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Tumor-treating fields elicit a conditional vulnerability to ionizing radiation via the downregulation of BRCA1 signaling and reduced DNA double-strand break repair capacity in non-small cell lung cancer cell lines

机译:肿瘤治疗领域通过下调BRCA1信号传导和降低非小细胞肺癌细胞系DNA双链断裂修复能力而引起电离辐射的条件脆弱性

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The use of tumor-treating fields (TTFields) has revolutionized the treatment of recurrent and newly diagnosed glioblastoma (GBM). TTFields are low-intensity, intermediate frequency, alternating electric fields that are applied to tumor regions and cells using non-invasive arrays. The predominant mechanism by which TTFields are thought to kill tumor cells is the disruption of mitosis. Using five non-small cell lung cancer (NSCLC) cell lines we found that there is a variable response in cell proliferation and cell killing between these NSCLC cell lines that was independent of p53 status. TTFields treatment increased the G2/M population, with a concomitant reduction in S-phase cells followed by the appearance of a sub-G1 population indicative of apoptosis. Temporal changes in gene expression during TTFields exposure was evaluated to identify molecular signaling changes underlying the differential TTFields response. The most differentially expressed genes were associated with the cell cycle and cell proliferation pathways. However, the expression of genes found within the BRCA1 DNA-damage response were significantly downregulated ( P
机译:肿瘤治疗场(TTFields)的使用彻底改变了复发和新诊断的胶质母细胞瘤(GBM)的治疗方法。 TTFields是低强度,中频,交变电场,可使用非侵入性阵列施加到肿瘤区域和细胞。 TTField被认为杀死肿瘤细胞的主要机制是破坏有丝分裂。使用五种非小细胞肺癌(NSCLC)细胞系,我们发现这些NSCLC细胞系之间在细胞增殖和细胞杀伤方面存在可变的反应,而与p53状态无关。 TTFields处理增加了G2 / M种群,伴随着S期细胞减少,随后出现了指示凋亡的亚G1种群。评估了TTFields暴露过程中基因表达的时间变化,以确定潜在的TTFields差异反应的分子信号传导变化。表达差异最大的基因与细胞周期和细胞增殖途径有关。但是,BRCA1 DNA损伤反应中发现的基因表达明显下调(P

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