首页> 美国卫生研究院文献>Cancers >The Disruption of the β-Catenin/TCF-1/STAT3 Signaling Axis by 4-Acetylantroquinonol B Inhibits the Tumorigenesis and Cancer Stem-Cell-Like Properties of Glioblastoma Cells In Vitro and In Vivo
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The Disruption of the β-Catenin/TCF-1/STAT3 Signaling Axis by 4-Acetylantroquinonol B Inhibits the Tumorigenesis and Cancer Stem-Cell-Like Properties of Glioblastoma Cells In Vitro and In Vivo

机译:4-乙酰丙三醇B对β-连环蛋白/ TCF-1 / STAT3信号轴的破坏在体外和体内抑制胶质母细胞瘤细胞的肿瘤发生和类似于癌干细胞的特性

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摘要

Background: Glioblastoma (GBM), a malignant form of glioma, is characterized by resistance to therapy and poor prognosis. Accumulating evidence shows that the initiation, propagation, and recurrence of GBM is attributable to the presence of GBM stem cells (GBM-CSCs). Experimental approach: Herein, we investigated the effect of 4-Acetylantroquinonol B (4-AAQB), a bioactive isolate of Antrodia cinnamomea, on GBM cell viability, oncogenic, and CSCs-like activities. Results: We observed that aberrant expression of catenin is characteristic of GBM, compared to other glioma types (p = 0.0001, log-rank test = 475.2), and correlates with poor prognosis of GBM patients. Lower grade glioma and glioblastoma patients (n = 1152) with low catenin expression had 25% and 21.5% better overall survival than those with high catenin expression at the 5 and 10-year time-points, respectively (p = 3.57e-11, log-rank test = 43.8). Immunohistochemistry demonstrated that compared with adjacent non-tumor brain tissue, primary and recurrent GBM exhibited enhanced catenin expression (~10-fold, p < 0.001). Western blot analysis showed that 4-AAQB significantly downregulated β-catenin and dysregulated the catenin/LEF1/Stat3 signaling axis in U87MG and DBTRG-05MG cells, dose-dependently. 4-AAQB–induced downregulation of catenin positively correlated with reduced Sox2 and Oct4 nuclear expression in the cells. Furthermore, 4-AAQB markedly reduced the viability of U87MG and DBTRG-05MG cells with 48 h IC50 of 9.2 M and 12.5 M, respectively, effectively inhibited the nuclear catenin, limited the migration and invasion of GBM cells, with concurrent downregulation of catenin, vimentin, and slug; similarly, colony and tumorsphere formation was significantly attenuated with reduced expression of c-Myc and KLF4 proteins. Conclusions: Summarily, we show for the first time that 4-AAQB suppresses the tumor-promoting catenin/LEF1/Stat3 signaling, and inhibited CSCs-induced oncogenic activities in GBM in vitro, with in vivo validation; thus projecting 4-AAQB as a potent therapeutic agent for anti-GBM target therapy.
机译:背景:胶质母细胞瘤(GBM)是一种恶性胶质瘤,其特征是对治疗的抵抗力和预后不良。越来越多的证据表明,GBM的起始,繁殖和复发可归因于GBM干细胞(GBM-CSC)的存在。实验方法:在本文中,我们研究了牛樟芝生物活性分离物4-乙酰基甘油喹诺尔B(4-AAQB)对GBM细胞活力,致癌性和CSCs活性的影响。结果:我们观察到,与其他神经胶质瘤类型相比,联蛋白的异常表达是GBM的特征(p = 0.0001,对数秩检验= 475.2),并且与GBM患者的预后不良相关。在5和10年的时间点,低连环蛋白表达的低度神经胶质瘤和胶质母细胞瘤患者(n = 1152)的总生存率分别比高连环蛋白表达的高25%和21.5%(p = 3.57e-11,对数秩检验= 43.8)。免疫组织化学表明,与邻近的非肿瘤脑组织相比,原发性和复发性GBM表现出增强的连环蛋白表达(〜10倍,p <0.001)。蛋白质印迹分析表明,在U87MG和DBTRG-05MG细胞中,4-AAQB显着下调了β-catenin的表达,并显着降低了catenin / LEF1 / Stat3信号轴的剂量依赖性。 4-AAQB诱导的连环蛋白下调与细胞中Sox2和Oct4核表达减少呈正相关。此外,4-AAQB分别以9.2 M和12.5 M的48 h IC50分别显着降低了U87MG和DBTRG-05MG细胞的活力,有效抑制了核连环蛋白,限制了GBM细胞的迁移和侵袭,同时降低了连环蛋白的表达,波形蛋白和;同样,集落和肿瘤球的形成也随着c-Myc和KLF4蛋白表达的降低而大大减弱。结论:综上所述,我们首次证明了4-AAQB在体外GBM中抑制促肿瘤的catenin / LEF1 / Stat3信号转导,并抑制了CSCs诱导的致癌活性,并得到了体内验证;因此,预计4-AAQB作为抗GBM靶标治疗的有效治疗剂。

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