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Dramatically Enhancing the Sensitivity of Immunoassay for Ochratoxin A Detection by Cascade-Amplifying Enzyme Loading. | LitMetric

AI Article Synopsis

  • ELISA is commonly used to detect mycotoxins in food, and this study introduces a new method that enhances sensitivity for ochratoxin A (OTA) detection using a biotinylated M13 bacteriophage as a competing antigen.
  • The innovative system incorporates a high number of streptavidin-labeled horseradish peroxidases (HRPs) on M13, leading to a remarkable detection limit of 2.0 pg/mL for OTA, significantly outperforming traditional ELISA methods.
  • The new method demonstrated low cross-reactivity with related mycotoxins and maintained accuracy in real corn sample testing, suggesting its potential for detecting various other analytes by adjusting peptide sequences.

Article Abstract

Enzyme-linked immunosorbent assay (ELISA) is widely used in the routine screening of mycotoxin contamination in various agricultural and food products. Herein, a cascade-amplifying system was introduced to dramatically promote the sensitivity of an immunoassay for ochratoxin A (OTA) detection. Specifically, a biotinylated M13 bacteriophage was introduced as a biofunctional competing antigen, in which a seven-peptide OTA mimotope fused on the p3 protein of M13 was used to specifically recognize an anti-OTA monoclonal antibody, and the biotin molecules modified on capsid p8 proteins were used in loading numerous streptavidin-labeled polymeric horseradish peroxidases (HRPs). Owing to the abundance of biotinylated p8 proteins in M13 and the high molar ratio between HRP and streptavidin in streptavidin-polyHRP, the loading amount of HRP enzymes on the M13 bacteriophage were greatly boosted. Hence, the proposed method exhibited high sensitivity, with a limit of detection of 2.0 pg/mL for OTA detection, which was 250-fold lower than that of conventional ELISA. In addition, the proposed method showed a slight cross-reaction of 2.3% to OTB, a negligible cross-reaction for other common mycotoxins, and an acceptable accuracy for OTA quantitative detection in real corn samples. The practicability of the method was further confirmed with a traditional HRP-based ELISA method. In conclusion, the biotinylated bacteriophage and polyHRP structure showed potential as a cascade-amplifying enzyme loading system for ultra-trace OTA detemination, and its application can be extended to the detection of other analytes by altering specific mimic peptide sequences.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8674760PMC
http://dx.doi.org/10.3390/toxins13110781DOI Listing

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