癌症研究
膀胱癌
细胞凋亡
细胞周期
细胞周期检查点
蛋白激酶B
医学
表皮生长因子受体
癌症
癌细胞
靶向治疗
PI3K/AKT/mTOR通路
转录因子
细胞生长
激酶
表皮生长因子受体抑制剂
生长抑制
恶性肿瘤
生物
G1期
化学
福克斯M1
信号转导
表观遗传学
程序性细胞死亡
细胞
膀胱
作者
Lanpeng Lu,Hui Cheng,Shanhui Liu,yan TAO,Shengjun Fu,Jianzhong Lu,Yuwen Gong,Hui Ding,J. Tian,Lan-Lan Li,Zhiping Wang
标识
DOI:10.1158/1535-7163.mct-25-0507
摘要
Bladder cancer is the most prevalent malignancy of the urinary tract, characterized by an unfavorable prognosis, elevated rates of recurrence, and a lack of targeted therapeutic approaches. In this research, we evaluated the efficacy of TAK-901, a specific inhibitor targeting Aurora kinase, and elucidate the anti-cancer mechanisms in bladder cancer. TAK-901 exhibited a dose-dependent inhibition of proliferation, colony formation, and migration, as well as induction of apoptosis in T24 and UMUC-3 cells. Additionally, bladder cancer cells undergo cell cycle arrest at the G2/M phase when exposed to TAK-901. Mechanistic studies revealed that the targeted inhibition of EGFR by TAK-901 impacted AKT and FOXO3a phosphorylation, leading to the activation of FOXO-dependent transcriptional activity, which subsequently triggered apoptotic pathways through inducing BIM expression. Furthermore, our study demonstrated that TAK-901 attenuated tumor growth in the UMUC-3-Luc xenograft model and significantly reduced Ki-67 expression in tumor tissues. Finally, we propose a novel treatment strategy involving the synergistic inhibition of bladder cancer cell growth by combining TAK-901 with Afatinib. Our research strongly suggests that Aurora A and Aurora B are promising epigenetic therapeutic targets in bladder cancer. Furthermore, TAK-901 can function as a targeted kinase inhibitor and EGFR inhibitor for the treatment of bladder cancer by activating the FOXO signaling pathway, which induces apoptosis in bladder cancer cells.
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