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Untargeted MSn-Based Monitoring of Glucuronides in Fish: Screening Complex Mixtures for Contaminants with Biological Relevance.
Evich, Marina G; Mosley, Jonathan D; Ntai, Ioanna; Cavallin, Jenna E; Villeneuve, Daniel L; Ankley, Gerald T; Collette, Timothy W; Ekman, Drew R.
Affiliation
  • Evich MG; 1. Center for Environmental Measurement and Modeling, Environmental Protection Agency, Athens, Georgia 30605, United States.
  • Mosley JD; 1. Center for Environmental Measurement and Modeling, Environmental Protection Agency, Athens, Georgia 30605, United States.
  • Ntai I; 2. Thermo Fisher Scientific, San Jose, California 95134, United States; Present Address: BioMarin Pharmaceutical Inc, San Rafael, CA 94901, USA.
  • Cavallin JE; 3. Center for Computational Toxicology and Exposure, Environmental Protection Agency, Duluth, Minnesota 55804, United States.
  • Villeneuve DL; 3. Center for Computational Toxicology and Exposure, Environmental Protection Agency, Duluth, Minnesota 55804, United States.
  • Ankley GT; 3. Center for Computational Toxicology and Exposure, Environmental Protection Agency, Duluth, Minnesota 55804, United States.
  • Collette TW; 1. Center for Environmental Measurement and Modeling, Environmental Protection Agency, Athens, Georgia 30605, United States.
  • Ekman DR; 1. Center for Environmental Measurement and Modeling, Environmental Protection Agency, Athens, Georgia 30605, United States.
ACS ES T Water ; 2(12): 2481-2490, 2022 Dec 09.
Article de En | MEDLINE | ID: mdl-37288388
ABSTRACT
The complexity of contaminant mixtures in surface waters has presented long-standing challenges to the assessment of risks to human health and the environment. As a result, novel strategies for both identifying contaminants that have not been routinely monitored through targeted methods and prioritizing detected compounds with respect to their biological relevance are needed. Tracking biotransformation products in biofluids and tissues in an untargeted fashion facilitates the identification of chemicals taken up by the resident species (e.g., fish), so by default ensuring that detected compounds are biologically relevant in terms of exposure. In this study, we investigated xenobiotic glucuronidation, which is arguably the most important phase II metabolism pathway for many pharmaceuticals, pesticides, and other environmental contaminants. The application of an untargeted high-resolution mass spectrometry-based approach tentatively revealed the presence of over 70 biologically relevant xenobiotics in bile collected from male and female fathead minnows exposed to wastewater treatment plant effluents. The majority of these were not targets of conventional contaminant monitoring. These results highlight the utility of biologically based untargeted screening methods when evaluating chemical contaminants in complex environmental mixtures.
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Type d'étude: Diagnostic_studies / Screening_studies Langue: En Journal: ACS ES T Water Année: 2022 Type de document: Article Pays d'affiliation: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Type d'étude: Diagnostic_studies / Screening_studies Langue: En Journal: ACS ES T Water Année: 2022 Type de document: Article Pays d'affiliation: États-Unis d'Amérique
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