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Radiation-induced upregulation of telomerase activity escapes PI3-kinase inhibition in two malignant glioma cell lines

机译:辐射诱导的端粒酶活性上调在两种恶性神经胶质瘤细胞系中逃避了PI3激酶的抑制

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摘要

Tumor relapse after radiotherapy is a great concern in the treatment of high-grade gliomas. Inhibition of the PI3-kinase/AKT pathway is known to radiosensitize cancer cells and to delay their DNA repair after irradiation. In this study, we show that the radiosensitization of CB193 and T98G, two high-grade glioma cell lines, by the PI3K inhibitor , correlates with the induction of G1 and G2/M arrest, but is inconsistently linked to a delayed DNA double-strand break (DSBs) repair. The PI3K/AKT pathway has been shown to activate radioprotective factors such as telomerase, whose inhibition may contribute to the radiosensitization of cancer cells. However, we show that radiation upregulates telomerase activity in LY-294002-treated glioma cells as well as untreated controls, demonstrating a PI3K/AKT-independent pathway of telomerase activation. Our study suggests that radiosensitizing strategies based on PI3-kinase inhibition in high-grade gliomas may be optimized by additional treatments targeting either telomerase activity or telomere maintenance.
机译:放疗后的肿瘤复发是治疗高度神经胶质瘤的重要问题。已知PI3激酶/ AKT途径的抑制使癌细胞放射致敏并在辐射后延迟其DNA修复。在这项研究中,我们表明PI3K抑制剂对两种高级神经胶质瘤细胞株CB193和T98G的放射增敏作用与诱导G1和G2 / M阻滞有关,但与延迟的DNA双链不一致中断(DSB)维修。已经证明PI3K / AKT途径可以激活放射防护因子,例如端粒酶,其抑制作用可能有助于癌细胞的放射增敏作用。但是,我们显示辐射上调了LY-294002处理的神经胶质瘤细胞以及未经处理的对照中的端粒酶活性,证明了端粒酶激活的PI3K / AKT独立途径。我们的研究表明,可以通过针对端粒酶活性或端粒维持的附加治疗来优化基于PI3激酶抑制的高级神经胶质瘤的放射增敏策略。

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