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New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project

Carcinogenic chemicals, or their metabolites, can be classified as genotoxic or non-genotoxic carcinogens (NGTxCs). Genotoxic compounds induce DNA damage, which can be detected by an established in vitro and in vivo battery of genotoxicity assays. For NGTxCs, DNA is not the primary target, and the p...

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Autores principales: Audebert, Marc, Assmann, Ann-Sophie, Azqueta, Amaya, Babica, Pavel, Benfenati, Emilio, Bortoli, Sylvie, Bouwman, Peter, Braeuning, Albert, Burgdorf, Tanja, Coumoul, Xavier, Debizet, Kloé, Dusinska, Maria, Ertych, Norman, Fahrer, Jörg, Fetz, Verena, Le Hégarat, Ludovic, López de Cerain, Adela, Heusinkveld, Harm J., Hogeveen, Kevin, Jacobs, Miriam N., Luijten, Mirjam, Raitano, Giuseppa, Recoules, Cynthia, Rundén-Pran, Elise, Saleh, Mariam, Sovadinová, Iva, Stampar, Martina, Thibol, Lea, Tomkiewicz, Céline, Vettorazzi, Ariane, Van de Water, Bob, El Yamani, Naouale, Zegura, Bojana, Oelgeschläger, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10364052/
https://www.ncbi.nlm.nih.gov/pubmed/37492623
http://dx.doi.org/10.3389/ftox.2023.1220998
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author Audebert, Marc
Assmann, Ann-Sophie
Azqueta, Amaya
Babica, Pavel
Benfenati, Emilio
Bortoli, Sylvie
Bouwman, Peter
Braeuning, Albert
Burgdorf, Tanja
Coumoul, Xavier
Debizet, Kloé
Dusinska, Maria
Ertych, Norman
Fahrer, Jörg
Fetz, Verena
Le Hégarat, Ludovic
López de Cerain, Adela
Heusinkveld, Harm J.
Hogeveen, Kevin
Jacobs, Miriam N.
Luijten, Mirjam
Raitano, Giuseppa
Recoules, Cynthia
Rundén-Pran, Elise
Saleh, Mariam
Sovadinová, Iva
Stampar, Martina
Thibol, Lea
Tomkiewicz, Céline
Vettorazzi, Ariane
Van de Water, Bob
El Yamani, Naouale
Zegura, Bojana
Oelgeschläger, Michael
author_facet Audebert, Marc
Assmann, Ann-Sophie
Azqueta, Amaya
Babica, Pavel
Benfenati, Emilio
Bortoli, Sylvie
Bouwman, Peter
Braeuning, Albert
Burgdorf, Tanja
Coumoul, Xavier
Debizet, Kloé
Dusinska, Maria
Ertych, Norman
Fahrer, Jörg
Fetz, Verena
Le Hégarat, Ludovic
López de Cerain, Adela
Heusinkveld, Harm J.
Hogeveen, Kevin
Jacobs, Miriam N.
Luijten, Mirjam
Raitano, Giuseppa
Recoules, Cynthia
Rundén-Pran, Elise
Saleh, Mariam
Sovadinová, Iva
Stampar, Martina
Thibol, Lea
Tomkiewicz, Céline
Vettorazzi, Ariane
Van de Water, Bob
El Yamani, Naouale
Zegura, Bojana
Oelgeschläger, Michael
author_sort Audebert, Marc
collection PubMed
description Carcinogenic chemicals, or their metabolites, can be classified as genotoxic or non-genotoxic carcinogens (NGTxCs). Genotoxic compounds induce DNA damage, which can be detected by an established in vitro and in vivo battery of genotoxicity assays. For NGTxCs, DNA is not the primary target, and the possible modes of action (MoA) of NGTxCs are much more diverse than those of genotoxic compounds, and there is no specific in vitro assay for detecting NGTxCs. Therefore, the evaluation of the carcinogenic potential is still dependent on long-term studies in rodents. This 2-year bioassay, mainly applied for testing agrochemicals and pharmaceuticals, is time-consuming, costly and requires very high numbers of animals. More importantly, its relevance for human risk assessment is questionable due to the limited predictivity for human cancer risk, especially with regard to NGTxCs. Thus, there is an urgent need for a transition to new approach methodologies (NAMs), integrating human-relevant in vitro assays and in silico tools that better exploit the current knowledge of the multiple processes involved in carcinogenesis into a modern safety assessment toolbox. Here, we describe an integrative project that aims to use a variety of novel approaches to detect the carcinogenic potential of NGTxCs based on different mechanisms and pathways involved in carcinogenesis. The aim of this project is to contribute suitable assays for the safety assessment toolbox for an efficient and improved, internationally recognized hazard assessment of NGTxCs, and ultimately to contribute to reliable mechanism-based next-generation risk assessment for chemical carcinogens.
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spelling pubmed-103640522023-07-25 New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project Audebert, Marc Assmann, Ann-Sophie Azqueta, Amaya Babica, Pavel Benfenati, Emilio Bortoli, Sylvie Bouwman, Peter Braeuning, Albert Burgdorf, Tanja Coumoul, Xavier Debizet, Kloé Dusinska, Maria Ertych, Norman Fahrer, Jörg Fetz, Verena Le Hégarat, Ludovic López de Cerain, Adela Heusinkveld, Harm J. Hogeveen, Kevin Jacobs, Miriam N. Luijten, Mirjam Raitano, Giuseppa Recoules, Cynthia Rundén-Pran, Elise Saleh, Mariam Sovadinová, Iva Stampar, Martina Thibol, Lea Tomkiewicz, Céline Vettorazzi, Ariane Van de Water, Bob El Yamani, Naouale Zegura, Bojana Oelgeschläger, Michael Front Toxicol Toxicology Carcinogenic chemicals, or their metabolites, can be classified as genotoxic or non-genotoxic carcinogens (NGTxCs). Genotoxic compounds induce DNA damage, which can be detected by an established in vitro and in vivo battery of genotoxicity assays. For NGTxCs, DNA is not the primary target, and the possible modes of action (MoA) of NGTxCs are much more diverse than those of genotoxic compounds, and there is no specific in vitro assay for detecting NGTxCs. Therefore, the evaluation of the carcinogenic potential is still dependent on long-term studies in rodents. This 2-year bioassay, mainly applied for testing agrochemicals and pharmaceuticals, is time-consuming, costly and requires very high numbers of animals. More importantly, its relevance for human risk assessment is questionable due to the limited predictivity for human cancer risk, especially with regard to NGTxCs. Thus, there is an urgent need for a transition to new approach methodologies (NAMs), integrating human-relevant in vitro assays and in silico tools that better exploit the current knowledge of the multiple processes involved in carcinogenesis into a modern safety assessment toolbox. Here, we describe an integrative project that aims to use a variety of novel approaches to detect the carcinogenic potential of NGTxCs based on different mechanisms and pathways involved in carcinogenesis. The aim of this project is to contribute suitable assays for the safety assessment toolbox for an efficient and improved, internationally recognized hazard assessment of NGTxCs, and ultimately to contribute to reliable mechanism-based next-generation risk assessment for chemical carcinogens. Frontiers Media S.A. 2023-07-10 /pmc/articles/PMC10364052/ /pubmed/37492623 http://dx.doi.org/10.3389/ftox.2023.1220998 Text en Copyright © 2023 Audebert, Assmann, Azqueta, Babica, Benfenati, Bortoli, Bouwman, Braeuning, Burgdorf, Coumoul, Debizet, Dusinska, Ertych, Fahrer, Fetz, Le Hégarat, López de Cerain, Heusinkveld, Hogeveen, Jacobs, Luijten, Raitano, Recoules, Rundén-Pran, Saleh, Sovadinová, Stampar, Thibol, Tomkiewicz, Vettorazzi, Van de Water, El Yamani, Zegura and Oelgeschläger. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Toxicology
Audebert, Marc
Assmann, Ann-Sophie
Azqueta, Amaya
Babica, Pavel
Benfenati, Emilio
Bortoli, Sylvie
Bouwman, Peter
Braeuning, Albert
Burgdorf, Tanja
Coumoul, Xavier
Debizet, Kloé
Dusinska, Maria
Ertych, Norman
Fahrer, Jörg
Fetz, Verena
Le Hégarat, Ludovic
López de Cerain, Adela
Heusinkveld, Harm J.
Hogeveen, Kevin
Jacobs, Miriam N.
Luijten, Mirjam
Raitano, Giuseppa
Recoules, Cynthia
Rundén-Pran, Elise
Saleh, Mariam
Sovadinová, Iva
Stampar, Martina
Thibol, Lea
Tomkiewicz, Céline
Vettorazzi, Ariane
Van de Water, Bob
El Yamani, Naouale
Zegura, Bojana
Oelgeschläger, Michael
New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title_full New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title_fullStr New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title_full_unstemmed New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title_short New approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a PARC project
title_sort new approach methodologies to facilitate and improve the hazard assessment of non-genotoxic carcinogens—a parc project
topic Toxicology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10364052/
https://www.ncbi.nlm.nih.gov/pubmed/37492623
http://dx.doi.org/10.3389/ftox.2023.1220998
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