Mycotoxin toxicity and residue in animal products: Prevalence, consumer exposure and reduction strategies – A review

Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycot...

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Vydáno v:Toxicon (Oxford) Ročník 177; s. 96 - 108
Hlavní autoři: Adegbeye, Moyosore Joseph, Reddy, Poonooru Ravi Kanth, Chilaka, Cynthia Adaku, Balogun, Olalekan Blessing, Elghandour, Mona M.M.Y., Rivas-Caceres, Raymundo Rene, Salem, Abdelfattah Z.M.
Médium: Journal Article
Jazyk:angličtina
Vydáno: England Elsevier Ltd 15.04.2020
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ISSN:0041-0101, 1879-3150, 1879-3150
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Abstract Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycotoxin residue in animal products in the world, especially in developing countries. There is evidence of relationship between mycotoxin residue in breast milk of nursing mothers and mycotoxin exposure through crop and animal product (egg and milk) intake, especially in Asia, Africa, Middle East, Latin America, and some parts of Europe. Younger livestock tends to have more toxin residues in their tissue compared to older ones. Grazing animal are also exposed to mycotoxin intake which corresponds to high level of mycotoxins in their products including meat and milk. This review shows that phytogenic, probiotic, and prebiotic additives can decrease mycotoxin residues in milk, eggs, meat liver and other tissues of livestock. Specifically, bentonites, difructose anhydride III, yeast (Trichosporon mycotoxinivorans), Bacillus spp., or their biodegradable products can reduce mycotoxin residue in animal products. In addition, Ally isothiocyanates from mustard seed were able to mitigate mycotoxins in silo-simulated system. Evidence shows that there are now low-cost, accessible, and eco-friendly additives, which could alleviate the effect of mycotoxin in feed and food. In addition, there is need for aggressive public awareness and farmers’ education on the prevalence, and danger caused by mycotoxins, as well as detoxification strategies that can reduce toxin absorption into animal products. [Display omitted]
AbstractList Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycotoxin residue in animal products in the world, especially in developing countries. There is evidence of relationship between mycotoxin residue in breast milk of nursing mothers and mycotoxin exposure through crop and animal product (egg and milk) intake, especially in Asia, Africa, Middle East, Latin America, and some parts of Europe. Younger livestock tends to have more toxin residues in their tissue compared to older ones. Grazing animal are also exposed to mycotoxin intake which corresponds to high level of mycotoxins in their products including meat and milk. This review shows that phytogenic, probiotic, and prebiotic additives can decrease mycotoxin residues in milk, eggs, meat liver and other tissues of livestock. Specifically, bentonites, difructose anhydride III, yeast (Trichosporon mycotoxinivorans), Bacillus spp., or their biodegradable products can reduce mycotoxin residue in animal products. In addition, Ally isothiocyanates from mustard seed were able to mitigate mycotoxins in silo-simulated system. Evidence shows that there are now low-cost, accessible, and eco-friendly additives, which could alleviate the effect of mycotoxin in feed and food. In addition, there is need for aggressive public awareness and farmers’ education on the prevalence, and danger caused by mycotoxins, as well as detoxification strategies that can reduce toxin absorption into animal products.
Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycotoxin residue in animal products in the world, especially in developing countries. There is evidence of relationship between mycotoxin residue in breast milk of nursing mothers and mycotoxin exposure through crop and animal product (egg and milk) intake, especially in Asia, Africa, Middle East, Latin America, and some parts of Europe. Younger livestock tends to have more toxin residues in their tissue compared to older ones. Grazing animal are also exposed to mycotoxin intake which corresponds to high level of mycotoxins in their products including meat and milk. This review shows that phytogenic, probiotic, and prebiotic additives can decrease mycotoxin residues in milk, eggs, meat liver and other tissues of livestock. Specifically, bentonites, difructose anhydride III, yeast (Trichosporon mycotoxinivorans), Bacillus spp., or their biodegradable products can reduce mycotoxin residue in animal products. In addition, Ally isothiocyanates from mustard seed were able to mitigate mycotoxins in silo-simulated system. Evidence shows that there are now low-cost, accessible, and eco-friendly additives, which could alleviate the effect of mycotoxin in feed and food. In addition, there is need for aggressive public awareness and farmers' education on the prevalence, and danger caused by mycotoxins, as well as detoxification strategies that can reduce toxin absorption into animal products.Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycotoxin residue in animal products in the world, especially in developing countries. There is evidence of relationship between mycotoxin residue in breast milk of nursing mothers and mycotoxin exposure through crop and animal product (egg and milk) intake, especially in Asia, Africa, Middle East, Latin America, and some parts of Europe. Younger livestock tends to have more toxin residues in their tissue compared to older ones. Grazing animal are also exposed to mycotoxin intake which corresponds to high level of mycotoxins in their products including meat and milk. This review shows that phytogenic, probiotic, and prebiotic additives can decrease mycotoxin residues in milk, eggs, meat liver and other tissues of livestock. Specifically, bentonites, difructose anhydride III, yeast (Trichosporon mycotoxinivorans), Bacillus spp., or their biodegradable products can reduce mycotoxin residue in animal products. In addition, Ally isothiocyanates from mustard seed were able to mitigate mycotoxins in silo-simulated system. Evidence shows that there are now low-cost, accessible, and eco-friendly additives, which could alleviate the effect of mycotoxin in feed and food. In addition, there is need for aggressive public awareness and farmers' education on the prevalence, and danger caused by mycotoxins, as well as detoxification strategies that can reduce toxin absorption into animal products.
Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find alternative alleviation material for reducing the impact of mycotoxin. This review is meant to elucidate different additives that can reduce mycotoxin residue in animal products in the world, especially in developing countries. There is evidence of relationship between mycotoxin residue in breast milk of nursing mothers and mycotoxin exposure through crop and animal product (egg and milk) intake, especially in Asia, Africa, Middle East, Latin America, and some parts of Europe. Younger livestock tends to have more toxin residues in their tissue compared to older ones. Grazing animal are also exposed to mycotoxin intake which corresponds to high level of mycotoxins in their products including meat and milk. This review shows that phytogenic, probiotic, and prebiotic additives can decrease mycotoxin residues in milk, eggs, meat liver and other tissues of livestock. Specifically, bentonites, difructose anhydride III, yeast (Trichosporon mycotoxinivorans), Bacillus spp., or their biodegradable products can reduce mycotoxin residue in animal products. In addition, Ally isothiocyanates from mustard seed were able to mitigate mycotoxins in silo-simulated system. Evidence shows that there are now low-cost, accessible, and eco-friendly additives, which could alleviate the effect of mycotoxin in feed and food. In addition, there is need for aggressive public awareness and farmers’ education on the prevalence, and danger caused by mycotoxins, as well as detoxification strategies that can reduce toxin absorption into animal products. [Display omitted]
Author Elghandour, Mona M.M.Y.
Rivas-Caceres, Raymundo Rene
Chilaka, Cynthia Adaku
Reddy, Poonooru Ravi Kanth
Salem, Abdelfattah Z.M.
Adegbeye, Moyosore Joseph
Balogun, Olalekan Blessing
Author_xml – sequence: 1
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  surname: Adegbeye
  fullname: Adegbeye, Moyosore Joseph
  organization: Department of Animal Science, College of Agriculture and Natural Sciences, Joseph Ayo Babalola University, Ikeji-Arakeji, P.M.B 5006 Ilesha, Nigeria
– sequence: 2
  givenname: Poonooru Ravi Kanth
  surname: Reddy
  fullname: Reddy, Poonooru Ravi Kanth
  organization: Veterinary Assistant Surgeon, Veterinary Dispensary, Taticherla, Andhra Pradesh, India
– sequence: 3
  givenname: Cynthia Adaku
  surname: Chilaka
  fullname: Chilaka, Cynthia Adaku
  organization: Institute of Pharmacology and Toxicology, Julius Maximilian University of Würzburg, Würzburg, Germany
– sequence: 4
  givenname: Olalekan Blessing
  surname: Balogun
  fullname: Balogun, Olalekan Blessing
  organization: Department of Microbiology, College of Agriculture and Natural Sciences, Joseph Ayo Babalola University, Ikeji-Arakeji, P.M.B 5006 Ilesha, Nigeria
– sequence: 5
  givenname: Mona M.M.Y.
  surname: Elghandour
  fullname: Elghandour, Mona M.M.Y.
  organization: Facultad de Medicina Veterinaria y Zootecnia, Universidad Autónoma del Estado de México, Mexico
– sequence: 6
  givenname: Raymundo Rene
  surname: Rivas-Caceres
  fullname: Rivas-Caceres, Raymundo Rene
  organization: Auntonomous University of Ciudad Juarez, Mexico, 32310, Mexico
– sequence: 7
  givenname: Abdelfattah Z.M.
  surname: Salem
  fullname: Salem, Abdelfattah Z.M.
  email: asalem70@yahoo.com, salem@uaemex.mx
  organization: Facultad de Medicina Veterinaria y Zootecnia, Universidad Autónoma del Estado de México, Mexico
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Keywords Animal residue
Poultry
Lactating mothers
Mycotoxin
Detoxification
Animal product
Ruminant
Biocontrol
Language English
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Snippet Mycotoxin residues are transferred from feed to animal products, yet, less attention has been paid to it in developing countries. There is a need to find...
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SubjectTerms additives
Africa
anhydrides
Animal product
Animal residue
Asia
Bacillus (bacteria)
Biocontrol
biodegradable products
breast feeding
breast milk
Detoxification
developing countries
education
eggs
Europe
farmers
grazing
isothiocyanates
Lactating mothers
Latin America
liver
livestock
meat
Middle East
milk
mustard seed
Mycotoxin
mycotoxins
Poultry
prebiotics
probiotics
Ruminant
tissues
toxicity
Trichosporon
yeasts
Title Mycotoxin toxicity and residue in animal products: Prevalence, consumer exposure and reduction strategies – A review
URI https://dx.doi.org/10.1016/j.toxicon.2020.01.007
https://www.ncbi.nlm.nih.gov/pubmed/31972175
https://www.proquest.com/docview/2344271989
https://www.proquest.com/docview/2439383578
Volume 177
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