1区 · 医学
Article
作者: Chang, ChiehYing Y. ; Tino, Joseph ; Calambur, Deepa ; Duan, James J.-W. ; Salter-Cid, Luisa ; Tebben, Andrew J. ; Goldstine, Christine B. ; Kopcho, Lisa M. ; Lu, Zhonghui ; Shaw, Patrick J. ; Chen, Jing ; Susulic, Vojkan ; Ngu, Khehyong ; Macor, John E. ; Xie, Jenny H. ; Yanchunas, Joseph ; Xiao, Hai-Yun ; Lu, Hao ; Dhar, T. G. Murali ; Sheriff, Steven ; Guarino, Victor R. ; Hynes, John ; Gregor, Kurt R. ; Gao, Mian ; Jiang, Bin ; Burke, James R. ; Shuster, David J. ; Li, Ning ; Wu, Dauh-Rurng
Scaffold hopping and structure-based drug design were employed to identify substituted 4-aminoquinolines and 4-aminonaphthyridines as potent, small molecule inhibitors of tumor necrosis factor alpha (TNFα). Structure-activity relationships in both the quinoline and naphthyridine series leading to the identification of compound 42 with excellent potency and pharmacokinetic profile are discussed. X-ray co-crystal structure analysis and ultracentrifugation experiments clearly demonstrate that these inhibitors distort the TNFα trimer upon binding, leading to aberrant signaling when the trimer binds to TNF receptor 1 (TNFR1). Pharmacokinetic-pharmacodynamic activity of compound 42 in a TNF-induced IL-6 mouse model and in vivo activity in a collagen antibody-induced arthritis model, where it showed biologic-like in vivo efficacy, will be discussed.