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Gene and miRNA expression profiles of mouse Lewis lung carcinoma LLC1 cells following single or fractionated dose irradiation

机译:单次或分次剂量辐照后小鼠Lewis Lewis肺癌LLC1细胞的基因和miRNA表达谱

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摘要

In clinical practice ionizing radiation (IR) is primarily applied to cancer treatment in the form of fractionated dose (FD) irradiation. Despite this fact, a substantially higher amount of current knowledge in the field of radiobiology comes from in vitro studies based on the cellular response to single dose (SD) irradiation. In addition, intrinsic and acquired resistance to IR remains an issue in clinical practice, leading to radiotherapy treatment failure. Numerous previous studies suggest that an improved understanding of the molecular processes involved in the radiation-induced DNA damage response to FD irradiation could improve the effectiveness of radiotherapy. Therefore, the present study examined the differential expression of genes and microRNA (miRNA) in murine Lewis lung cancer (LLC)1 cells exposed to SD or FD irradiation. The results of the present study indicated that the gene and miRNA expression profiles of LLC1 cells exposed to irradiation were dose delivery type-dependent. Data analysis also revealed that mRNAs may be regulated by miRNAs in a radiation-dependent manner, suggesting that these mRNAs and miRNAs are the potential targets in the cellular response to SD or FD irradiation. However, LLC1 tumors after FD irradiation exhibited no significant changes in the expression of selected genes and miRNAs observed in the irradiated cells in vitro, suggesting that experimental in vitro conditions, particularly the tumor microenvironment, should be considered in detail to promote the development of efficient radiotherapy approaches. Nevertheless, the present study highlights the primary signaling pathways involved in the response of murine cancer cells to irradiation. Data presented in the present study can be applied to improve the outcome and development of radiotherapy in preclinical animal model settings.
机译:在临床实践中,电离辐射(IR)主要以分剂量(FD)辐射的形式应用于癌症治疗。尽管有这个事实,但放射生物学领域中大量的当前知识来自于基于对单剂量(SD)辐射的细胞反应的体外研究。另外,固有的和获得的对IR的抗性仍然是临床实践中的问题,导致放射疗法治疗失败。先前的许多研究表明,对与辐射诱导的FD辐射引起的DNA损伤反应有关的分子过程的更好理解可以提高放射疗法的有效性。因此,本研究检查了暴露于SD或FD辐射的小鼠Lewis肺癌(LLC)1细胞中基因和microRNA(miRNA)的差异表达。本研究的结果表明,暴露于辐射的LLC1细胞的基因和miRNA表达谱与剂量传递类型有关。数据分析还显示,miRNA可能以辐射依赖的方式调节mRNA,这表明这些mRNA和miRNA是细胞对SD或FD辐射的潜在靶标。然而,FD照射后的LLC1肿瘤在体外照射的细胞中观察到的所选基因和miRNA的表达没有显着变化,这表明应详细考虑实验性体外条件,尤其是肿瘤微环境,以促进高效的发展。放射疗法。然而,本研究强调了涉及鼠癌细胞对辐射的反应的主要信号通路。本研究中提供的数据可用于改善临床前动物模型设置中放射治疗的结果和发展。

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