首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Use of physiologically based kinetic modeling-facilitated reverse dosimetry of in vitro toxicity data for prediction of in vivo developmental toxicity of tebuconazole in rats
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Use of physiologically based kinetic modeling-facilitated reverse dosimetry of in vitro toxicity data for prediction of in vivo developmental toxicity of tebuconazole in rats

机译:使用基于生理基于的动力学模型 - 促进的体外毒性数据的促进剂量数据,以预测Tebuconazole在大鼠的体内发育毒性

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摘要

Toxicological hazard and risk assessment largely rely on animal testing. For economic and ethical reasons, the development and validation of reliable alternative methods for these animal studies, such as in vitro assays, are urgently needed. In vitro concentration-response curves, however, need to be translated into in vivo dose-response curves for risk assessment purposes. In the present study, we translated in vitro concentration-response data of the antifungal compound tebuconazole, obtained in the ES-D3 cell differentiation assay, into predicted in vivo dose-response data for developmental toxicity using physiologically based kinetic (PBK) modeling-facilitated reverse dosimetry. Using the predicted in vivo dose-response data BMD(L)10 values for developmental toxicity in rat were calculated and compared with NOAEL values for developmental toxicity data in rats as reported in the literature. The results show that the BMDL10 value from predicted dose-response data are a reasonable approximation of the NOAEL values (ca. 3-fold difference). It is concluded that PBK modeling-facilitated reverse dosimetry of in vitro toxicity data is a promising tool to predict in vivo dose-response curves and may have the potential to define a point of departure for deriving safe exposure limits in risk assessment. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:毒理学危害和风险评估在很大程度上依赖于动物测试。对于经济和道德原因,迫切需要进行经济和道德原因,迫切需要对这些动物研究的可靠替代方法的开发和验证,例如体外测定。然而,在体外浓度 - 反应曲线需要转化为体内剂量 - 反应曲线,用于风险评估目的。在本研究中,我们在ES-D3细胞分化测定中获得的抗真菌化合物Tebuconazole的体外浓度 - 反应数据,预测使用生理基础的动力学(PBK)建模的发育毒性的体内剂量 - 响应数据预测反向剂量测定。使用预测的Vivo剂量 - 响应数据BMD(L)10计算大鼠的发育毒性值,并与文献中报道的大鼠中发育毒性数据的Noael值进行比较。结果表明,来自预测剂量响应数据的BMDL10值是NoaEL值(CA.3倍差)的合理近似。结论是,PBK建模促进的体外毒性数据的反向剂量是一种有助于预测体内剂量 - 反应曲线的工具,并且可能有可能定义偏离点,以导出风险评估中的安全暴露限制。 (c)2016 Elsevier Ireland Ltd.保留所有权利。

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