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Bmi-1 induces radioresistance by suppressing senescence in human U87 glioma cells

机译:Bmi-1通过抑制人U87胶质瘤细胞的衰老诱导放射抗性

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摘要

Radiotherapy is the main locoregional control modality for a number of types of malignant tumors, including glioblastoma. However, radiotherapy fails to prevent recurrence in numerous patients due to the intrinsic radioresistance of cancer cells. Cell senescence is significant in tumor suppressor mechanisms and is closely associated with the radioresistance of cancer cells. Bmi-1 has been proposed to be an oncogene that can induce anti-senescence in tumor cells. The present study investigated the response of U87 glioma cells to radiation exposure and the role of Bmi-1 in the response following radiotherapy. Cell apoptosis and cell cycle distribution were assessed using flow cytometry, and a SA-β-Gal stain was used to observe the senescence ratio of U87 cells following radiation. The expression of Bmi-1 in U87 cells exposed to different doses of radiation was evaluated by western blot analysis. X-ray radiation was found to inhibit U87 cell proliferation through the induction of senescence rather than apoptosis. Following exposure to radiation, the cell cycle distribution was dysregulated, with an increased number of cells in the G2/M phase, and the expression of Bmi-1 was upregulated, particularly when a dose of ≥6 Gy was administered. The results indicated that senescence is the main mechanism by which U87 cell growth is inhibited following radiation. In addition, Bmi-1 may be significant in increasing the radioresistance of glioma cells by enabling cell senescence.
机译:放疗是包括胶质母细胞瘤在内的许多类型恶性肿瘤的主要局部控制方式。然而,由于癌细胞固有的放射抗性,放射疗法无法阻止许多患者的复发。细胞衰老在肿瘤抑制机制中很重要,并且与癌细胞的抗辐射能力密切相关。已经提出Bmi-1是可以在肿瘤细胞中诱导抗衰老的致癌基因。本研究调查了U87胶质瘤细胞对放射线的反应以及Bmi-1在放射治疗后的反应中的作用。使用流式细胞仪评估细胞凋亡和细胞周期分布,并使用SA-β-Gal染色剂观察放射后U87细胞的衰老率。通过蛋白质印迹分析评估暴露于不同剂量辐射的U87细胞中Bmi-1的表达。发现X射线辐射通过诱导衰老而非凋亡来抑制U87细胞增殖。暴露于辐射后,细胞周期分布失调,G2 / M期细胞数量增加,Bmi-1的表达上调,特别是当剂量≥6Gy时。结果表明,衰老是辐射后U87细胞生长受到抑制的主要机制。此外,Bmi-1可能通过使细胞衰老来增加神经胶质瘤细胞的放射抗性。

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