首页> 外文期刊>Environmental Science & Technology >In Vivo Generation of PFOA, PFOS, and Other Compounds from Cationic and Zwitterionic Per- and Polyfluoroalkyl Substances in a Terrestrial Invertebrate (Lumbricus terrestris)
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In Vivo Generation of PFOA, PFOS, and Other Compounds from Cationic and Zwitterionic Per- and Polyfluoroalkyl Substances in a Terrestrial Invertebrate (Lumbricus terrestris)

机译:体内产生PFOA,PFOS和来自阳离子和两性离子的其他化合物,陆地无脊椎动物(Lumbricus Terrestris)中的阳离子和两倍烷基物质

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摘要

Perfluorooctanoate (PFOA) and perfluorooctanesul- fonate (PFOS) are two environmentally persistent per- and polyfluoroalkyl substances (PFAS) that have been detected globally in human tissues and fluids. As part of a project investigating the indirect sources of PFOA/PFOS in the environment and engineered systems, this study is concerned with the mechanisms leading to their in vivo generation in terrestrial invertebrates. We demonstrate here the formation of PFOA and PFOS in earthworms (Lumbricus terrestris) from a group of four zwitterionic/cationic polyfluoroalkyl amides and sulfonamides. In bioaccumulation tests, the zwitterionic PFAS compounds were metabolized within 10 days to PFOA/PFOS at yields of 3.4-20.8 mol % by day 21 and several infrequently reported PFAS species for which chemical structures were determined using high-resolution mass spectrometry. Cationic PFAS, on the other hand, were found to be much less metabolizable in terms of the number (n = 2) and yields (0.9-5.l mol 96) of metabolites. Peak-shaped bioaccumulation profiles were frequently observed for the studied PFAS. Residual zwitterionic/cationic PFAS in earthworms were detected at the end of the elimination phase, indicating that not all zwitterionic/cationic PFAS molecules in vivo are available for enzymatic degradation. Finally, the relative importance of different exposure routes (i.e., waterborne and dietary exposure) was investigated.
机译:全氟辛酸盐(PFOA)和全氟辛酸盐(PFOS)是在人组织和流体中全球检测到的两个环保的每种环保和多氟烷基物质(PFA)。作为调查环境和工程系统中PFOA / PFOS的间接来源的项目的一部分,本研究涉及导致其在陆地无脊椎动物中的体内发电的机制。我们展示了从一组四两倍离子/阳离子聚氟烷基酰胺和磺酰胺中形成PFOA和PFOS中的PFOA和PFOS。在生物积累试验中,将两性离子PFAS化合物在10天内以3.4-20.8摩尔%的PFOA / PFOS在21天的产率下代谢,并且使用高分辨率质谱法测定化学结构的几种不经常报道的PFAS种。另一方面,阳离子PFA被发现在数量(n = 2)方面得到得更少得多,并产生(0.9-5.1mol 96)代谢物。对于研究的PFA来说经常观察到峰值成形的生物积累曲线。在消除阶段结束时检测到蚯蚓中残留的两性离子/阳离子PFA,表明在体内的所有两性离子/阳离子PFAs分子可用于酶促降解。最后,研究了不同暴露途径(即水性和饮食暴露)的相对重要性。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第12期|7378-7387|共10页
  • 作者单位

    Department of Civil Engineering University of North Dakota Grand Forks North Dakota 58202 United States;

    Department of Civil Engineering University of North Dakota Grand Forks North Dakota 58202 United States;

    Department of Biomedical Sciences University of North Dakota Grand Forks North Dakota 58202 United States;

    Department of Biomedical Sciences University of North Dakota Grand Forks North Dakota 58202 United States;

    Department of Civil Engineering University of North Dakota Grand Forks North Dakota 58202 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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