首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Embryotoxic and teratogenic effects of the combination of bisphenol A and genistein on in vitro cultured postimplantation rat embryos.
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Embryotoxic and teratogenic effects of the combination of bisphenol A and genistein on in vitro cultured postimplantation rat embryos.

机译:双酚A和染料木黄酮的组合对体外培养的大鼠植入后胚胎的胚胎毒性和致畸作用。

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摘要

The potential teratogenic effects and fetal toxicity of environmental estrogenic endocrine disruptors have become a great concern in recent years, and they have yet to be fully characterized. In the present study, the teratogenic effects of bisphenol A (BPA) and genistein (GEN) on rat embryos during their critical period of organogenesis were investigated using a whole-embryo culture experiment. The combined exposure effects of BPA and GEN were explored using a 4 x 4 full factorial design. Both BPA and GEN produced concentration-dependent inhibition of embryonic development, beginning at 32.0 and 10.0 microg/ml, respectively. Full factorial and isobologram analyses revealed a significant synergistic interaction between BPA and GEN for most end points (12 out of 20 tested), as indicated by the enhanced developmental toxicity of BPA after coexposure with different dose levels of GEN. In particular, serious malformations and a higher abnormal frequency of the central nervous system were induced by the combination of BPA and GEN. Our findings suggest that GEN may be embryotoxic and teratogenic to humans. BPA alone may not be a potential teratogen, but these two estrogenic chemicals have a synergistic effect on embryonic development when present together during the critical period of major organ formation. The current findings suggest that pregnant women should not take soy supplements, but more studies are necessary to provide a conclusive recommendation.
机译:近年来,环境雌激素内分泌干扰物的潜在致畸作用和胎儿毒性已成为人们高度关注的问题,尚未得到充分表征。在本研究中,使用全胚培养实验研究了双酚A(BPA)和染料木黄酮(GEN)对大鼠胚胎器官发生关键时期的致畸作用。使用4 x 4全因子设计探索了BPA和GEN的组合暴露效果。 BPA和GEN均产生浓度依赖性的胚胎发育抑制,分别从32.0和10.0 microg / ml开始。充分的阶乘图和等效线图分析表明,对于大多数终点(测试的20个中的12个),BPA和GEN之间存在显着的协同作用,这与在不同剂量的GEN共同暴露后BPA的发育毒性增强有关。特别是,BPA和GEN的结合会引起严重的畸形和较高的中枢神经系统异常频率。我们的发现表明,GEN可能对人类具有胚胎毒性和致畸性。单独的BPA可能不是潜在的致畸剂,但是当在主要器官形成的关键时期一起存在时,这两种雌激素化学物质对胚胎发育具有协同作用。目前的发现表明,孕妇不应服用大豆补充剂,但有必要进行更多研究以提供结论性建议。

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