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Mycotoxins are secondary metabolites produced by fungi under suitable conditions and are major contaminants in food and feed. Due to the widespread presence of the fungus, mycotoxin contamination cannot be completely eliminated, although it can be controlled during crop growth, post-harvest storage and processing. Studies have shown that even low doses of mycotoxins can cause liver, kidney or neurological toxicity and even death. To protect human health, in recent years, researchers have developed nanowire sensors for the detection of mycotoxins.
Compared with traditional analytical methods, they have the advantages of simple operation, low detection cost, sensitivity, speed, and on-site detection. Creative Enzymes provides nanozymes and detailed schemes for the detection of mycotoxins.
Detection Subjects | Nanozymes | Mimicking activity | Detection Method | Tested sample |
---|---|---|---|---|
Aflatoxin B1 | MnO2 | Oxidase | Colorimetric method | Peanut |
Ochratoxin A | MnCo2O4 | Oxidase | Colorimetric method | Corn |
Zearalenone | Au | Peroxidase | Colorimetric method | Corn / Corn oil |
Ochratoxin A | MnO2 | Oxidase | Colorimetric method | Grape juice |
Aflatoxin B1 | Pt / Co / rGO | Peroxidase | Electrochemistry | Peanut |
Patulin | Ag / Zn MOF | Peroxidase | Fluorescence method | Water / Apple juice |
Fig. 1 Schematic illustration of MnO2 nanozymes mediated chromatographic immunoassay on Bovine Serum Albumin-AFB1 modified magnetic beads. (Lai W, et al., 2017)
Fig. 2 MnCo2O4 oxidase mimic-based colorimetric assay for OTA detection.
Creative Enzymes provides nanozyme and veterinary drug residue detection solutions to our clients worldwide. With years of experience in biological services, our advanced platform can help our clients address the types of difficulties associated with the detection of glutathione using nanozymes. If you are interested in our services or have some questions, please feel free to contact us or make an online inquiry.
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