Novel ALK inhibitor AZD3463 inhibits neuroblastoma growth by overcoming crizotinib resistance and inducing apoptosis

新型 ALK 抑制剂 AZD3463 通过克服克唑替尼耐药性和诱导细胞凋亡来抑制神经母细胞瘤生长

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作者:Yongfeng Wang, Long Wang, Shan Guan, Wenming Cao, Hao Wang, Zhenghu Chen, Yanling Zhao, Yang Yu, Huiyuan Zhang, Jonathan C Pang, Sophia L Huang, Yo Akiyama, Yifan Yang, Wenjing Sun, Xin Xu, Yan Shi, Hong Zhang, Eugene S Kim, Jodi A Muscal, Fengmin Lu, Jianhua Yang

Abstract

ALK receptor tyrosine kinase has been shown to be a therapeutic target in neuroblastoma. Germline ALK activating mutations are responsible for the majority of hereditary neuroblastoma and somatic ALK activating mutations are also frequently observed in sporadic cases of advanced NB. Crizotinib, a first-line therapy in the treatment of advanced non-small cell lung cancer (NSCLC) harboring ALK rearrangements, demonstrates striking efficacy against ALK-rearranged NB. However, crizotinib fails to effectively inhibit the activity of ALK when activating mutations are present within its kinase domain, as with the F1174L mutation. Here we show that a new ALK inhibitor AZD3463 effectively suppressed the proliferation of NB cell lines with wild type ALK (WT) as well as ALK activating mutations (F1174L and D1091N) by blocking the ALK-mediated PI3K/AKT/mTOR pathway and ultimately induced apoptosis and autophagy. In addition, AZD3463 enhanced the cytotoxic effects of doxorubicin on NB cells. AZD3463 also exhibited significant therapeutic efficacy on the growth of the NB tumors with WT and F1174L activating mutation ALK in orthotopic xenograft mouse models. These results indicate that AZD3463 is a promising therapeutic agent in the treatment of NB.

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