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Extended evaluation on the ES-D3 cell differentiation assay combined with the BeWo transport model to predict relative developmental toxicity of triazole compounds

机译:ES-D3细胞分化测定与BeWo转运模型相结合的扩展评估可预测三唑化合物的相对发育毒性

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摘要

The mouse embryonic stem D3 (ES-D3) cell differentiation assay is based on the morphometric measurement of cardiomyocyte differentiation and is a promising tool to detect developmental toxicity of compounds. The BeWo transport model, consisting of BeWo b30 cells grown on transwell inserts and mimicking the placental barrier, is useful to determine relative placental transport velocities of compounds. We have previously demonstrated the usefulness of the ES-D3 cell differentiation assay in combination with the in vitro BeWo transport model to predict the relative in vivo developmental toxicity potencies of a set of reference azole compounds. To further evaluate this combined in vitro toxicokinetic and toxicodynamic approach, we combined ES-D3 cell differentiation data of six novel triazoles with relative transport rates obtained from the BeWo model and compared the obtained ranking to the developmental toxicity ranking as derived from in vivo data. The data show that the combined in vitro approach provided a correct prediction for in vivo developmental toxicity, whereas the ES-D3 cell differentiation assay as stand-alone did not. In conclusion, we have validated the combined in vitro approach for developmental toxicity, which we have previously developed with a set of reference azoles, for a set of six novel triazoles. We suggest that this combined model, which takes both toxicodynamic and toxicokinetic aspects into account, should be further validated for other chemical classes of developmental toxicants.
机译:小鼠胚胎干D3(ES-D3)细胞分化测定基于心肌细胞分化的形态计量学,是检测化合物发育毒性的有前途的工具。 BeWo转运模型由生长在transwell插入片段上并模仿胎盘屏障的BeWo b30细胞组成,可用于确定化合物的相对胎盘转运速度。我们以前已经证明了ES-D3细胞分化测定法与体外BeWo转运模型相结合可用于预测一组参考唑化合物的相对体内发育毒性的有效性。为了进一步评估这种组合的体外毒物动力学和毒物动力学方法,我们将六种新型三唑的ES-D3细胞分化数据与从BeWo模型获得的相对转运率相结合,并将获得的排名与从体内数据得出的发育毒性排名进行了比较。数据表明,组合的体外方法为体内发育毒性提供了正确的预测,而独立的ES-D3细胞分化测定则没有。总而言之,我们已经验证了用于体外发育毒性的联合方法,该方法是我们先前使用一组参考唑开发的,用于一组六种新型三唑。我们建议,应将结合了毒物动力学和毒物动力学方面的这一综合模型进一步用于发育毒物的其他化学类别。

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