Impact of food processing and detoxification treatments on mycotoxin contamination

Влияние методов переработки и детоксикации пищи на загрязнение микотоксинами
Isabelle P. Oswald, Franz Berthiller, Gerhard Eisenbrand, Petr Karlovský, Michele Suman, Johan De Meester, Irène Perrin, G.J.A. Speijers, Alessandro Chiodini, Tobias Recker, Pierre Dussort
2016-08-23

detoxification treatmentsenzymatic detoxificationfood processingmycotoxin contaminationphysical removal (sorting, milling, extrusion)
Mycotoxins are fungal metabolites commonly occurring in food, which pose a health risk to the consumer. Maximum levels for major mycotoxins allowed in food have been established worldwide. Good agricultural practices, plant disease management, and adequate storage conditions limit mycotoxin levels in the food chain yet do not eliminate mycotoxins completely. Food processing can further reduce mycotoxin levels by physical removal and decontamination by chemical or enzymatic transformation of mycotoxins into less toxic products. Physical removal of mycotoxins is very efficient: manual sorting of grains, nuts, and fruits by farmers as well as automatic sorting by the industry significantly lowers the mean mycotoxin content. Further processing such as milling, steeping, and extrusion can also reduce mycotoxin content. Mycotoxins can be detoxified chemically by reacting with food components and technical aids; these reactions are facilitated by high temperature and alkaline or acidic conditions. Detoxification of mycotoxins can also be achieved enzymatically. Some enzymes able to transform mycotoxins naturally occur in food commodities or are produced during fermentation but more efficient detoxification can be achieved by deliberate introduction of purified enzymes. We recommend integrating evaluation of processing technologies for their impact on mycotoxins into risk management. Processing steps proven to mitigate mycotoxin contamination should be used whenever necessary. Development of detoxification technologies for high-risk commodities should be a priority for research. While physical techniques currently offer the most efficient post-harvest reduction of mycotoxin content in food, biotechnology possesses the largest potential for future developments.
1
Chemical detoxification of mycotoxins occurs via reactions with food components or technical aids, facilitated by high temperature and extreme pH.
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Current status and outlook: physical techniques are the most effective post-harvest reduction methods now, while biotechnology holds the greatest potential for future improvements.
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Enzymatic detoxification can transform mycotoxins; natural fermentation provides some enzymes, but deliberate introduction of purified enzymes yields more efficient detoxification.
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Further processing steps (milling, steeping, extrusion) can reduce mycotoxin levels in food commodities.
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Mycotoxins commonly occur in food and pose consumer health risks despite agricultural and storage controls.
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Physical removal (manual and automatic sorting) is very efficient and significantly lowers mean mycotoxin content in grains, nuts, and fruits.
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Recommendation: integrate evaluation of processing technologies into risk management and prioritize development of detoxification technologies for high-risk commodities.

Food commodities and food products contaminated with mycotoxins (grains, nuts, fruits and processed foods)

Effects of food processing and detoxification treatments (physical removal, chemical and enzymatic transformation, milling, steeping, extrusion, sorting, fermentation) on reducing mycotoxin contamination

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Publication Date
2016-08-23
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Isabelle P. Oswald
Franz Berthiller
Gerhard Eisenbrand
Petr Karlovský
Michele Suman
Johan De Meester
Irène Perrin
G.J.A. Speijers
Alessandro Chiodini
Tobias Recker
Pierre Dussort
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