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Biosensors for Deoxynivalenol and Zearalenone Determination in Feed Quality Control
by
Adányi, Nóra
, Majer-Baranyi, Krisztina
, Székács, András
in
Agricultural commodities
/ Animal Feed
/ Animals
/ Antibodies
/ antibody
/ Antigens
/ Barley
/ Biosensing Techniques
/ Biosensors
/ Cereals
/ Chromatography
/ Corn
/ Deoxynivalenol
/ Edible Grain
/ Enzymes
/ feed
/ Feed quality
/ Food
/ Food Analysis - methods
/ Food Contamination
/ Food contamination & poisoning
/ Fungi
/ Fusarium
/ immunosensors
/ Intoxication
/ Mass spectrometry
/ Measurement techniques
/ Metabolites
/ Mycotoxins
/ Pollution control
/ Qualitative analysis
/ Quality Control
/ Reagents
/ Review
/ Scientific imaging
/ Sensors
/ Signal transduction
/ Trichothecenes - analysis
/ Zearalenone
/ Zearalenone - analysis
2021
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Biosensors for Deoxynivalenol and Zearalenone Determination in Feed Quality Control
by
Adányi, Nóra
, Majer-Baranyi, Krisztina
, Székács, András
in
Agricultural commodities
/ Animal Feed
/ Animals
/ Antibodies
/ antibody
/ Antigens
/ Barley
/ Biosensing Techniques
/ Biosensors
/ Cereals
/ Chromatography
/ Corn
/ Deoxynivalenol
/ Edible Grain
/ Enzymes
/ feed
/ Feed quality
/ Food
/ Food Analysis - methods
/ Food Contamination
/ Food contamination & poisoning
/ Fungi
/ Fusarium
/ immunosensors
/ Intoxication
/ Mass spectrometry
/ Measurement techniques
/ Metabolites
/ Mycotoxins
/ Pollution control
/ Qualitative analysis
/ Quality Control
/ Reagents
/ Review
/ Scientific imaging
/ Sensors
/ Signal transduction
/ Trichothecenes - analysis
/ Zearalenone
/ Zearalenone - analysis
2021
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Biosensors for Deoxynivalenol and Zearalenone Determination in Feed Quality Control
by
Adányi, Nóra
, Majer-Baranyi, Krisztina
, Székács, András
in
Agricultural commodities
/ Animal Feed
/ Animals
/ Antibodies
/ antibody
/ Antigens
/ Barley
/ Biosensing Techniques
/ Biosensors
/ Cereals
/ Chromatography
/ Corn
/ Deoxynivalenol
/ Edible Grain
/ Enzymes
/ feed
/ Feed quality
/ Food
/ Food Analysis - methods
/ Food Contamination
/ Food contamination & poisoning
/ Fungi
/ Fusarium
/ immunosensors
/ Intoxication
/ Mass spectrometry
/ Measurement techniques
/ Metabolites
/ Mycotoxins
/ Pollution control
/ Qualitative analysis
/ Quality Control
/ Reagents
/ Review
/ Scientific imaging
/ Sensors
/ Signal transduction
/ Trichothecenes - analysis
/ Zearalenone
/ Zearalenone - analysis
2021
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Biosensors for Deoxynivalenol and Zearalenone Determination in Feed Quality Control
Journal Article
Biosensors for Deoxynivalenol and Zearalenone Determination in Feed Quality Control
2021
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Overview
Mycotoxin contamination of cereals used for feed can cause intoxication, especially in farm animals; therefore, efficient analytical tools for the qualitative and quantitative analysis of toxic fungal metabolites in feed are required. Current trends in food/feed analysis are focusing on the application of biosensor technologies that offer fast and highly selective and sensitive detection with minimal sample treatment and reagents required. The article presents an overview of the recent progress of the development of biosensors for deoxynivalenol and zearalenone determination in cereals and feed. Novel biosensitive materials and highly sensitive detection methods applied for the sensors and the application of these sensors to food/feed products, the limit, and the time of detection are discussed.
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