Structure-based drug discovery of novel fused-pyrazolone carboxamide derivatives as potent and selective AXL inhibitors

药理学 化学 体内 IC50型 铅化合物 药品 活力测定 激酶 细胞 体外 生物化学 医学 生物 生物技术
作者
Feifei Fang,Yang Dai,Hao Wang,Yinchun Ji,Xuewu Liang,Xia Peng,Jiyuan Li,Yangrong Zhao,Chunpu Li,Danyi Wang,Yazhou Li,Dong Zhang,Dan Zhang,Meiyu Geng,Hong Liu,Jing Ai,Yu Zhou
出处
期刊:Acta Pharmaceutica Sinica B [Elsevier]
卷期号:13 (12): 4918-4933 被引量:4
标识
DOI:10.1016/j.apsb.2023.10.002
摘要

As a novel and promising antitumor target, AXL plays an important role in tumor growth, metastasis, immunosuppression and drug resistance of various malignancies, which has attracted extensive research interest in recent years. In this study, by employing the structure-based drug design and bioisosterism strategies, we designed and synthesized in total 54 novel AXL inhibitors featuring a fused-pyrazolone carboxamide scaffold, of which up to 20 compounds exhibited excellent AXL kinase and BaF3/TEL-AXL cell viability inhibitions. Notably, compound 59 showed a desirable AXL kinase inhibitory activity (IC50: 3.5 nmol/L) as well as good kinase selectivity, and it effectively blocked the cellular AXL signaling. In turn, compound 59 could potently inhibit BaF3/TEL-AXL cell viability (IC50: 1.5 nmol/L) and significantly suppress GAS6/AXL-mediated cancer cell invasion, migration and wound healing at the nanomolar level. More importantly, compound 59 oral administration showed good pharmacokinetic profile and in vivo antitumor efficiency, in which we observed significant AXL phosphorylation suppression, and its antitumor efficacy at 20 mg/kg (qd) was comparable to that of BGB324 at 50 mg/kg (bid), the most advanced AXL inhibitor. Taken together, this work provided a valuable lead compound as a potential AXL inhibitor for the further antitumor drug development.
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