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Unbound Fractions of PFAS in Human and Rodent Tissues: Rat Liver a Suitable Proxy for Evaluating Emerging PFAS?
Ryu, Sangwoo; Burchett, Woodrow; Zhang, Sam; Jia, Xuelian; Modaresi, Seyed Mohamad Sadegh; Agudelo Areiza, Juliana; Rodrigues, David; Zhu, Hao; Sunderland, Elsie M; Fischer, Fabian Christoph; Slitt, Angela L.
Afiliación
  • Ryu S; Department of Biomedical and Pharmaceutical Sciences, University of Rhode Island, Kingston, Rhode Island 02881, United States.
  • Burchett W; Pharmacokinetics, Dynamics and Metabolism, Pfizer Worldwide Research & Development, Pfizer Incorporated, Groton, Connecticut 06340, United States.
  • Zhang S; Pharmacokinetics, Dynamics and Metabolism, Pfizer Worldwide Research & Development, Pfizer Incorporated, Groton, Connecticut 06340, United States.
  • Jia X; Pharmacokinetics, Dynamics and Metabolism, Pfizer Worldwide Research & Development, Pfizer Incorporated, Groton, Connecticut 06340, United States.
  • Modaresi SMS; Department of Chemistry and Biochemistry, Rowan University, Glassboro, New Jersey 08028, United States.
  • Agudelo Areiza J; Center for Biomedical Informatics and Genomics, Tulane University, New Orleans, Louisiana 70112, United States.
  • Rodrigues D; Department of Biomedical and Pharmaceutical Sciences, University of Rhode Island, Kingston, Rhode Island 02881, United States.
  • Zhu H; Department of Biomedical and Pharmaceutical Sciences, University of Rhode Island, Kingston, Rhode Island 02881, United States.
  • Sunderland EM; Pharmacokinetics, Dynamics and Metabolism, Pfizer Worldwide Research & Development, Pfizer Incorporated, Groton, Connecticut 06340, United States.
  • Fischer FC; Department of Chemistry and Biochemistry, Rowan University, Glassboro, New Jersey 08028, United States.
  • Slitt AL; Center for Biomedical Informatics and Genomics, Tulane University, New Orleans, Louisiana 70112, United States.
Environ Sci Technol ; 58(33): 14641-14650, 2024 Aug 20.
Article en En | MEDLINE | ID: mdl-39161261
ABSTRACT
Adverse health effects associated with exposures to perfluoroalkyl and polyfluoroalkyl substances (PFAS) are a concern for public health and are driven by their elimination half-lives and accumulation in specific tissues. However, data on PFAS binding in human tissues are limited. Accumulation of PFAS in human tissues has been linked to interactions with specific proteins and lipids in target organs. Additional data on PFAS binding and unbound fractions (funbound) in whole human tissues are urgently needed. Here, we address this gap by using rapid equilibrium dialysis to measure the binding and funbound of 16 PFAS with 3 to 13 perfluorinated carbon atoms (ηpfc = 3-13) and several functional headgroups in human liver, lung, kidney, heart, and brain tissue. We compare results to mouse (C57BL/6 and CD-1) and rat tissues. Results show that funbound decreases with increasing fluorinated carbon chain length and hydrophobicity. Among human tissues, PFAS binding was generally greatest in brain > liverkidneysheart > lungs. A correlation analysis among human and rodent tissues identified rat liver as a suitable surrogate for predicting funbound for PFAS in human tissues (R2 ≥ 0.98). The funbound data resulting from this work and the rat liver prediction method offer input parameters and tools for toxicokinetic models for legacy and emerging PFAS.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Fluorocarburos / Hígado Límite: Animals / Humans Idioma: En Revista: Environ Sci Technol Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Fluorocarburos / Hígado Límite: Animals / Humans Idioma: En Revista: Environ Sci Technol Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos