药物重新定位
虚拟筛选
药物发现
药理学
重新调整用途
表型筛选
化学
关节炎
药品
炎症
结肠炎
激酶
脚手架
药代动力学
类风湿性关节炎
效力
小分子
药物开发
裂谷1
癌症研究
自身免疫性疾病
英夫利昔单抗
高通量筛选
药效学
计算生物学
炎症性肠病
白细胞介素23
表型
药效团
合理设计
节点2
免疫学
脂质信号
结构-活动关系
医学
作者
Jihong Wan,Xiaoyu Xiong,Zixiang Geng,Benjun Yuan,Youzhen Ma,Yan Zhao,Yufen Zhao,Zhiqin Wong,Xinyi Kang,Rong Fan,Delin Min,Huanren Yan,Yibo Chen,Dongyi He,Jian-Ping Zuo,Han-Chen Xu,Yang Ding,Zhiyi Liu,Zhe Hu,Feng Li
标识
DOI:10.1021/acs.jmedchem.5c03145
摘要
Autoimmune diseases remain challenging to treat due to the limitations of TNFα-targeted biologics and the inefficacy of small molecules directly targeting TNFα. RIPK1, a central mediator of TNFα-driven inflammation and necroptosis, offers a promising alternative therapeutic target. Using drug repurposing and phenotype-based high-content screening of 378 clinical-stage kinase inhibitors, TAK-117 (a PI3Kα inhibitor) was identified as a RIPK1 hit compound with a novel pyridoimidazole scaffold. Guided by structure-based optimization and four iterative SAR cycles, WJH-C19 was developed, exhibiting >1000-fold increased RIPK1 potency (IC50 = 5.7 nM) and negligible PI3Kα activity (IC50 > 10 μM). Mechanistically, WJH-C19 suppressed the RIPK1/RIPK3/MLKL signaling axis, attenuating inflammatory responses. Oral administration of WJH-C19 achieved robust efficacy in DSS-induced colitis and CFA-induced arthritis models, with favorable pharmacokinetics and no observable toxicity. These results establish WJH-C19 as a potent lead and highlight the pyridoimidazole scaffold as a privileged chemotype for RIPK1-targeted drug discovery in autoimmune diseases.
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