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首页> 外文期刊>American Journal of Cancer Research >CLIC4 regulates radioresistance of nasopharyngeal carcinoma by iNOS after γ-rays but not carbon ions irradiation
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CLIC4 regulates radioresistance of nasopharyngeal carcinoma by iNOS after γ-rays but not carbon ions irradiation

机译:CLIC4在γ射线之后通过INOS调节鼻咽癌的辐射敏感度,但不是碳离子辐照

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Nasopharyngeal carcinoma (NPC) is a major health problem in the East and Southeast Asia, and the intensity modulated radiotherapy (IMRT) is the current preferred treatment method of NPC, but radioresistance-induced residual and recurrent tumors are the main cause of treatment failure. Till now, the mechanism of radioresistance and prognostic biomarkers of NPC are still unrevealed. In this study, we collected clinical NPC samples and established radioresistant NPC-R cell lines by irradiating NPC cells with fractionation doses of γ-rays. Using genechip assay between radioresistance and radiosensitive clinical samples and TMT assay between NPC and NPC-R cells, differential expressed genes were examined and the potential biomarker of radioresistance was screened. Immunohistochemical assay of NPC clinical specimens showed that CLIC4 was significantly up-regulated in radioresistance tumor tissues. In vitro studies confirmed that up-regulation of CLIC4 gene enhanced radioresistance in comparison with the alterations of intracellular oxidative metabolism of reactive oxygen species (ROS) and nitric oxide (NO) in an opposite way. Correspondingly, inhibition of CLIC4 sensitized NPC cells to irradiation and decreased nuclear translocation of iNOS and intracellular level of NO in NPC cells. Interestingly, the capacity for DNA repair had no difference between NPC and NPC-R cells. Moreover, because of great interests in using carbon ion irradiation to treat NPC effectively, we demonstrated that, after carbon ion irradiation, NPC-R and NPC cells had similar survival even under the status of up- or down-regulation of CLIC4. Conclusively, CLIC4 contributes to radioresistance of NPC to γ-rays but not carbon ions by regulating intracellular oxidative metabolism of nuclear translocation of iNOS.
机译:鼻咽癌(NPC)是东南和东南亚的主要健康问题,强度调制放疗(IMRT)是目前NPC的首选治疗方法,但辐射诱导诱导的残留和复发性肿瘤是治疗失败的主要原因。到目前为止,NPC的辐射敏感度和预后生物标志物的机制仍未迷亡。在这项研究中,通过用分馏剂量的γ射线照射NPC细胞,收集了临床NPC样品和建立了辐射性NPC-R细胞系。在NPC和NPC-R细胞之间使用GeneChip测定和NPC和NPC-R细胞之间的TMT测定,检查差异表达基因,筛选出辐射敏感度的潜在生物标志物。 NPC临床标本的免疫组织化学测定表明,CLIC4在放射血管肿瘤组织中显着上调。体外研究证实,与反应性氧(ROS)和一氧化氮(NO)的细胞内氧化代谢的改变以相反的方式相比,CLIC4基因的上调增强了辐射敏感度。相应地,抑制ClIC4敏化的NPC细胞在NPC细胞中辐射和降低NPC细胞中的INOS和细胞内核易位。有趣的是,DNA修复的能力在NPC和NPC-R细胞之间没有差异。此外,由于利用碳离子照射有效处理NPC的兴趣,我们证明,在碳离子辐射后,即使在Clic4的上调或下调状态下,NPC-R和NPC细胞也具有相似的存活。结论,CLIC4通过调节INOS的核易位的细胞内氧化代谢而导致NPC对γ射线而不是碳离子的影响。

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