癌症研究
激酶
SOX2
癌症
人口
乳腺癌
医学
药理学
极光激酶
极光A激酶
生物
细胞周期
内科学
细胞生物学
生物化学
基因
环境卫生
转录因子
作者
Fei-Meng Zheng,Zi-Jie Long,Zhi-Jie Hou,Yu Luo,Ling-Zhi Xu,Jiang-Long Xia,Xiao-Ju Lai,Ji-Wei Liu,Xi Wang,Kamran I. Muhammad,Min Yan,Shu-Juan Shao,Eric W.‐F. Lam,Shao-Wu Wang,Gui Lu,Quentin Liu
标识
DOI:10.1158/1535-7163.mct-13-1029
摘要
Abstract Chemoresistance is a major cause of cancer treatment failure. Tumor-initiating cells (TIC) have attracted a considerable amount of attention due to their role in chemoresistance and tumor recurrence. Here, we evaluated the small-molecule Aurora kinase inhibitor AKI603 as a novel agent against TICs in breast cancer. AKI603 significantly inhibited Aurora-A (AurA) kinase and induced cell-cycle arrest. In addition, the intragastric administration of AKI603 reduced xenograft tumor growth. Interestingly, we found that breast cancer cells that were resistant to epirubicin expressed a high level of activated AurA and also have a high CD24Low/CD44High TIC population. The inhibition of AurA kinase by AKI603 abolished the epirubicin-induced enrichment of TICs. Moreover, AKI603 suppressed the capacity of cells to form mammosphere and also suppressed the expression of self-renewal genes (β-catenin, c-Myc, Sox2, and Oct4). Thus, our work suggests the potential clinical use of the small-molecule Aurora kinase inhibitor AKI603 to overcome drug resistance induced by conventional chemotherapeutics in breast cancer. Mol Cancer Ther; 13(8); 1991–2003. ©2014 AACR.
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