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六溴环十二烷(HBCD):应用分层测试进行人类健康风险评估的案例研究。

Hexabromocyclododecane (HBCD): A case study applying tiered testing for human health risk assessment.

机构信息

Regulatory Toxicology Research Division, Bureau of Chemical Safety, Food Directorate, HPFB, Health Canada, ON, Canada.

Exposure and Biomonitoring Division, Environmental Health Science and Research Bureau (EHSRB), Healthy Environments and Consumer Safety Branch (HECSB), Health Canada, Ottawa, ON, Canada.

出版信息

Food Chem Toxicol. 2019 Sep;131:110581. doi: 10.1016/j.fct.2019.110581. Epub 2019 Jun 13.

Abstract

Current global efforts are aiming to increase use of mechanistic information in regulatory testing. In tiered testing paradigms, in vitro, in silico, and in vivo studies are employed progressively to identify and classify health hazards, which are then compared against human equivalent doses. We used data from three companion papers on the brominated flame retardant hexabromocyclododecane (HBCD) to conduct a case study on tiered testing. We included ToxCast™ and in vitro-in vivo extrapolation (Tier 1), rat liver transcriptomic (Tier 2), and conventional rat (Tier 3) data. Bioactivity-exposure ratios (BERs) were derived by comparing human administered dose equivalents of the measured effects to Canadian exposure levels. Biological perturbations were highly aligned between Tiers 1/2, and consistent with apical effects in Tier 3. Tier 1 had the smallest BERs, and Tiers 2/3 were similar. The study demonstrates the promise of using physiologically-based pharmacokinetic modeling and mechanistic analyses in a tiered framework to identify pathways through which chemicals exert toxicological effects; however, they also point to some shortcomings associated with in vitro and in silico approaches. Additional case studies of chemicals from multiple classes are required to define optimal tiered screening procedures to reduce future in vivo requirements in health hazard assessments.

摘要

当前,全球各国都在努力增加将机制信息应用于监管测试的力度。在分层测试范式中,逐步采用体外、计算和体内研究来识别和分类健康危害,然后将其与人类等效剂量进行比较。我们使用了三篇关于溴化阻燃剂六溴环十二烷 (HBCD) 的配套论文中的数据,对分层测试进行了案例研究。我们纳入了 ToxCast™ 和体外-体内外推法(第 1 层)、大鼠肝转录组学(第 2 层)和常规大鼠(第 3 层)的数据。通过将测量效应的人类给药等效剂量与加拿大暴露水平进行比较,得出了生物活性-暴露比(BER)。第 1 层和第 2 层之间的生物学扰动高度一致,与第 3 层的顶端效应一致。第 1 层的 BER 最小,第 2 层和第 3 层相似。该研究证明了在分层框架中使用基于生理学的药代动力学建模和机制分析来识别化学物质发挥毒理学效应的途径的前景;然而,它们也指出了与体外和计算方法相关的一些缺点。需要对来自多个类别的化学物质进行更多的案例研究,以确定最佳的分层筛选程序,从而减少未来健康危害评估中的体内要求。

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