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hTERT gene knockdown enhances response to radio- and chemotherapy in head and neck cancer cell lines through a DNA damage pathway modification

机译:hTERT基因敲低可通过DNA损伤途径修饰增强对头颈部癌细胞系中放射和化疗的反应

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摘要

The aim of the study was to analyze the effect of hTERT gene knockdown in HNSCC cells by using novel in vitro models of head and neck cancer (HNSCC), as well as improving its personalized therapy. To obtain the most efficient knockdown siRNA, shRNA-bearing lentiviral vectors were used. The efficiency of hTERT silencing was verified with qPCR, Western blot, and immunofluorescence staining. Subsequently, the type of cell death and DNA repair mechanism induction after hTERT knockdown was assessed with the same methods, followed by flow cytometry. The effect of a combined treatment with hTERT gene knockdown on Double-Strand Breaks levels was also evaluated by flow cytometry. Results showed that the designed siRNAs and shRNAs were effective in hTERT knockdown in HNSCC cells. Depending on a cell line, hTERT knockdown led to a cell cycle arrest either in phase G1 or phase S/G2. Induction of apoptosis after hTERT downregulation with siRNA was observed. Additionally, hTERT targeting with lentiviruses, followed by cytostatics administration, led to induction of apoptosis. Interestingly, an increase in Double-Strand Breaks accompanied by activation of the main DNA repair mechanism, NER, was also observed. Altogether, we conclude that hTERT knockdown significantly contributes to the efficacy of HNSCC treatment.
机译:该研究的目的是通过使用头颈癌的新型体外模型(HNSCC)分析hTERT基因敲低对HNSCC细胞的作用,并改善其个性化疗法。为了获得最有效的敲低siRNA,使用了带有shRNA的慢病毒载体。通过qPCR,蛋白质印迹和免疫荧光染色验证了hTERT沉默的效率。随后,用相同的方法评估hTERT敲除后细胞死亡的类型和DNA修复机制的诱导,然后进行流式细胞术。还通过流式细胞术评估了结合hTERT基因敲低的联合治疗对双链断裂水平的影响。结果表明,设计的siRNA和shRNA在HNSCC细胞中对hTERT敲低有效。取决于细胞系,hTERT敲低导致细胞周期停滞在G1期或S / G2期。观察到hTERT siRNA下调后细胞凋亡的诱导。另外,用慢病毒靶向hTERT,然后施用细胞抑制剂可诱导凋亡。有趣的是,还观察到双链断裂的增加,同时激活了主要的DNA修复机制NER。总而言之,我们得出的结论是,hTERT基因敲低显着促进了HNSCC治疗的疗效。

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