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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Effects of chlorpromazine with and without UV irradiation on gene expression of HepG2 cells.
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Effects of chlorpromazine with and without UV irradiation on gene expression of HepG2 cells.

机译:氯丙嗪在有和无紫外线照射下对HepG2细胞基因表达的影响。

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摘要

Damage to DNA can trigger a variety of stress-related signals that alter the expression of genes associated with numerous biological pathways. In this study, we have used a cDNA microarray representing 1089 genes related to DNA damage and repair, cell cycle, transcription, metabolism and other toxicologically important cell functions to identify genes regulated in response to DNA damage in HepG2 cells induced by UV-activated chlorpromazine (CPZ). CPZ itself is not genotoxic but, upon UV irradiation with a non-genotoxic dose in the UVA range, it produces reactive free radical intermediates with DNA damaging properties. Genotoxicity in HepG2 cells was assessed concomitantly to gene expression profiling using the Comet assay. Kinetic studies were performed at a non-cytotoxic but clearly photogenotoxic concentration of CPZ (1.25mug/ml) to characterize gene expression profiles at four different time points (3, 7, 15, 23h) post short-term treatment. The results obtained from repeated experiments display a time-dependent expression pattern of up-regulated and repressed genes with distinct peaks in the number of differentially expressed genes at the 7 and 23h time points. Most of the genes with altered expression belonged to the functional categories of cell cycle regulation and cell proliferation. A comparison with published expression profiles established in response to other genotoxic compounds showed low levels of concordance, which is most likely caused by the fact that extremely different testing conditions were used.
机译:对DNA的破坏会触发各种与压力相关的信号,从而改变与众多生物学途径相关的基因的表达。在这项研究中,我们使用了代表1089个与DNA损伤和修复,细胞周期,转录,代谢和其他毒理学上重要的细胞功能有关的基因的cDNA微阵列,来鉴定受UV激活的氯丙嗪诱导的HepG2细胞中的DNA损伤响应调控的基因。 (CPZ)。 CPZ本身没有遗传毒性,但是在UVA范围内以非遗传毒性剂量进行紫外线照射时,它会产生具有DNA破坏特性的反应性自由基中间体。使用Comet分析同时评估HepG2细胞的基因毒性与基因表达谱。在无细胞毒性但明显有光遗传毒性的CPZ(1.25mug / ml)浓度下进行动力学研究,以表征短期治疗后四个不同时间点(3、7、15、23h)的基因表达谱。从重复实验获得的结果显示出上调和抑制的基因随时间变化的表达模式,在7和23h时间点差异表达基因的数量出现明显的峰值。表达改变的大多数基因属于细胞周期调节和细胞增殖的功能类别。与针对其他遗传毒性化合物建立的已发表表达谱的比较显示出较低的一致性,这很可能是由于使用了极其不同的测试条件这一事实所致。

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