髓系白血病
效力
化学
Fms样酪氨酸激酶3
白血病
磷酸化
突变
IC50型
癌症研究
药理学
体外
生物化学
基因
免疫学
生物
作者
Zhijie Wang,Jiongheng Cai,Jiwei Ren,Yun Chen,Yingli Wu,Jie Cheng,Kun Jia,Fei Huang,Zitian Cheng,Tiancheng Sheng,Shiyu Song,Hao Heng,Yifan Zhu,Weifang Tang,Hongmei Li,Tao Lu,Yadong Chen,Shuai Lü
标识
DOI:10.1021/acs.jmedchem.1c01196
摘要
Secondary mutations of FLT3 have become the main mechanism of FLT3 inhibitor resistance that presents a significant clinical challenge. Herein, a series of pyrazole-3-amine derivatives were synthesized and optimized to overcome the common secondary resistance mutations of FLT3. The structure-activity relationship and molecular dynamics simulation studies illustrated that the ribose region of FLT3 could be occupied to help address the obstacle of secondary mutations. Among those derivatives, compound 67 exhibited potent and selective inhibitory activities against FLT3-ITD-positive acute myeloid leukemia (AML) cells and possessed equivalent potency against transformed BaF3 cells with a variety of secondary mutations. Besides, cellular mechanism assays demonstrated that 67 strongly inhibited phosphorylation of FLT3 and its downstream signaling factors, as well as induced cell cycle arrest and apoptosis in MV4-11 cells. In the MV4-11 xenograft models, 67 exhibited potent antitumor potency without obvious toxicity. Taken together, these results demonstrated that 67 might be a drug candidate for the treatment of FLT3-ITD-positive AML.
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