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Improving the Risk Assessment of Pesticides through the Integration of Human Biomonitoring and Food Monitoring Data : A Case Study for Chlorpyrifos

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dc.contributor University of Iceland
dc.contributor.author Tarazona, Jose V.
dc.contributor.author González-Caballero, Maria Del Carmen
dc.contributor.author de Alba-Gonzalez, Mercedes
dc.contributor.author Pedraza-Diaz, Susana
dc.contributor.author Cañas, Ana
dc.contributor.author Dominguez-Morueco, Noelia
dc.contributor.author Esteban-López, Marta
dc.contributor.author Cattaneo, Irene
dc.contributor.author Katsonouri, Andromachi
dc.contributor.author Makris, Konstantinos C.
dc.contributor.author Halldorsson, Thorhallur I.
dc.contributor.author Olafsdottir, Kristin
dc.contributor.author Zock, Jan Paul
dc.contributor.author Dias, Jonatan
dc.contributor.author De Decker, Annelies
dc.contributor.author Morrens, Bert
dc.contributor.author Berman, Tamar
dc.contributor.author Barnett-Itzhaki, Zohar
dc.contributor.author Lindh, Christian
dc.contributor.author Gilles, Liese
dc.contributor.author Govarts, Eva
dc.contributor.author Schoeters, Greet
dc.contributor.author Weber, Till
dc.contributor.author Kolossa-Gehring, Marike
dc.contributor.author Santonen, Tiina
dc.contributor.author Castaño, Argelia
dc.date.accessioned 2023-08-15T01:05:41Z
dc.date.available 2023-08-15T01:05:41Z
dc.date.issued 2022-06
dc.identifier.citation Tarazona , J V , González-Caballero , M D C , de Alba-Gonzalez , M , Pedraza-Diaz , S , Cañas , A , Dominguez-Morueco , N , Esteban-López , M , Cattaneo , I , Katsonouri , A , Makris , K C , Halldorsson , T I , Olafsdottir , K , Zock , J P , Dias , J , De Decker , A , Morrens , B , Berman , T , Barnett-Itzhaki , Z , Lindh , C , Gilles , L , Govarts , E , Schoeters , G , Weber , T , Kolossa-Gehring , M , Santonen , T & Castaño , A 2022 , ' Improving the Risk Assessment of Pesticides through the Integration of Human Biomonitoring and Food Monitoring Data : A Case Study for Chlorpyrifos ' , Toxics , vol. 10 , no. 6 , 313 . https://doi.org/10.3390/toxics10060313
dc.identifier.issn 2305-6304
dc.identifier.other 76385422
dc.identifier.other ae4eb218-541f-4562-b9fd-5c2bb15c6656
dc.identifier.other 85132264007
dc.identifier.uri https://hdl.handle.net/20.500.11815/4401
dc.description Funding Information: Acknowledgments: This study was part of the HBM4EU project receiving funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 733032. The authors want to thank Lars Niemann for his relevant comments and suggestions. Publisher Copyright: © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
dc.description.abstract The risk assessment of pesticide residues in food is a key priority in the area of food safety. Most jurisdictions have implemented pre-marketing authorization processes, which are supported by prospective risk assessments. These prospective assessments estimate the expected residue levels in food combining results from residue trials, resembling the pesticide use patterns, with food con-sumption patterns, according to internationally agreed procedures. In addition, jurisdictions such as the European Union (EU) have implemented large monitoring programs, measuring actual pesticide residue levels in food, and are supporting large-scale human biomonitoring programs for confirming the actual exposure levels and potential risk for consumers. The organophosphate insecticide chlorpyrifos offers an interesting case study, as in the last decade, its acceptable daily intake (ADI) has been reduced several times following risk assessments by the European Food Safety Authority (EFSA). This process has been linked to significant reductions in the use authorized in the EU, reducing consumers’ exposure progressively, until the final ban in 2020, accompanied by setting all EU maximum residue levels (MRL) in food at the default value of 0.01 mg/kg. We present a comparison of estimates of the consumer’s internal exposure to chlorpyrifos based on the urinary marker 3,5,6-trichloro-2-pyridinol (TCPy), using two sources of monitoring data: monitoring of the food chain from the EU program and biomonitoring of European citizens from the HB4EU project, supported by a literature search. Both methods confirmed a drastic reduction in exposure levels from 2016 onwards. The margin of exposure approach is then used for conducting retrospective risk assessments at different time points, considering the evolution of our understanding of chlorpyrifos toxicity, as well as of exposure levels in EU consumers following the regulatory decisions. Concerns are presented using a color code, and have been identified for almost all studies, particularly for the highest exposed group, but at different levels, reaching the maximum level, red code, for children in Cyprus and Israel. The assessment uncertainties are highlighted and integrated in the identification of levels of concern.
dc.format.extent 1834436
dc.format.extent
dc.language.iso en
dc.relation info:eu-repo/grantAgreement/EC/FP7/733032
dc.relation.ispartofseries Toxics; 10(6)
dc.rights info:eu-repo/semantics/openAccess
dc.subject chlorpyrifos
dc.subject HBM4EU
dc.subject human biomonitoring
dc.subject pesticide exposure
dc.subject pesticide risk assessment
dc.subject Toxicology
dc.subject Health, Toxicology and Mutagenesis
dc.subject Chemical Health and Safety
dc.title Improving the Risk Assessment of Pesticides through the Integration of Human Biomonitoring and Food Monitoring Data : A Case Study for Chlorpyrifos
dc.type /dk/atira/pure/researchoutput/researchoutputtypes/contributiontojournal/article
dc.description.version Peer reviewed
dc.identifier.doi 10.3390/toxics10060313
dc.relation.url http://www.scopus.com/inward/record.url?scp=85132264007&partnerID=8YFLogxK
dc.contributor.department Faculty of Food Science and Nutrition


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