class='kwd-title'>Keywords: Estrogen, Steroid su'/> Local estrogen metabolism in epithelial ovarian cancer suggests novel targets for therapy
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Local estrogen metabolism in epithelial ovarian cancer suggests novel targets for therapy

机译:上皮性卵巢癌中的局部雌激素代谢提示新的治疗靶点

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class="kwd-title">Keywords: Estrogen, Steroid sulfatase, Estrogen sulfotransferase, Epithelial ovarian cancer, Ovarian surface epithelium class="head no_bottom_margin" id="idm140114697294736title">AbstractEpithelial ovarian cancer (EOC) accounts for about 90% of malignant ovarian tumors, and estrogen is often implicated in disease progression. We therefore compared the potential for gating of estrogen action via pre-receptor metabolism in normal human ovarian surface epithelium (OSE), EOC and selected EOC cell lines (SKOV3 and PEO1). Steroid sulphatase (STS), estrogen sulfotransferase (EST), 17β-hydroxysteroid dehydrogenases 2 (17BHSD2) and 5 (17BHSD5) mRNAs, proteins and enzymatic activities were all detectable in primary cell cultures of OSE and EOC, whereas aromatase and 17BHSD1 expression was negligible. qRT-PCR assay on total mRNA revealed significantly higher EST mRNA expression in OSE compared to EOC (P < 0.05). Radioenzymatic measurements confirmed reduced sulfoconjugation (neutralization) of free estrogen in EOC relative to OSE. OSE cells were more effective at converting free [3H]-E1 to [3H]-E1S or [3H]-E2S, while EOC cell lines mainly converted [3H]-E1 to [3H]-E2 with minimal formation of [3H]-E1S or [3H]-E2S. IL1α treatment suppressed EST (P < 0.01) and 17BHSD2 (P < 0.001) mRNA levels in OSE and stimulated STS mRNA levels (P < 0.001) in cancer (SKOV3) cells. These results show that estrogen is differentially metabolized in OSE and EOC cells, with E2 ‘activation’ from conjugated estrogen predominating in EOC. Inflammatory cytokines may further augment the local production of E2 by stimulating STS and suppressing EST. We conclude that local estrogen metabolism may be a target for EOC treatment.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:雌激素,类固醇硫酸酯酶,雌激素磺基转移酶,上皮性卵巢癌,卵巢表面上皮 class =“ head no_bottom_margin“ id =” idm140114697294736title“>摘要上皮性卵巢癌(EOC)约占卵巢恶性肿瘤的90%,雌激素通常与疾病进展有关。因此,我们比较了正常人卵巢表面上皮(OSE),EOC和所选EOC细胞系(SKOV3和PEO1)中通过受体前代谢进行雌激素作用的可能性。在OSE和EOC的原代细胞培养中,可以检测到类固醇硫酸酶(STS),雌激素硫转移酶(EST),17β-羟基甾类脱氢酶2(17BHSD2)和5(17BHSD5)的mRNA,蛋白质和酶活性,而芳香化酶和17BHSD1的表达可忽略不计。 。对总mRNA的qRT-PCR分析显示,与EOC相比,OSE中的EST mRNA表达显着更高(P <0.05)。放射性酶测定证实相对于OSE,EOC中游离雌激素的磺基结合减少(中和)。 OSE细胞更有效地将游离的[ 3 H] -E1转换为[ 3 H] -E1S或[ 3 H] -E2S,而EOC细胞系主要将[ 3 H] -E1转化为[ 3 H] -E2,而形成的[ 3 H] -E1S最少或[ 3 H] -E2S。 IL1α处理抑制了OSE(SKOV3)细胞中EST的EST(P <0.01)和17BHSD2(P <0.001)mRNA水平,并刺激了STS mRNA水平(P <0.001)。这些结果表明,雌激素在OSE和EOC细胞中差异代谢,结合的雌激素在EOC中占主导地位的E2被“激活”。炎性细胞因子可通过刺激STS和抑制EST进一步增加E2的局部产生。我们得出结论,局部雌激素代谢可能是EOC治疗的目标。

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