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比较几种挥发性有机化合物(VOCs)的体内衍生和体外比例代谢率常数。

Comparison of in vivo derived and scaled in vitro metabolic rate constants for several volatile organic compounds (VOCs).

机构信息

Center for Computational Toxicology and Exposure, U.S. EPA, Office of Research and Development, Research Triangle Park, NC, United States.

Center for Computational Toxicology and Exposure, U.S. EPA, Office of Research and Development, Research Triangle Park, NC, United States.

出版信息

Toxicol In Vitro. 2020 Dec;69:105002. doi: 10.1016/j.tiv.2020.105002. Epub 2020 Sep 15.

Abstract

Metabolic rate parameters estimation using in vitro data is necessary due to numbers of chemicals for which data are needed, trend towards minimizing laboratory animal use, and limited opportunity to collect data in human subjects. We evaluated how well metabolic rate parameters derived from in vitro data predict overall in vivo metabolism for a set of environmental chemicals for which well validated and established methods exist. We compared values of VmaxC derived from in vivo vapor uptake studies with estimates of VmaxC scaled up from in vitro hepatic microsomal metabolism studies for VOCs for which data were available in male F344 rats. For 6 of 7 VOCs, differences between the in vivo and scaled up in vitro VmaxC estimates were less than 2.6-fold. For bromodichloromethane (BDCM), the in vivo derived VmaxC was approximately 4.4-fold higher than the in vitro derived and scaled up VmaxC. The more rapid rate of BDCM metabolism estimated based in vivo studies suggests other factors such as extrahepatic metabolism, binding or other non-specific losses making a significant contribution to overall clearance. Systematic and reliable utilization of scaled up in vitro biotransformation rate parameters in PBPK models will require development of methods to predict cases in which extrahepatic metabolism and binding as well as other factors are likely to be significant contributors.

摘要

由于需要大量的化学物质数据,为了减少实验室动物的使用,以及在人体中收集数据的机会有限,因此使用体外数据估计代谢率参数是必要的。我们评估了从一组具有良好验证和建立方法的环境化学物质的体外数据中得出的代谢率参数在多大程度上可以预测整体体内代谢。我们比较了可从体内蒸气摄取研究中得出的 VmaxC 值与从体外肝微粒体代谢研究中推断出的 VmaxC 值,对于在雄性 F344 大鼠中具有数据的挥发性有机化合物(VOC),我们进行了研究。对于 7 种 VOC 中的 6 种,体内和体外推断的 VmaxC 之间的差异小于 2.6 倍。对于溴二氯甲烷(BDCM),体内得出的 VmaxC 比体外得出的和放大的 VmaxC 高约 4.4 倍。基于体内研究估计的 BDCM 代谢速度更快,这表明其他因素,如肝外代谢、结合或其他非特异性损失,对整体清除率有重要贡献。要在 PBPK 模型中系统且可靠地利用放大的体外生物转化速率参数,需要开发预测肝外代谢和结合以及其他因素可能是重要贡献者的方法。

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