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Identification of potential biomarkers of genotoxicity and carcinogenicity in L5178Y mouse lymphoma cells by cDNA microarray analysis.

机译:通过cDNA芯片分析鉴定L5178Y小鼠淋巴瘤细胞中潜在的遗传毒性和致癌性生物标志物。

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In the present study, cDNA microarray analyses were performed with mouse cDNA chips in order to evaluate similarities and differences in the gene expression profiles for compounds differing in their genotoxic and carcinogenic potential. Eight test substances were evaluated, two each from four classes of compounds: genotoxic carcinogens (1,2-dibromoethane and glycidol), genotoxic noncarcinogens (8-hydroxyquinoline and emodin), nongenotoxic carcinogens (methyl carbamate and o-nitrotoluene), and nongenotoxic noncarcinogens (D-mannitol and 1,2-dichlorobenzene). Quadruplicate hybridization experiments were performed in order to identify a set of genes with significant expression changes for these four classes of substances. Twelve genes were consistently altered more than twofold by the genotoxic noncarcinogens while four genes were consistently regulated by the nongenotoxic carcinogens. One gene (Trp63) was identified whose expression was upregulated by all four genotoxic substances regardless of the presence or absence of carcinogenicity; this finding, however, was not confirmed by quantitative real-time RT-PCR. RT-PCR did confirm the change in expression of 9 of 15 genes (60%) identified by microarray analysis. Interestingly, the downregulated genes were least likely to be validated by real-time RT-PCR. Those genes showing more than a twofold change in expression level in response to at least one substance were further analyzed with hierarchical clustering after category assignment of each gene according to its main cellular function. Clustering revealed differences in the gene expression profiles between the genotoxic and nongenotoxic substances for genes involved in cell cycle control, the stress response, and the immune response. However, no clustering specific to all four carcinogenic substances was observed in any of the functional categories. Taken together, these results suggest that gene expression profiling in mouse lymphoma cells can provide valuable information for the evaluation of potentialgenotoxicity but may have limitations in predicting carcinogenicity.
机译:在本研究中,使用小鼠cDNA芯片进行了cDNA微阵列分析,以评估其基因毒性和致癌潜力不同的化合物的基因表达谱的相似性和差异。评估了八种测试物质,其中四种化合物分别为两种:遗传毒性致癌物(1,2-二溴乙烷和缩水甘油),遗传毒性非致癌物(8-羟基喹啉和大黄素),非遗传毒性致癌物(氨基甲酸甲酯和邻硝基甲苯)和非遗传毒性非致癌物(D-甘露醇和1,2-二氯苯)。进行四重杂交实验,以鉴定这四类物质的一组表达明显改变的基因。十二个基因被遗传毒性非致癌物一致地改变了两倍以上,而四个基因被非遗传毒性致癌物一致地调节。鉴定出一个基因(Trp63),其表达被所有四种遗传毒性物质上调,而与是否存在致癌性无关。但是,该发现尚未通过实时定量RT-PCR证实。 RT-PCR确实证实了通过微阵列分析鉴定的15个基因中的9个(60%)的表达变化。有趣的是,下调的基因最不可能通过实时RT-PCR进行验证。根据每个基因的主要细胞功能,在对每个基因进行分类后,通过分层聚类进一步分析那些响应至少一种物质而表达水平变化超过两倍的基因。聚类揭示了涉及细胞周期控制,应激反应和免疫反应的基因的遗传毒性和非遗传毒性物质之间的基因表达谱差异。但是,在任何功能类别中均未观察到对所有四种致癌物质具有特异性的聚集。综上所述,这些结果表明,小鼠淋巴瘤细胞中的基因表达谱可为评估潜在的遗传毒性提供有价值的信息,但在预测致癌性方面可能有局限性。

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