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Bisdemethoxycurcumin (BDMC) Alters Gene Expression-associated Cell Cycle, Cell Migration and Invasion and Tumor Progression in Human Lung Cancer NCI-H460 Cells

机译:双去甲氧基姜黄素(BDMC)改变人类肺癌NCI-H460细胞中与基因表达相关的细胞周期,细胞迁移以及侵袭和肿瘤进展

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Background/Aim: Lung cancer is one of the most common malignancies and a predominant cause of cancer-related death. It can metastasize in almost all organs, and currently, while new cases are increasing, treatment is still insufficient. Bisdemethoxycurcumin (BDMC), one of the components of turmeric, has been known to possess biological activities. However, the effects of BDMC on the genetic level remain unclear. Materials and Methods: Human lung cancer NCI-H460 cells were treated with 35 M BDMC for 24 h and cells were harvested for total RNA extraction. The purified RNA was used for cDNA synthesis, labeling, microarray hybridization, and flour-labeled cDNA on-chip hybridization. The expression Console software (Affymetrix) with default RNA parameters was used to detect and quantitate concentrations of fluorescent molecules. The key genes involved and their possible interaction pathways were analyzed by the GeneGo software. Results: Seven genes, such as CCNE2 (cyclin E), associated with cell cycle, were over 4-fold overexpressed, 22 genes, such as ERCC6L (excision repair cross-complementing rodent repair deficiency, complementation group 6-like) associated with DNA damage and repair, were from 3- to 4-fold overexpressed and 266, such as cell division cycle, S-phase associated kinase and associated with cell death, genes were from 2- to 3-fold overexpressed. Conclusion: BDMC induced changes in gene expression that may reveal cytotoxic information on the genetic level while presenting novel biomarkers or targets for treatment of human lung cancer in the future.
机译:背景/目的:肺癌是最常见的恶性肿瘤之一,也是癌症相关死亡的主要原因。它可以在几乎所有器官中转移,目前,尽管新病例增加,但是治疗仍然不足。姜黄的成分之一双去甲氧基姜黄素(BDMC)具有生物活性。但是,BDMC对遗传水平的影响尚不清楚。材料和方法:将人肺癌NCI-H460细胞用35 M BDMC处理24 h,并收获细胞用于总RNA提取。纯化的RNA用于cDNA合成,标记,微阵列杂交和面粉标记的cDNA芯片上杂交。具有默认RNA参数的Expression Console软件(Affymetrix)用于检测和定量荧光分子的浓度。通过GeneGo软件分析了涉及的关键基因及其可能的相互作用途径。结果:与细胞周期相关的7个基因(如CCNE2(细胞周期蛋白E))超表达4倍以上,与DNA相关的22个基因(如ERCC6L(切除修复交叉互补啮齿动物修复缺陷,互补组6样))损伤和修复是过表达的3至4倍,而266(例如细胞分裂周期,S期相关激酶以及与细胞死亡有关)的基因是过表达的2至3倍。结论:BDMC诱导了基因表达的变化,可能会揭示基因水平上的细胞毒性信息,同时会提出未来治疗人类肺癌的新生物标志物或靶标。

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