Literature DB >> 33227583

Biomarkers, matrices and analytical methods targeting human exposure to chemicals selected for a European human biomonitoring initiative.

Katrin Vorkamp1, Argelia Castaño2, Jean-Philippe Antignac3, Luis D Boada4, Enrique Cequier5, Adrian Covaci6, Marta Esteban López7, Line S Haug8, Monika Kasper-Sonnenberg9, Holger M Koch10, Octavio Pérez Luzardo11, Agnese Osīte12, Loïc Rambaud13, Maria-Teresa Pinorini14, Gabriele Sabbioni15, Cathrine Thomsen16.   

Abstract

The major purpose of human biomonitoring is the mapping and assessment of human exposure to chemicals. The European initiative HBM4EU has prioritized seven substance groups and two metals relevant for human exposure: Phthalates and substitutes (1,2-cyclohexane dicarboxylic acid diisononyl ester, DINCH), bisphenols, per- and polyfluoroalkyl substances (PFASs), halogenated and organophosphorous flame retardants (HFRs and OPFRs), polycyclic aromatic hydrocarbons (PAHs), arylamines, cadmium and chromium. As a first step towards comparable European-wide data, the most suitable biomarkers, human matrices and analytical methods for each substance group or metal were selected from the scientific literature, based on a set of selection criteria. The biomarkers included parent compounds of PFASs and HFRs in serum, of bisphenols and arylamines in urine, metabolites of phthalates, DINCH, OPFRs and PAHs in urine as well as metals in blood and urine, with a preference to measure Cr in erythrocytes representing Cr (VI) exposure. High performance liquid chromatography-tandem mass spectrometry (LC-MS/MS) was the method of choice for bisphenols, PFASs, the HFR hexabromocyclododecane (HBCDD), phenolic HFRs as well as the metabolites of phthalates, DINCH, OPFRs and PAHs in urine. Gas chromatographic (GC) methods were selected for the remaining compounds, e.g. GC-low resolution MS with electron capture negative ionization (ECNI) for HFRs. Both GC-MS and LC-MS/MS were suitable for arylamines. New developments towards increased applications of GC-MS/MS may offer alternatives to GC-MS or LC-MS/MS approaches, e.g. for bisphenols. The metals were best determined by inductively coupled plasma (ICP)-MS, with the particular challenge of avoiding interferences in the Cd determination in urine. The evaluation process revealed research needs towards higher sensitivity and non-invasive sampling as well as a need for more stringent quality assurance/quality control applications and assessments.
Copyright © 2020. Published by Elsevier Ltd.

Entities:  

Keywords:  Bisphenols; Flame retardants; HBM4EU; Metals; Per- and polyfluoroalkyl substances; Phthalates

Year:  2020        PMID: 33227583     DOI: 10.1016/j.envint.2020.106082

Source DB:  PubMed          Journal:  Environ Int        ISSN: 0160-4120            Impact factor:   9.621


  13 in total

1.  Development of a Flame Retardant and an Organohalogen Flame Retardant Chemical Inventory.

Authors:  Charles Bevington; Antony J Williams; Colin Guider; Nancy C Baker; Brian Meyer; Michael A Babich; Sayon Robinson; Ann Jones; Katherine A Phillips
Journal:  Sci Data       Date:  2022-06-13       Impact factor: 6.444

2.  Validated single urinary assay designed for exposomic multi-class biomarkers of common environmental exposures.

Authors:  Ravikumar Jagani; Divya Pulivarthi; Dhavalkumar Patel; Rosalind J Wright; Robert O Wright; Manish Arora; Mary S Wolff; Syam S Andra
Journal:  Anal Bioanal Chem       Date:  2022-06-27       Impact factor: 4.478

3.  Chemical Mixtures in the EU Population: Composition and Potential Risks.

Authors:  Sebastian Socianu; Stephanie K Bopp; Eva Govarts; Liese Gilles; Jurgen Buekers; Marike Kolossa-Gehring; Thomas Backhaus; Antonio Franco
Journal:  Int J Environ Res Public Health       Date:  2022-05-18       Impact factor: 4.614

4.  Harmonization of Human Biomonitoring Studies in Europe: Characteristics of the HBM4EU-Aligned Studies Participants.

Authors:  Liese Gilles; Eva Govarts; Laura Rodriguez Martin; Anna-Maria Andersson; Brice M R Appenzeller; Fabio Barbone; Argelia Castaño; Dries Coertjens; Elly Den Hond; Vazha Dzhedzheia; Ivan Eržen; Marta Esteban López; Lucia Fábelová; Clémence Fillol; Carmen Franken; Hanne Frederiksen; Catherine Gabriel; Line Småstuen Haug; Milena Horvat; Thórhallur Ingi Halldórsson; Beata Janasik; Nataša Janev Holcer; Réka Kakucs; Spyros Karakitsios; Andromachi Katsonouri; Jana Klánová; Tina Kold-Jensen; Marike Kolossa-Gehring; Corina Konstantinou; Jani Koponen; Sanna Lignell; Anna Karin Lindroos; Konstantinos C Makris; Darja Mazej; Bert Morrens; Ľubica Palkovičová Murínová; Sónia Namorado; Susana Pedraza-Diaz; Jasmin Peisker; Nicole Probst-Hensch; Loïc Rambaud; Valentina Rosolen; Enrico Rucic; Maria Rüther; Dimosthenis Sarigiannis; Janja Snoj Tratnik; Arnout Standaert; Lorraine Stewart; Tamás Szigeti; Cathrine Thomsen; Hanna Tolonen; Ása Eiríksdóttir; An Van Nieuwenhuyse; Veerle J Verheyen; Jelle Vlaanderen; Nina Vogel; Wojciech Wasowicz; Till Weber; Jan-Paul Zock; Ovnair Sepai; Greet Schoeters
Journal:  Int J Environ Res Public Health       Date:  2022-06-01       Impact factor: 4.614

5.  The Potential of Sewage Sludge to Predict and Evaluate the Human Chemical Exposome.

Authors:  Ruben Gil-Solsona; Maria-Christina Nika; Mariona Bustamante; Cristina M Villanueva; Maria Foraster; Marta Cosin-Tomás; Nikiforos Alygizakis; Maria Dolores Gómez-Roig; Elisa Llurba-Olive; Jordi Sunyer; Nikolaos S Thomaidis; Payam Dadvand; Pablo Gago-Ferrero
Journal:  Environ Sci Technol Lett       Date:  2021-11-12

6.  Proficiency and Interlaboratory Variability in the Determination of Phthalate and DINCH Biomarkers in Human Urine: Results from the HBM4EU Project.

Authors:  Hans G J Mol; Ingrid Elbers; Claudia Pälmke; Daniel Bury; Thomas Göen; Marta Esteban López; Stefanie Nübler; Vincent Vaccher; Jean-Philippe Antignac; Darina Dvořáková; Jana Hajšlová; Amrit Kaur Sakhi; Cathrine Thomsen; Katrin Vorkamp; Argelia Castaño; Holger M Koch
Journal:  Toxics       Date:  2022-01-26

7.  Hair Sample Analysis of Residents from Olsztyn, Northeastern Poland, to Evaluate Levels of Bisphenol S and Bisphenol A: A Pilot Study.

Authors:  Sławomir Gonkowski; Manolis Tzatzarakis; Eleni Dermitzaki; Krystyna Makowska; Joanna Wojtkiewicz
Journal:  Med Sci Monit       Date:  2022-08-04

8.  Internal Relative Potency Factors for the Risk Assessment of Mixtures of Per- and Polyfluoroalkyl Substances (PFAS) in Human Biomonitoring.

Authors:  Wieneke Bil; Marco J Zeilmaker; Bas G H Bokkers
Journal:  Environ Health Perspect       Date:  2022-07-26       Impact factor: 11.035

9.  A Call for Biomonitoring Systems in Latin America and the Caribbean: Considerations for Potentially Toxic Metals/Metalloids.

Authors:  Marcela Tamayo-Ortiz; Horacio Riojas-Rodríguez; Martha M Téllez-Rojo; Ana Boischio; Nelly Mañay; José Antonio Menezes-Filho; Elena I Queirolo; Sandra Cortés; Katarzyna Kordas
Journal:  Ann Glob Health       Date:  2022-09-14       Impact factor: 3.640

10.  Determination of Parabens, Bisphenol A and Its Analogs, Triclosan, and Benzophenone-3 Levels in Human Urine by Isotope-Dilution-UPLC-MS/MS Method Followed by Supported Liquid Extraction.

Authors:  Hsin-Chang Chen; Jung-Wei Chang; Yi-Chen Sun; Wan-Ting Chang; Po-Chin Huang
Journal:  Toxics       Date:  2022-01-06
View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.