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Midkine signaling maintains the self-renewal and tumorigenic capacity of glioma initiating cells

机译:中际信号传导维持胶质瘤引发细胞的自我更新和致瘤能力

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Glioblastoma (GBM) is one of the most aggressive forms of cancer. It has been proposed that the presence within these tumors of a population of cells with stem-like features termed Glioma Initiating Cells (GICs) is responsible for the relapses that take place in the patients with this disease. Targeting this cell population is therefore an issue of great therapeutic interest in neuro-oncology. We had previously found that the neurotrophic factor MIDKINE (MDK) promotes resistance to glioma cell death. The main objective of this work is therefore investigating the role of MDK in the regulation of GICs. Methods: Assays of gene and protein expression, self-renewal capacity, autophagy and apoptosis in cultures of GICs derived from GBM samples subjected to different treatments. Analysis of the growth of GICs-derived xenografts generated in mice upon blockade of the MDK and its receptor the ALK receptor tyrosine kinase (ALK) upon exposure to different treatments. Results: Genetic or pharmacological inhibition of MDK or ALK decreases the self-renewal and tumorigenic capacity of GICs via the autophagic degradation of the transcription factor SOX9. Blockade of the MDK/ALK axis in combination with temozolomide depletes the population of GICs in vitro and has a potent anticancer activity in xenografts derived from GICs. Conclusions: The MDK/ALK axis regulates the self-renewal capacity of GICs by controlling the autophagic degradation of the transcription factor SOX9. Inhibition of the MDK/ALK axis may be a therapeutic strategy to target GICs in GBM patients.? The author(s).
机译:胶质母细胞瘤(GBM)是最具侵略性的癌症形式之一。已经提出,在这些细胞群中存在的存在性与干燥的特征称为胶质瘤引发细胞(GIC)的细胞肿瘤的存在是负责这种疾病患者发生的复发。因此,靶向这种细胞群是对神经肿瘤学的巨大治疗兴趣的问题。我们以前发现神经营养因子中核(MDK)促使抗胶质瘤细胞死亡抗性。因此,这项工作的主要目标是调查MDK在博客调节中的作用。方法:基因和蛋白质表达的测定,源自不同治疗的GBM样品的培养物中的自我更新能力,自噬和凋亡。在暴露于不同治疗时,在MDK封闭MDK及其受体时,小鼠在小鼠中产生的GICS衍生异种移植物的生长分析。结果:MDK或ALK的遗传或药理学抑制通过转录因子SOX9的自噬降低降低了GIC的自我更新和致致致致致致致致致致致致致致致致致致致致致瘤能力。封闭MDK / ALK轴与替替莫替莫酮的组合在体外耗尽了GICS的群体,并且在衍生自GICS的异种移植物中具有浓郁的抗癌活性。结论:MDK / ALK轴通过控制转录因子SOX9的自噬降解来调节GIC的自我更新能力。对MDK / ALK轴的抑制可以是靶向GBM患者的治疗策略。作者。
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