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食品源和水产养殖实验中使用的水产养殖生物中全氟和多氟烷基物质污染的发生情况。

Occurrence of Per- and Polyfluoroalkyl Substance Contamination of Food Sources and Aquaculture Organisms Used in Aquatic Laboratory Experiments.

机构信息

Division of Environmental Health Sciences, School of Public Health, University of Minnesota, Minneapolis, Minnesota, USA.

Department of Environmental Science, Center for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA.

出版信息

Environ Toxicol Chem. 2023 Jul;42(7):1463-1471. doi: 10.1002/etc.5624. Epub 2023 Jun 13.

Abstract

When performing basic and translational laboratory studies with aquatic organisms, particularly for bioaccumulation, toxicity, or biotransformation experiments, it is imperative to control the route and dose of exposure. Contamination of feed and the organisms prior to study could alter the results of an experiment. Furthermore, if organisms not exposed in the lab are used for quality assurance/quality control, then blank levels, method detection limits, and limits of quantitation can be affected. In an effort to determine the magnitude of this potential issue for exposure studies involving Pimephales promelas, we analyzed a suite of 24 per- and polyfluoroalkyl substances (PFAS) in four types of feed from three different companies and in organisms from five aquaculture facilities. Contamination with PFAS was found in all types of materials and organisms from all aquaculture farms. The most frequently detected PFAS in fish feed and aquaculture fathead minnows were perfluorocarboxylic acids and perfluorooctane sulfonate (PFOS). Concentrations of total and individual PFAS in feed ranged from nondetect to 76 ng/g and from nondetect to 60 ng/g, respectively. Fathead minnows were contaminated with PFOS and perfluorohexane sulfonate as well as several perflourocarboxylic acids. Concentrations of total and individual PFAS ranged from 1.4 to 351 ng/g and from nondetect to 328 ng/g, respectively. The PFOS measured in food was primarily the linear isomer, consistent with greater bioaccumulation of that isomer in organisms raised as fish food. Future studies are necessary to define the extent of PFAS contamination in aquatic culture facilities and aquaculture production operations. Environ Toxicol Chem 2023;42:1463-1471. © 2023 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

在进行水生生物的基础和转化实验室研究时,特别是进行生物积累、毒性或生物转化实验时,控制暴露途径和剂量至关重要。研究前饲料和生物体的污染可能会改变实验结果。此外,如果未在实验室中暴露的生物体用于质量保证/质量控制,那么空白水平、方法检测限和定量限可能会受到影响。为了确定涉及 Pimephales promelas 的暴露研究中这个潜在问题的严重程度,我们分析了来自三个不同公司的四种饲料以及来自五个水产养殖设施的生物体中的 24 种全氟和多氟烷基物质 (PFAS)。在所有类型的材料和来自所有水产养殖农场的生物体中都发现了 PFAS 污染。在鱼类饲料和水产养殖黑头呆鱼中最常检测到的 PFAS 是全氟羧酸和全氟辛烷磺酸 (PFOS)。饲料中总 PFAS 和各 PFAS 的浓度范围为未检出至 76ng/g,未检出至 60ng/g。黑头呆鱼受到 PFOS 和全氟己烷磺酸以及几种全氟羧酸的污染。总 PFAS 和各 PFAS 的浓度范围分别为 1.4 至 351ng/g 和未检出至 328ng/g。食物中测量的 PFOS 主要是线性异构体,与作为鱼类饲料饲养的生物体中该异构体的更大生物积累一致。未来的研究需要确定水产养殖设施和水产养殖生产作业中 PFAS 污染的程度。环境毒理学与化学 2023;42:1463-1471。© 2023 作者。环境毒理学与化学由 Wiley Periodicals LLC 代表 SETAC 出版。

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