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The in vivo developmental toxicity of diethylstilbestrol (DES) in rat evaluated by an alternative testing strategy

机译:通过替代测试策略评估二乙基胱酶(DES)的体内发育毒性

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In the present study, we evaluated an alternative testing strategy to quantitatively predict the in vivo developmental toxicity of the synthetic hormone diethylstilbestrol (DES). To this end, a physiologically based kinetic (PBK) model was defined that was subsequently used to translate concentration-response data for the in vitro developmental toxicity of DES, obtained in the ES-D3 cell differentiation assay, into predicted in vivo dose-response data for developmental toxicity. The previous studies showed that the PBK model-facilitated reverse dosimetry approach is a useful approach to quantitatively predict the developmental toxicity of several developmental toxins. The results obtained in the present study show that the PBK model adequately predicted DES blood concentrations in rats. Further studies revealed that DES tested positive in the ES-D3 differentiation assay and that DES-induced inhibition of the ES-D3 cell differentiation could be counteracted by the estrogen receptor alpha (ER alpha) antagonist fulvestrant, indicating that the in vitro ES-D3 cell differentiation assay was able to mimic the role of ER alpha reported in the mode of action underlying the developmental toxicity of DES in vivo. In spite of this, combining these in vitro data with the PBK model did not adequately predict the in vivo developmental toxicity of DES in a quantitative way. It is concluded that although the EST qualifies DES as a developmental toxin and detects the role of ER alpha in this process, the ES-D3 cell differentiation assay of the EST apparently does not adequately capture the processes underlying DES-induced developmental toxicity in vivo.
机译:在本研究中,我们评估了替代测试策略,以定量预测合成激素二乙基胱酶(DES)的体内发育毒性。为此,定义了一种生理基础的动力学(PBK)模型,其随后用于转化在ES-D3细胞分化测定中获得的体外发育毒性的浓度 - 响应数据,进入预测的体内剂量 - 反应发育毒性的数据。之前的研究表明,PBK模型促进的反向剂量法方法是定量预测几种发育毒素的发育毒性的有用方法。本研究中获得的结果表明,PBK模型在大鼠中充分预测Des血液浓度。进一步的研究表明,在ES-D3分化测定中检测阳性,并且DES诱导的ES-D3细胞分化的抑制可以由雌激素受体α(ERα)拮抗剂氟斯特朗替代,表明体外ES-D3细胞分化测定能够模拟ERα在体内DES的行动模式中报告的ERα的作用。尽管如此,将这些体外数据与PBK模型相结合并未以定量方式充分预测DES的体内发育毒性。得出结论,尽管EST作为发育毒素的赋予毒素并检测在该过程中的ERα的作用,但EST的ES-D3细胞分化测定显然不会充分捕获体内Des-诱导发育毒性的过程。

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