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Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize

Grain cleaning is the most effective non-destructive post-harvest mitigation strategy to reduce high levels of mycotoxins on account of the removal of mold-infected grains and grain fractions with high mycotoxin content. In this study, the reduction in the concentration of some co-occurring Fusarium...

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Autores principales: Pascale, Michelangelo, Logrieco, Antonio F., Lippolis, Vincenzo, De Girolamo, Annalisa, Cervellieri, Salvatore, Lattanzio, Veronica M. T., Ciasca, Biancamaria, Vega, Anna, Reichel, Mareike, Graeber, Matthias, Slettengren, Katarina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9695466/
https://www.ncbi.nlm.nih.gov/pubmed/36355978
http://dx.doi.org/10.3390/toxins14110728
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author Pascale, Michelangelo
Logrieco, Antonio F.
Lippolis, Vincenzo
De Girolamo, Annalisa
Cervellieri, Salvatore
Lattanzio, Veronica M. T.
Ciasca, Biancamaria
Vega, Anna
Reichel, Mareike
Graeber, Matthias
Slettengren, Katarina
author_facet Pascale, Michelangelo
Logrieco, Antonio F.
Lippolis, Vincenzo
De Girolamo, Annalisa
Cervellieri, Salvatore
Lattanzio, Veronica M. T.
Ciasca, Biancamaria
Vega, Anna
Reichel, Mareike
Graeber, Matthias
Slettengren, Katarina
author_sort Pascale, Michelangelo
collection PubMed
description Grain cleaning is the most effective non-destructive post-harvest mitigation strategy to reduce high levels of mycotoxins on account of the removal of mold-infected grains and grain fractions with high mycotoxin content. In this study, the reduction in the concentration of some co-occurring Fusarium toxins in maize, namely deoxynivalenol (DON), zearalenone (ZEA) and fumonisins B1 and B2 (FBs), was evaluated at an industrial-scale level by mechanical removal (sieving and density separation) of dust, coarse, small, broken, shriveled and low-density kernels and/or optical sorting of defected kernels. Samples were dynamically collected according to the Commission Regulation No. 401/2006 along the entire process line. Mycotoxin analyses of water–slurry aggregate samples were performed by validated LC methods. Depending on the contamination levels in raw incoming maize, the overall reduction rates ranged from 36 to 67% for DON, from 67 to 87% for ZEA and from 27 to 67% for FBs. High levels of DON, ZEA and FBs were found in all rejected fractions with values, respectively, up to 3030%, 1510% and 2680%, compared to their content in uncleaned maize. Results showed that grain cleaning equipment based on mechanical and or optical sorting technologies can provide a significant reduction in Fusarium toxin contamination in maize.
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spelling pubmed-96954662022-11-26 Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize Pascale, Michelangelo Logrieco, Antonio F. Lippolis, Vincenzo De Girolamo, Annalisa Cervellieri, Salvatore Lattanzio, Veronica M. T. Ciasca, Biancamaria Vega, Anna Reichel, Mareike Graeber, Matthias Slettengren, Katarina Toxins (Basel) Article Grain cleaning is the most effective non-destructive post-harvest mitigation strategy to reduce high levels of mycotoxins on account of the removal of mold-infected grains and grain fractions with high mycotoxin content. In this study, the reduction in the concentration of some co-occurring Fusarium toxins in maize, namely deoxynivalenol (DON), zearalenone (ZEA) and fumonisins B1 and B2 (FBs), was evaluated at an industrial-scale level by mechanical removal (sieving and density separation) of dust, coarse, small, broken, shriveled and low-density kernels and/or optical sorting of defected kernels. Samples were dynamically collected according to the Commission Regulation No. 401/2006 along the entire process line. Mycotoxin analyses of water–slurry aggregate samples were performed by validated LC methods. Depending on the contamination levels in raw incoming maize, the overall reduction rates ranged from 36 to 67% for DON, from 67 to 87% for ZEA and from 27 to 67% for FBs. High levels of DON, ZEA and FBs were found in all rejected fractions with values, respectively, up to 3030%, 1510% and 2680%, compared to their content in uncleaned maize. Results showed that grain cleaning equipment based on mechanical and or optical sorting technologies can provide a significant reduction in Fusarium toxin contamination in maize. MDPI 2022-10-25 /pmc/articles/PMC9695466/ /pubmed/36355978 http://dx.doi.org/10.3390/toxins14110728 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
Pascale, Michelangelo
Logrieco, Antonio F.
Lippolis, Vincenzo
De Girolamo, Annalisa
Cervellieri, Salvatore
Lattanzio, Veronica M. T.
Ciasca, Biancamaria
Vega, Anna
Reichel, Mareike
Graeber, Matthias
Slettengren, Katarina
Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title_full Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title_fullStr Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title_full_unstemmed Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title_short Industrial-Scale Cleaning Solutions for the Reduction of Fusarium Toxins in Maize
title_sort industrial-scale cleaning solutions for the reduction of fusarium toxins in maize
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9695466/
https://www.ncbi.nlm.nih.gov/pubmed/36355978
http://dx.doi.org/10.3390/toxins14110728
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