TNFα pharmacodynamic model and a rat adjuvant arthritis model, 2 demonstrated similar efficacy to 1. Most importantly, it was shown in clinical studies that prodrug 2 was indeed effective in addressing the pH-dependent absorption issue associated with 1.Entities:
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Year: 2015 PMID: 26359680 DOI: 10.1021/acs.jmedchem.5b00839
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446