首页> 美国卫生研究院文献>Neoplasia (New York N.Y.) >Gene Expression Profiling Identifies Lobe-Specific and Common Disruptions of Multiple Gene Networks in Testosterone-Supported 17β-Estradiol- or Diethylstilbestrol-Induced Prostate Dysplasia in Noble Rats
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Gene Expression Profiling Identifies Lobe-Specific and Common Disruptions of Multiple Gene Networks in Testosterone-Supported 17β-Estradiol- or Diethylstilbestrol-Induced Prostate Dysplasia in Noble Rats

机译:基因表达谱鉴定贵族大鼠睾丸激素支持17β-雌二醇或己烯雌酚诱导的前列腺发育不良中的多个基因网络的叶特异性和常见破坏。

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摘要

The xenoestrogen diethylstilbestrol (DES) is commonly believed to mimic the action of the natural estrogen 17β-estradiol (E2). To determine if these two estrogens exert similar actions in prostate carcinogenesis, we elevated circulating levels of estrogen in Noble (NBL) rats with E2/DES-filled implants, while maintaining physiological levels of testosterone (T) in the animals with T-filled implants. The two estrogens induced dysplasia in a lobe-specific manner, with E2 targeting only the lateral prostate (LP) and DES impacting only the ventral prostate (VP). Gene expression profiling identified distinct and common E2-disrupted versus DES-disrupted gene networks in each lobe. More importantly, hierarchical clustering analyses revealed that T + E2 treatment primarily affected the gene expression pattern in the LP, whereas T + DES treatment primarily affected the gene expression profile in the VP. Gene ontology analyses and pathway mapping suggest that the two hormone treatments disrupt unique and/or common cellular processes, including cell development, proliferation, motility, apoptosis, and estrogen signaling, which may be linked to dysplasia development in the rat prostate. These findings suggest that the effects of xenoestrogens and natural estrogens on the rat prostate are more divergent than previously suspected and that these differences may explain the lobe-specific carcinogenic actions of the hormones.
机译:通常认为异雌激素己烯雌酚(DES)模仿天然雌激素17β-雌二醇(E2)的作用。为了确定这两种雌激素是否在前列腺癌发生中发挥相似的作用,我们在填充有E2 / DES的植入物的Noble(NBL)大鼠中提高了雌激素的循环水平,同时在填充有T的植入物的动物中维持了睾丸激素(T)的生理水平。 。两种雌激素以叶特异性方式诱导不典型增生,其中E2仅靶向外侧前列腺(LP),而DES仅靶向腹侧前列腺(VP)。基因表达谱鉴定了在每个叶中独特且常见的E2破坏与DES破坏的基因网络。更重要的是,层次聚类分析显示T + E2处理主要影响LP中的基因表达模式,而T + DES处理主要影响VP中的基因表达谱。基因本体分析和途径作图表明,两种激素治疗会破坏独特和/或常见的细胞过程,包括细胞发育,增殖,运动,凋亡和雌激素信号传导,这可能与大鼠前列腺发育异常有关。这些发现表明,异雌激素和天然雌激素对大鼠前列腺的作用比以前怀疑的要分散得多,这些差异可能解释了激素的叶特异性致癌作用。

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