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首页> 外文期刊>Cell death & disease. >Ionizing radiation induces endothelial transdifferentiation of glioblastoma stem-like cells through the Tie2 signaling pathway
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Ionizing radiation induces endothelial transdifferentiation of glioblastoma stem-like cells through the Tie2 signaling pathway

机译:电离辐射通过Tie2信号通路诱导胶质母细胞状细胞的内皮转换剂

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摘要

Glioblastomas (GBM) are brain tumors with a poor prognosis despite treatment that combines surgical resection and radio-chemotherapy. These tumors are characterized by abundant vascularization and significant cellular heterogeneity including GBM stem-like cells (GSC) which contribute to tumor aggressiveness, resistance, and recurrence. Recent data has demonstrated that GSC are directly involved in the formation of new vessels via their transdifferentiation into Tumor Derived Endothelial Cells (TDEC). We postulate that cellular stress such as ionizing radiation (IR) could enhance the transdifferentiation of GSC into TDEC. GSC neurospheres isolated from 3 different patients were irradiated or not and were then transdifferentiated into TDEC. In fact, TDEC obtained from irradiated GSC (TDEC IR+) migrate more towards VEGF, form more pseudotubes in MatrigelTM in vitro and develop more functional blood vessels in MatrigelTM plugs implanted in Nude mice than TDEC obtained from non-irradiated GSC. Transcriptomic analysis allows us to highlight an overexpression of Tie2 in TDEC IR+. All IR-induced effects on TDEC were abolished by using a Tie2 kinase inhibitor, which confirms the role of the Tie2 signaling pathway in this process. Finally, by analyzing Tie2 expression in patient GBMs by immunohistochemistry, we demonstrated that the number of Tie2+ vessels increases in recurrent GBM compared with matched untreated tumors. In conclusion, we demonstrate that IR potentiates proangiogenic features of TDEC through the Tie2 signaling pathway, which indicates a new pathway of treatment-induced tumor adaptation. New therapeutic strategies that associate standard treatment and a Tie2 signaling pathway inhibitor should be considered for future trials.
机译:胶质母细胞瘤(GBM)是脑肿瘤,尽管治疗外科切除和无线电化疗的治疗仍具有较差的预后。这些肿瘤的特征在于血管化丰富,具有显着的细胞异质性,包括GBM干细胞(GSC),这有助于肿瘤侵蚀性,抗性和复发。最近的数据表明,GSC通过转移到肿瘤衍生的内皮细胞(TDEC)中直接参与新血管的形成。我们假设诸如电离辐射(IR)的细胞应激可以增强GSC转化为TDEC。从3例不同患者中分离的GSC神经球体被照射或不被辐射,然后转化为TDEC。事实上,从辐照的GSC(TDEC IR +)获得的TDEC迁移更多朝向VEGF,在体外形成更多的pseudotubes,在植物中植入裸鼠的Matrigeltm塞中的更肌肉血管比从未照射GSC获得的TDEC。转录组分析允许我们突出TDEC IR +中的Tie2过表达。通过使用Tie2激酶抑制剂废除了所有IR诱导的TDEC的效果,该抑制剂证实了该方法在该方法中的Tie2信号传导途径的作用。最后,通过免疫组织化学分析患者GBMS中的Tie2表达,我们证明了与匹配的未处理肿瘤相比,Tie2 +血管的数量增加。总之,我们证明IR增强了通过TDEC通过TED2信号通路的促型特征,这表明了治疗诱导的肿瘤适应的新途径。应考虑助理标准治疗和Tie2信号通路抑制剂的新治疗策略,以备将来试验。

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