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Radiotherapy Followed by Aurora Kinase Inhibition Targets Tumor-Propagating Cells in Human Glioblastoma

机译:放疗后极光激酶抑制作用靶向人类胶质母细胞瘤中的肿瘤细胞

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摘要

Glioblastoma (GBM) is the most common malignant primary brain tumor. Radiotherapy fails to eliminate subpopulations of stem-like tumor-propagating cells (TPC), resulting in tumor regrowth. To identify kinases that promote TPC self-renewal rather than increasing proliferation in human GBM cultures, we screened a library of 54 nonselective tool compounds and determined their kinase inhibitor profiles in vitro. Most compounds inhibited aurora kinase (AURK) activity and blocked TPC self-renewal, while inducing GBM cell polynucleation and apoptosis. To prevent regrowth by TPCs, we used a priming dose of radiation followed by incubation with the pan-AURK inhibitor VX680 to block self-renewal and induce apoptosis in GBM cultures. In mice xenografted with human GBM cells, radiotherapy followed by VX680 treatment resulted in reduced tumor growth and increased survival relative to either monotherapy alone or VX680 treatment before radiation. Our results indicate that AURK inhibition, subsequent to radiation, may enhance the efficacy of radiotherapy by targeting radioresistant TPCs in human GBMs.
机译:胶质母细胞瘤(GBM)是最常见的恶性原发性脑肿瘤。放射疗法无法消除干细胞样肿瘤繁殖细胞(TPC)的亚群,从而导致肿瘤再生。为了鉴定在人GBM培养物中促进TPC自我更新而不是增加增殖的激酶,我们筛选了54种非选择性工具化合物的文库,并在体外确定了其激酶抑制剂谱。大多数化合物抑制极光激酶(AURK)活性并阻止TPC自我更新,同时诱导GBM细胞多核化和凋亡。为了防止TPC再生,我们使用了放射剂量的辐射,然后与pan-AURK抑制剂VX680孵育以阻止自我更新并诱导GBM培养物中的细胞凋亡。与单独的单一疗法或放射前的VX680治疗相比,在异种移植有人GBM细胞的小鼠中,放疗+ VX680治疗可导致肿瘤生长减少和存活率增加。我们的结果表明,放疗后对AURK的抑制作用可能通过靶向人GBM中的抗放射TPC来增强放射治疗的功效。

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