Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin

Abstract The specific concentrations of colistin in non‐target feed for food‐producing animals, below which there would not be an effect on the emergence of, and/or selection for, resistance in bacteria relevant for human and animal health, as well as the specific antimicrobial concentrations in fee...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: EFSA Panel on Biological Hazards (BIOHAZ), Konstantinos Koutsoumanis, Ana Allende, Avelino Alvarez‐Ordóñez, Declan Bolton, Sara Bover‐Cid, Marianne Chemaly, Robert Davies, Alessandra De Cesare, Lieve Herman, Friederike Hilbert, Roland Lindqvist, Maarten Nauta, Giuseppe Ru, Marion Simmons, Panagiotis Skandamis, Elisabetta Suffredini, Dan I. Andersson, Vasileios Bampidis, Johan Bengtsson‐Palme, Damien Bouchard, Aude Ferran, Maryline Kouba, Secundino López Puente, Marta López‐Alonso, Søren Saxmose Nielsen, Alena Pechová, Mariana Petkova, Sebastien Girault, Alessandro Broglia, Beatriz Guerra, Matteo Lorenzo Innocenti, Ernesto Liébana, Gloria López‐Gálvez, Paola Manini, Pietro Stella, Luisa Peixe
Formato: article
Lenguaje:EN
Publicado: Wiley 2021
Materias:
Acceso en línea:https://doaj.org/article/28d48f54e39240659374edacac3c8bfc
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:28d48f54e39240659374edacac3c8bfc
record_format dspace
spelling oai:doaj.org-article:28d48f54e39240659374edacac3c8bfc2021-11-23T08:30:51ZMaximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin1831-473210.2903/j.efsa.2021.6861https://doaj.org/article/28d48f54e39240659374edacac3c8bfc2021-10-01T00:00:00Zhttps://doi.org/10.2903/j.efsa.2021.6861https://doaj.org/toc/1831-4732Abstract The specific concentrations of colistin in non‐target feed for food‐producing animals, below which there would not be an effect on the emergence of, and/or selection for, resistance in bacteria relevant for human and animal health, as well as the specific antimicrobial concentrations in feed which have an effect in terms of growth promotion/increased yield were assessed by EFSA in collaboration with EMA. Details of the methodology used for this assessment, associated data gaps and uncertainties, are presented in a separate document. To address antimicrobial resistance, the Feed Antimicrobial Resistance Selection Concentration (FARSC) model developed specifically for the assessment was applied. However, due to the lack of data on the parameters required to calculate the FARSC, it was not possible to conclude the assessment until further experimental data become available. To address growth promotion, data from scientific publications obtained from an extensive literature review were used. Levels of colistin in feed that showed to have an effect on growth promotion/increased yield were reported. It was recommended to carry out studies to generate the data that are required to fill the gaps which prevented the calculation of the FARSC for these antimicrobials.EFSA Panel on Biological Hazards (BIOHAZ)Konstantinos KoutsoumanisAna AllendeAvelino Alvarez‐OrdóñezDeclan BoltonSara Bover‐CidMarianne ChemalyRobert DaviesAlessandra De CesareLieve HermanFriederike HilbertRoland LindqvistMaarten NautaGiuseppe RuMarion SimmonsPanagiotis SkandamisElisabetta SuffrediniDan I. AnderssonVasileios BampidisJohan Bengtsson‐PalmeDamien BouchardAude FerranMaryline KoubaSecundino López PuenteMarta López‐AlonsoSøren Saxmose NielsenAlena PechováMariana PetkovaSebastien GiraultAlessandro BrogliaBeatriz GuerraMatteo Lorenzo InnocentiErnesto LiébanaGloria López‐GálvezPaola ManiniPietro StellaLuisa PeixeWileyarticlecolistinantimicrobial resistancesub‐inhibitory concentrationFeed Antimicrobial Resistance Selection Concentration (FARSC)growth promotionyield increaseNutrition. Foods and food supplyTX341-641Chemical technologyTP1-1185ENEFSA Journal, Vol 19, Iss 10, Pp n/a-n/a (2021)
institution DOAJ
collection DOAJ
language EN
topic colistin
antimicrobial resistance
sub‐inhibitory concentration
Feed Antimicrobial Resistance Selection Concentration (FARSC)
growth promotion
yield increase
Nutrition. Foods and food supply
TX341-641
Chemical technology
TP1-1185
spellingShingle colistin
antimicrobial resistance
sub‐inhibitory concentration
Feed Antimicrobial Resistance Selection Concentration (FARSC)
growth promotion
yield increase
Nutrition. Foods and food supply
TX341-641
Chemical technology
TP1-1185
EFSA Panel on Biological Hazards (BIOHAZ)
Konstantinos Koutsoumanis
Ana Allende
Avelino Alvarez‐Ordóñez
Declan Bolton
Sara Bover‐Cid
Marianne Chemaly
Robert Davies
Alessandra De Cesare
Lieve Herman
Friederike Hilbert
Roland Lindqvist
Maarten Nauta
Giuseppe Ru
Marion Simmons
Panagiotis Skandamis
Elisabetta Suffredini
Dan I. Andersson
Vasileios Bampidis
Johan Bengtsson‐Palme
Damien Bouchard
Aude Ferran
Maryline Kouba
Secundino López Puente
Marta López‐Alonso
Søren Saxmose Nielsen
Alena Pechová
Mariana Petkova
Sebastien Girault
Alessandro Broglia
Beatriz Guerra
Matteo Lorenzo Innocenti
Ernesto Liébana
Gloria López‐Gálvez
Paola Manini
Pietro Stella
Luisa Peixe
Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
description Abstract The specific concentrations of colistin in non‐target feed for food‐producing animals, below which there would not be an effect on the emergence of, and/or selection for, resistance in bacteria relevant for human and animal health, as well as the specific antimicrobial concentrations in feed which have an effect in terms of growth promotion/increased yield were assessed by EFSA in collaboration with EMA. Details of the methodology used for this assessment, associated data gaps and uncertainties, are presented in a separate document. To address antimicrobial resistance, the Feed Antimicrobial Resistance Selection Concentration (FARSC) model developed specifically for the assessment was applied. However, due to the lack of data on the parameters required to calculate the FARSC, it was not possible to conclude the assessment until further experimental data become available. To address growth promotion, data from scientific publications obtained from an extensive literature review were used. Levels of colistin in feed that showed to have an effect on growth promotion/increased yield were reported. It was recommended to carry out studies to generate the data that are required to fill the gaps which prevented the calculation of the FARSC for these antimicrobials.
format article
author EFSA Panel on Biological Hazards (BIOHAZ)
Konstantinos Koutsoumanis
Ana Allende
Avelino Alvarez‐Ordóñez
Declan Bolton
Sara Bover‐Cid
Marianne Chemaly
Robert Davies
Alessandra De Cesare
Lieve Herman
Friederike Hilbert
Roland Lindqvist
Maarten Nauta
Giuseppe Ru
Marion Simmons
Panagiotis Skandamis
Elisabetta Suffredini
Dan I. Andersson
Vasileios Bampidis
Johan Bengtsson‐Palme
Damien Bouchard
Aude Ferran
Maryline Kouba
Secundino López Puente
Marta López‐Alonso
Søren Saxmose Nielsen
Alena Pechová
Mariana Petkova
Sebastien Girault
Alessandro Broglia
Beatriz Guerra
Matteo Lorenzo Innocenti
Ernesto Liébana
Gloria López‐Gálvez
Paola Manini
Pietro Stella
Luisa Peixe
author_facet EFSA Panel on Biological Hazards (BIOHAZ)
Konstantinos Koutsoumanis
Ana Allende
Avelino Alvarez‐Ordóñez
Declan Bolton
Sara Bover‐Cid
Marianne Chemaly
Robert Davies
Alessandra De Cesare
Lieve Herman
Friederike Hilbert
Roland Lindqvist
Maarten Nauta
Giuseppe Ru
Marion Simmons
Panagiotis Skandamis
Elisabetta Suffredini
Dan I. Andersson
Vasileios Bampidis
Johan Bengtsson‐Palme
Damien Bouchard
Aude Ferran
Maryline Kouba
Secundino López Puente
Marta López‐Alonso
Søren Saxmose Nielsen
Alena Pechová
Mariana Petkova
Sebastien Girault
Alessandro Broglia
Beatriz Guerra
Matteo Lorenzo Innocenti
Ernesto Liébana
Gloria López‐Gálvez
Paola Manini
Pietro Stella
Luisa Peixe
author_sort EFSA Panel on Biological Hazards (BIOHAZ)
title Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
title_short Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
title_full Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
title_fullStr Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
title_full_unstemmed Maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
Part 9: Polymyxins: colistin
title_sort maximum levels of cross‐contamination for 24 antimicrobial active substances in non‐target feed.
part 9: polymyxins: colistin
publisher Wiley
publishDate 2021
url https://doaj.org/article/28d48f54e39240659374edacac3c8bfc
work_keys_str_mv AT efsapanelonbiologicalhazardsbiohaz maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT konstantinoskoutsoumanis maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT anaallende maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT avelinoalvarezordonez maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT declanbolton maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT sarabovercid maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT mariannechemaly maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT robertdavies maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT alessandradecesare maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT lieveherman maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT friederikehilbert maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT rolandlindqvist maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT maartennauta maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT giusepperu maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT marionsimmons maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT panagiotisskandamis maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT elisabettasuffredini maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT daniandersson maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT vasileiosbampidis maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT johanbengtssonpalme maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT damienbouchard maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT audeferran maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT marylinekouba maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT secundinolopezpuente maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT martalopezalonso maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT sørensaxmosenielsen maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT alenapechova maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT marianapetkova maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT sebastiengirault maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT alessandrobroglia maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT beatrizguerra maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT matteolorenzoinnocenti maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT ernestoliebana maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT glorialopezgalvez maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT paolamanini maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT pietrostella maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
AT luisapeixe maximumlevelsofcrosscontaminationfor24antimicrobialactivesubstancesinnontargetfeedpart9polymyxinscolistin
_version_ 1718416814338211840