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A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data
Pyrethroids are a major insecticide class, suitable for biomonitoring in humans. Due to similarities in structure and metabolic pathways, urinary metabolites are common to various active substances. A tiered approach is proposed for risk assessment. Tier I was a conservative screening for overall py...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416723/ https://www.ncbi.nlm.nih.gov/pubmed/36006130 http://dx.doi.org/10.3390/toxics10080451 |
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author | Tarazona, Jose V. Cattaneo, Irene Niemann, Lars Pedraza-Diaz, Susana González-Caballero, Maria Carmen de Alba-Gonzalez, Mercedes Cañas, Ana Dominguez-Morueco, Noelia Esteban-López, Marta Castaño, Argelia Borges, Teresa Katsonouri, Andromachi Makris, Konstantinos C. Ottenbros, Ilse Mol, Hans De Decker, Annelies Morrens, Bert Berman, Tamar Barnett-Itzhaki, Zohar Probst-Hensch, Nicole Fuhrimann, Samuel Tratnik, Janja Snoj Horvat, Milena Rambaud, Loic Riou, Margaux Schoeters, Greet Govarts, Eva Kolossa-Gehring, Marike Weber, Till Apel, Petra Namorado, Sonia Santonen, Tiina |
author_facet | Tarazona, Jose V. Cattaneo, Irene Niemann, Lars Pedraza-Diaz, Susana González-Caballero, Maria Carmen de Alba-Gonzalez, Mercedes Cañas, Ana Dominguez-Morueco, Noelia Esteban-López, Marta Castaño, Argelia Borges, Teresa Katsonouri, Andromachi Makris, Konstantinos C. Ottenbros, Ilse Mol, Hans De Decker, Annelies Morrens, Bert Berman, Tamar Barnett-Itzhaki, Zohar Probst-Hensch, Nicole Fuhrimann, Samuel Tratnik, Janja Snoj Horvat, Milena Rambaud, Loic Riou, Margaux Schoeters, Greet Govarts, Eva Kolossa-Gehring, Marike Weber, Till Apel, Petra Namorado, Sonia Santonen, Tiina |
author_sort | Tarazona, Jose V. |
collection | PubMed |
description | Pyrethroids are a major insecticide class, suitable for biomonitoring in humans. Due to similarities in structure and metabolic pathways, urinary metabolites are common to various active substances. A tiered approach is proposed for risk assessment. Tier I was a conservative screening for overall pyrethroid exposure, based on phenoxybenzoic acid metabolites. Subsequently, probabilistic approaches and more specific metabolites were used for refining the risk estimates. Exposure was based on 95th percentiles from HBM4EU aligned studies (2014–2021) covering children in Belgium, Cyprus, France, Israel, Slovenia, and The Netherlands and adults in France, Germany, Israel, and Switzerland. In all children populations, the 95th percentiles for 3-phenoxybenzoic acid (3-PBA) exceeded the screening value. The probabilistic refinement quantified the risk level of the most exposed population (Belgium) at 2% or between 1–0.1% depending on the assumptions. In the substance specific assessments, the 95th percentiles of urinary concentrations in the aligned studies were well below the respective human biomonitoring guidance values (HBM-GVs). Both information sets were combined for refining the combined risk. Overall, the HBM data suggest a low health concern, at population level, related to pyrethroid exposure for the populations covered by the studies, even though a potential risk for highly exposed children cannot be completely excluded. The proposed tiered approach, including a screening step and several refinement options, seems to be a promising tool of scientific and regulatory value in future. |
format | Online Article Text |
id | pubmed-9416723 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-94167232022-08-27 A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data Tarazona, Jose V. Cattaneo, Irene Niemann, Lars Pedraza-Diaz, Susana González-Caballero, Maria Carmen de Alba-Gonzalez, Mercedes Cañas, Ana Dominguez-Morueco, Noelia Esteban-López, Marta Castaño, Argelia Borges, Teresa Katsonouri, Andromachi Makris, Konstantinos C. Ottenbros, Ilse Mol, Hans De Decker, Annelies Morrens, Bert Berman, Tamar Barnett-Itzhaki, Zohar Probst-Hensch, Nicole Fuhrimann, Samuel Tratnik, Janja Snoj Horvat, Milena Rambaud, Loic Riou, Margaux Schoeters, Greet Govarts, Eva Kolossa-Gehring, Marike Weber, Till Apel, Petra Namorado, Sonia Santonen, Tiina Toxics Article Pyrethroids are a major insecticide class, suitable for biomonitoring in humans. Due to similarities in structure and metabolic pathways, urinary metabolites are common to various active substances. A tiered approach is proposed for risk assessment. Tier I was a conservative screening for overall pyrethroid exposure, based on phenoxybenzoic acid metabolites. Subsequently, probabilistic approaches and more specific metabolites were used for refining the risk estimates. Exposure was based on 95th percentiles from HBM4EU aligned studies (2014–2021) covering children in Belgium, Cyprus, France, Israel, Slovenia, and The Netherlands and adults in France, Germany, Israel, and Switzerland. In all children populations, the 95th percentiles for 3-phenoxybenzoic acid (3-PBA) exceeded the screening value. The probabilistic refinement quantified the risk level of the most exposed population (Belgium) at 2% or between 1–0.1% depending on the assumptions. In the substance specific assessments, the 95th percentiles of urinary concentrations in the aligned studies were well below the respective human biomonitoring guidance values (HBM-GVs). Both information sets were combined for refining the combined risk. Overall, the HBM data suggest a low health concern, at population level, related to pyrethroid exposure for the populations covered by the studies, even though a potential risk for highly exposed children cannot be completely excluded. The proposed tiered approach, including a screening step and several refinement options, seems to be a promising tool of scientific and regulatory value in future. MDPI 2022-08-04 /pmc/articles/PMC9416723/ /pubmed/36006130 http://dx.doi.org/10.3390/toxics10080451 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Tarazona, Jose V. Cattaneo, Irene Niemann, Lars Pedraza-Diaz, Susana González-Caballero, Maria Carmen de Alba-Gonzalez, Mercedes Cañas, Ana Dominguez-Morueco, Noelia Esteban-López, Marta Castaño, Argelia Borges, Teresa Katsonouri, Andromachi Makris, Konstantinos C. Ottenbros, Ilse Mol, Hans De Decker, Annelies Morrens, Bert Berman, Tamar Barnett-Itzhaki, Zohar Probst-Hensch, Nicole Fuhrimann, Samuel Tratnik, Janja Snoj Horvat, Milena Rambaud, Loic Riou, Margaux Schoeters, Greet Govarts, Eva Kolossa-Gehring, Marike Weber, Till Apel, Petra Namorado, Sonia Santonen, Tiina A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title | A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title_full | A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title_fullStr | A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title_full_unstemmed | A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title_short | A Tiered Approach for Assessing Individual and Combined Risk of Pyrethroids Using Human Biomonitoring Data |
title_sort | tiered approach for assessing individual and combined risk of pyrethroids using human biomonitoring data |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416723/ https://www.ncbi.nlm.nih.gov/pubmed/36006130 http://dx.doi.org/10.3390/toxics10080451 |
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