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首页> 外文期刊>Molecular Carcinogenesis >Molecular signatures of soy-derived phytochemicals in androgen-responsive prostate cancer cells: a comparison study using DNA microarray.
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Molecular signatures of soy-derived phytochemicals in androgen-responsive prostate cancer cells: a comparison study using DNA microarray.

机译:雄激素反应性前列腺癌细胞中大豆来源的植物化学物质的分子标记:使用DNA芯片的比较研究。

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The present study utilized microarray technology as a tool to elucidate the molecular signatures of soy-derived phytochemicals in the human androgen-responsive prostate cancer cell line LNCaP. Global gene expression pattern analysis of LNCaP cells exposed to 0, 1, 5, or 25 microM of the soy-derived phytochemicals equol and daidzein were conducted and compared. The data were further compared with previously generated data from exposure of LNCaP cells to the same doses of genistein, a soy isoflavone. Multidimensional scaling (MDS) analyses of the expression patterns suggest that these compounds exerted differential effects on gene expression in LNCaP cells. Further examination of specific gene changes revealed that these compounds differentially modulated genes in multiple cellular pathways, including the cell-cycle pathway genes. However, the three compounds also exerted similar effect on genes belonging to several other important cellular pathways. A universal effect of the three compounds on androgen-responsive genes, IGF-1 pathway gene, and MAP kinase-related pathway gene was observed. These results provide the foundation for establishing molecular signatures for equol, daidzein, and genistein. Moreover, these results also allow for the identification of candidate mechanism(s) by which soy phytochemicals and soy may act in prostate cancer cells.
机译:本研究利用微阵列技术作为一种工具,阐明了在人类雄激素反应性前列腺癌细胞系LNCaP中大豆来源的植物化学成分的分子特征。进行并比较了暴露于0、1、5或25 microM大豆来源的植物化学物质雌马酚和大豆苷元的LNCaP细胞的整体基因表达模式分析。将该数据与先前从LNCaP细胞暴露于相同剂量的染料木黄酮(大豆异黄酮)中生成的数据进行比较。表达模式的多维标度分析(MDS)表明,这些化合物对LNCaP细胞的基因表达产生了不同的影响。对特定基因变化的进一步检查表明,这些化合物在包括细胞周期途径基因在内的多个细胞途径中差异调节基因。但是,这三种化合物也对属于其他几个重要细胞途径的基因产生相似的作用。观察到这三种化合物对雄激素响应基因,IGF-1通路基因和MAP激酶相关通路基因的普遍影响。这些结果为建立雌马酚,大豆苷元和染料木黄酮的分子标记提供了基础。而且,这些结果还允许鉴定大豆植物化学物质和大豆可在前列腺癌细胞中起作用的候选机制。

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