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Modification of the temporary maximum residue level for mepiquat in oyster mushrooms

In accordance with Article 6 of Regulation (EC) No 396/2005, Finland, hereafter referred to as the evaluating Member State (EMS), received an application from BASF SE to modify the temporary maximum residue level (MRL) for the active substance mepiquat in cultivated fungi based on monitoring data. M...

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Autores principales: Anastassiadou, Maria, Brancato, Alba, Carrasco Cabrera, Luis, Ferreira, Lucien, Greco, Luna, Jarrah, Samira, Kazocina, Aija, Leuschner, Renata, Magrans, Jose Oriol, Miron, Ileana, Nave, Stefanie, Pedersen, Ragnor, Raczyk, Marianna, Reich, Hermine, Ruocco, Silvia, Sacchi, Angela, Santos, Miguel, Stanek, Alois, Theobald, Anne, Vagenende, Benedicte, Verani, Alessia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7009095/
https://www.ncbi.nlm.nih.gov/pubmed/32626366
http://dx.doi.org/10.2903/j.efsa.2019.5744
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author Anastassiadou, Maria
Brancato, Alba
Carrasco Cabrera, Luis
Ferreira, Lucien
Greco, Luna
Jarrah, Samira
Kazocina, Aija
Leuschner, Renata
Magrans, Jose Oriol
Miron, Ileana
Nave, Stefanie
Pedersen, Ragnor
Raczyk, Marianna
Reich, Hermine
Ruocco, Silvia
Sacchi, Angela
Santos, Miguel
Stanek, Alois
Theobald, Anne
Vagenende, Benedicte
Verani, Alessia
author_facet Anastassiadou, Maria
Brancato, Alba
Carrasco Cabrera, Luis
Ferreira, Lucien
Greco, Luna
Jarrah, Samira
Kazocina, Aija
Leuschner, Renata
Magrans, Jose Oriol
Miron, Ileana
Nave, Stefanie
Pedersen, Ragnor
Raczyk, Marianna
Reich, Hermine
Ruocco, Silvia
Sacchi, Angela
Santos, Miguel
Stanek, Alois
Theobald, Anne
Vagenende, Benedicte
Verani, Alessia
collection PubMed
description In accordance with Article 6 of Regulation (EC) No 396/2005, Finland, hereafter referred to as the evaluating Member State (EMS), received an application from BASF SE to modify the temporary maximum residue level (MRL) for the active substance mepiquat in cultivated fungi based on monitoring data. Mepiquat residues in mushrooms do not result from the use of the active substance on mushrooms, but from the uptake of residues via the growth substrate composed of cereal straw that has been treated with mepiquat. Based on a total of 74 samples on oyster mushrooms, three different MRL proposals were derived. A risk management decision is required, considering the acceptable non‐compliance rate, in order to decide which temporary MRL is the most appropriate to cover the presence of mepiquat chloride residues in oyster mushrooms. The exposure to residues of mepiquat chloride at the levels observed in the monitoring data on cultivated oyster mushrooms, which were the basis for deriving the MRL proposals, is unlikely to present a risk to consumer health.
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spelling pubmed-70090952020-07-02 Modification of the temporary maximum residue level for mepiquat in oyster mushrooms Anastassiadou, Maria Brancato, Alba Carrasco Cabrera, Luis Ferreira, Lucien Greco, Luna Jarrah, Samira Kazocina, Aija Leuschner, Renata Magrans, Jose Oriol Miron, Ileana Nave, Stefanie Pedersen, Ragnor Raczyk, Marianna Reich, Hermine Ruocco, Silvia Sacchi, Angela Santos, Miguel Stanek, Alois Theobald, Anne Vagenende, Benedicte Verani, Alessia EFSA J Reasoned Opinion In accordance with Article 6 of Regulation (EC) No 396/2005, Finland, hereafter referred to as the evaluating Member State (EMS), received an application from BASF SE to modify the temporary maximum residue level (MRL) for the active substance mepiquat in cultivated fungi based on monitoring data. Mepiquat residues in mushrooms do not result from the use of the active substance on mushrooms, but from the uptake of residues via the growth substrate composed of cereal straw that has been treated with mepiquat. Based on a total of 74 samples on oyster mushrooms, three different MRL proposals were derived. A risk management decision is required, considering the acceptable non‐compliance rate, in order to decide which temporary MRL is the most appropriate to cover the presence of mepiquat chloride residues in oyster mushrooms. The exposure to residues of mepiquat chloride at the levels observed in the monitoring data on cultivated oyster mushrooms, which were the basis for deriving the MRL proposals, is unlikely to present a risk to consumer health. John Wiley and Sons Inc. 2019-07-31 /pmc/articles/PMC7009095/ /pubmed/32626366 http://dx.doi.org/10.2903/j.efsa.2019.5744 Text en © 2019 European Food Safety Authority. EFSA Journal published by John Wiley and Sons Ltd on behalf of European Food Safety Authority. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited and no modifications or adaptations are made.
spellingShingle Reasoned Opinion
Anastassiadou, Maria
Brancato, Alba
Carrasco Cabrera, Luis
Ferreira, Lucien
Greco, Luna
Jarrah, Samira
Kazocina, Aija
Leuschner, Renata
Magrans, Jose Oriol
Miron, Ileana
Nave, Stefanie
Pedersen, Ragnor
Raczyk, Marianna
Reich, Hermine
Ruocco, Silvia
Sacchi, Angela
Santos, Miguel
Stanek, Alois
Theobald, Anne
Vagenende, Benedicte
Verani, Alessia
Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title_full Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title_fullStr Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title_full_unstemmed Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title_short Modification of the temporary maximum residue level for mepiquat in oyster mushrooms
title_sort modification of the temporary maximum residue level for mepiquat in oyster mushrooms
topic Reasoned Opinion
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7009095/
https://www.ncbi.nlm.nih.gov/pubmed/32626366
http://dx.doi.org/10.2903/j.efsa.2019.5744
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