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利用 ToxCast 数据和蛋白质序列保守性来补充水生生物基准推导。

Leveraging ToxCast data and protein sequence conservation to complement aquatic life criteria derivation.

机构信息

Oak Ridge Institute for Science and Education, USEPA, Great Lakes Toxicology and Ecology Division, Duluth, Minnesota, USA.

USEPA, Great Lakes Toxicology and Ecology Division, Duluth, Minnesota, USA.

出版信息

Integr Environ Assess Manag. 2023 Jan;19(1):224-238. doi: 10.1002/ieam.4617. Epub 2022 May 20.

Abstract

The USEPA's 1985 guidelines for the derivation of aquatic life criteria (ALC) are robust but data-intensive. For many chemicals, the extensive in vivo data sets required for ALC derivation are not available. Thus, alternative analyses and processes that can provide provisional values to guide states, tribes, and other stakeholders while data accumulate and more rigorous criteria are derived would be beneficial. The overarching purpose of this study was to assess the feasibility of using data from new approach methodologies (NAMs) like ToxCast to derive first-pass, provisional values to guide chemical prioritization and resource management as a complement to traditional ALC derivation. To address this goal, the study objectives were to (1) estimate chemical potency using data from NAMs for nine compounds with available aquatic benchmarks, (2) evaluate the utility of using NAM data to elucidate potential mechanisms of toxicity to guide problem formulation, and (3) determine the species relevance of toxicity pathways for compounds with clearly defined mechanisms of action as a means to evaluate whether minimum data requirements could potentially be waived when deriving a more formal ALC. Points of departure were derived from ToxCast data based on the fifth percentile of the distribution of activity concentration above cutoff values falling below the cytotoxic burst. Mechanistic inferences were made based on active target hits in ToxCast and, where applicable, assessed for taxonomic conservation using SeqAPASS. ToxCast-based point-of-departure aligned relatively closely (six of nine test chemicals within a factor of 10; eight of nine within a factor of 100) with aquatic benchmarks from the USEPA and US Department of Energy (DOE). Moreover, pathways of toxicity gleaned from NAM data were reflective of in vivo-based findings from the literature. These results, while preliminary, and based on a limited number of substances, support the potential application of NAM data to complement traditional ALC derivation approaches and prioritization. Integr Environ Assess Manag 2023;19:224-238. © 2022 Society of Environmental Toxicology & Chemistry (SETAC). This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA.

摘要

美国环保署 1985 年水生生物标准推导指南(ALC)稳健但数据密集。对于许多化学物质,推导 ALC 所需的广泛体内数据集不可用。因此,在数据积累和更严格的标准推导的同时,能够提供临时值以指导州、部落和其他利益相关者的替代分析和流程将是有益的。本研究的总体目的是评估使用新方法方法(NAM)如 ToxCast 中的数据来推导第一通过、临时值以指导化学优先排序和资源管理的可行性,作为对传统 ALC 推导的补充。为了实现这一目标,本研究的目标是:(1)使用具有可用水生基准的九种化合物的 NAM 数据估计化学效价;(2)评估使用 NAM 数据阐明毒性潜在机制以指导问题制定的效用;(3)确定具有明确作用机制的化合物毒性途径的物种相关性,作为评估在推导更正式的 ALC 时是否可以免除最低数据要求的一种手段。起点是根据 ToxCast 数据中低于细胞毒性爆发的截止值以上的活性浓度分布的第五个百分位推导出来的。基于 ToxCast 中的活性靶标命中并在适用的情况下使用 SeqAPASS 评估分类群保守性做出机制推断。基于 ToxCast 的起点与美国环保署和美国能源部(DOE)的水生基准非常接近(九种测试化学品中有六种在十倍以内;九种中有八种在一百倍以内)。此外,从 NAM 数据中获得的毒性途径反映了文献中基于体内的发现。这些结果虽然初步的,并且基于有限数量的物质,但支持将 NAM 数据应用于补充传统的 ALC 推导方法和优先级排序的潜力。综合环境评估与管理 2023;19:224-238。©2022 环境毒理与化学学会(SETAC)。本文已由美国政府雇员做出贡献,其工作在美国属于公有领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2573/10618725/29a2235c83d7/nihms-1933977-f0001.jpg

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