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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Tamoxifen induces expression of immune response-related genes in cultured normal human mammary epithelial cells.
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Tamoxifen induces expression of immune response-related genes in cultured normal human mammary epithelial cells.

机译:他莫昔芬在培养的正常人乳腺上皮细胞中诱导免疫应答相关基因的表达。

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Use of tamoxifen is associated with a 50% reduction in breast cancer incidence and an increase in endometrial cancer incidence. Here, we documented tamoxifen-induced gene expression changes in cultured normal human mammary epithelial cells (strains 5, 16, and 40), established from tissue taken at reduction mammoplasty from three individuals. Cells exposed to 0, 10, or 50 micromol/L of tamoxifen for 48 hours were evaluated for (E)-alpha-(deoxyguanosine-N(2)-yl)-tamoxifen (dG-N(2)-TAM) adduct formation using TAM-DNA (DNA modified with dG-N(2)-TAM) chemiluminescence immunoassay, gene expression changes using National Cancer Institute DNA-oligonucleotide microarray, and real-time PCR. At 48 hours, cells exposed to 10 and 50 micromol/L of tamoxifen were 85.6% and 48.4% viable, respectively, and there were no measurable dG-N(2)-TAM adducts. For microarrays, cells were exposed to 10 micromol/L of tamoxifen and genes with expression changes of >3-fold were as follows: 13 genes up-regulated and 1 down-regulated for strain 16; 17 genes up-regulated for strain 5, and 11 genes up-regulated for strain 40. Interferon-inducible genes (IFITM1, IFIT1, MXI, and GIP3), and a potassium ion channel (KCNJ1) were up-regulated in all three strains. No significant expression changes were found for genes related to estrogen or xenobiotic metabolism. Real-time PCR revealed the up-regulation of IFNA1 and confirmed the tamoxifen-induced up-regulation of the five other genes identified by microarray, with the exception of GIP3 and MX1, which were not up-regulated in strain 40. Induction of IFN-related genes in the three normal human mammary epithelial cell strains suggests that, in addition to hormonal effects, tamoxifen exposure may enhance immune response in normal breast tissue.
机译:他莫昔芬的使用与乳腺癌发生率降低50%和子宫内膜癌发生率增加相关。在这里,我们记录了他莫昔芬在培养的正常人乳腺上皮细胞(5号,16号和40号菌株)中诱导的基因表达变化,这些细胞是从三名个体在减少乳房成形术中获取的组织中建立的。暴露于0、10或50 micromol / L他莫昔芬48小时的细胞评估(E)-α-(脱氧鸟苷-N(2)-基)-他莫昔芬(dG-N(2)-TAM)加合物的形成使用TAM-DNA(经dG-N(2)-TAM修饰的DNA)化学发光免疫分析,使用国家癌症研究所DNA-寡核苷酸微阵列的基因表达变化和实时PCR。在48小时时,暴露于10和50 micromol / L他莫昔芬的细胞活力分别为85.6%和48.4%,并且没有可测量的dG-N(2)-TAM加合物。对于微阵列,将细胞暴露于他莫昔芬的10 micromol / L中,其表达变化> 3倍的基因如下:菌株16上调了13个基因,菌株16下调了1个基因;菌株5上调了17个基因,菌株40上调了11个基因。干扰素诱导基因(IFITM1,IFIT1,MXI和GIP3)和钾离子通道(KCNJ1)在所有三个菌株中上调。 。没有发现与雌激素或异种生物代谢有关的基因有明显的表达变化。实时PCR揭示了IFNA1的上调,并证实了他莫昔芬诱导的由微阵列鉴定的其他五个基因的上调,但GIP3和MX1除外,它们在40号菌株中均未上调。三种正常人乳腺上皮细胞株中的相关基因表明,除了荷尔蒙作用外,他莫昔芬的接触还可以增强正常乳腺组织的免疫反应。

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