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首页> 外文期刊>Reproductive toxicology >In vitro exposure of porcine granulosa cells to the phytoestrogens genistein and daidzein: effects on the biosynthesis of reproductive steroid hormones.
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In vitro exposure of porcine granulosa cells to the phytoestrogens genistein and daidzein: effects on the biosynthesis of reproductive steroid hormones.

机译:猪颗粒细胞在体外暴露于植物雌激素染料木黄酮和黄豆苷元:对生殖类固醇激素生物合成的影响。

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摘要

Since a discrepancy concerning the effects of phytoestrogens on steroidogenesis exists in the literature we investigated the effects of genistein and daidzein on progesterone and estradiol synthesis in cultured primary granulosa cells derived from follicles of porcine ovaries. In this context, the investigation was performed to test the hypothesis that isoflavones can reduce hydroxysteroid dehydrogenase/isomerase (3beta-HSD) activity by down-regulation of its transcription. We found that daidzein did not impair the viability of cultured granulosa cells in the concentration range from 0.1 to 100 microM, but genistein inhibited the cell viability at 50 microM compared to the unexposed controls. Forskolin (10 microM) and pregnenolone (2.5 microM) enhanced the basal progesterone secretion in the absence of both phytoestrogens. Daidzein or genistein at non-toxic concentrations alone or combined with forskolin or pregnenolone significantly reduced progesterone synthesis. This reduction was not due to changesof the abundance of P450scc protein, but the gene hydroxysteroid dehydrogenase/isomerase (3beta-HSD) was significantly decreased at a non-toxic concentration of daidzein (50 microM) in non-stimulated and pregnenolone-stimulated cells. Moreover, genistein (1, 10 microM) significantly inhibited the 3beta-HSD-mRNA only in pregnenolone-stimulated granulosa cells. It can be suggested that the effect of genistein on steroidogenesis only partly results from the impairment of 3beta-HSD gene expression. In non-toxic concentrations daidzein and genistein did not change the androstenedione- or testosterone-stimulated estradiol-17beta synthesis. In summary, genistein and daidzein have direct effects on porcine granulosa cell progesterone synthesis which involve the inhibition of 3beta-HSD enzyme activity across the post-cyclic AMP pathway.
机译:由于在文献中存在关于植物雌激素对类固醇生成作用的差异,我们研究了染料木黄酮和大豆苷元对猪卵巢卵泡培养的原代颗粒细胞中孕酮和雌二醇合成的影响。在这种情况下,进行了调查以检验异黄酮可通过下调其转录来降低羟类固醇脱氢酶/异构酶(3beta-HSD)活性的假设。我们发现黄豆苷元在浓度范围从0.1到100 microM时不会损害培养的颗粒细胞的活力,但与未暴露的对照相比,金雀异黄素抑制了50 microM的细胞活力。在两种植物雌激素都不存在的情况下,佛司可林(10 microM)和孕烯醇酮(2.5 microM)增强了基础孕酮的分泌。单独或与毛喉素或孕烯醇酮组合使用的无毒浓度的大豆黄酮或染料木黄酮可显着减少孕酮的合成。这种减少不是由于P450scc蛋白丰度的变化,而是在未刺激和孕烯醇酮刺激的细胞中,当大豆苷元无毒浓度(50 microM)时,羟类固醇脱氢酶/异构酶(3beta-HSD)基因显着降低。此外,染料木黄酮(1,10 microM)仅在孕烯醇酮刺激的颗粒细胞中显着抑制3beta-HSD-mRNA。可以暗示金雀异黄素对类固醇生成的影响仅部分源于3β-HSD基因表达的损伤。在无毒浓度下,大豆黄酮和染料木黄酮不会改变雄烯二酮或睾丸激素刺激的雌二醇-17β的合成。总之,金雀异黄素和黄豆苷元对猪颗粒细胞孕酮的合成具有直接影响,涉及抑制整个环后AMP途径中3β-HSD酶的活性。

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