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Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products

The potential homogeneous assay employing immunomagnetic beads (IMB) has been receiving attention as a screening tool in food-safety control; the method is simple, efficient, and does not require long incubation times or complex separation steps. In this study, a homogeneous immunoassay has been suc...

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Autores principales: Li, Ming, Zhang, Yuanyuan, Zhao, Rujin, Liu, Zhenjiang, Hong, Xia, Cui, Yin, Xue, Yonglai, Du, Daolin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083124/
https://www.ncbi.nlm.nih.gov/pubmed/35541948
http://dx.doi.org/10.1039/c8ra04460k
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author Li, Ming
Zhang, Yuanyuan
Zhao, Rujin
Liu, Zhenjiang
Hong, Xia
Cui, Yin
Xue, Yonglai
Du, Daolin
author_facet Li, Ming
Zhang, Yuanyuan
Zhao, Rujin
Liu, Zhenjiang
Hong, Xia
Cui, Yin
Xue, Yonglai
Du, Daolin
author_sort Li, Ming
collection PubMed
description The potential homogeneous assay employing immunomagnetic beads (IMB) has been receiving attention as a screening tool in food-safety control; the method is simple, efficient, and does not require long incubation times or complex separation steps. In this study, a homogeneous immunoassay has been successfully developed and applied in the determination of aflatoxin B(1) (AFB(1)) contamination in agricultural products by coupling IMB and the biotin-streptavidin (BSA) (BSA-IMB) system. Under optimal conditions, the limit of detection (LOD, IC(10)), half-maximal inhibition concentration (IC(50)) and detection range (IC(20)–IC(80)) of BSA-IMB are 0.00579, 0.573 and 0.0183–17.9 ng mL(−1), respectively, for AFB(1). The detection of AFB(1) by BSA-IMB can be achieved in 40 min (ELISA needs at least 180 min). The cross-reactivities of BSA-IMB with its analogues are negligible (<3.82%); these results indicate high selectivity. The spiked recoveries are in the range from 89.6 to 118.2% with relative standard deviations (RSDs) of 3.4 to 13.2% for AFB(1) in agricultural product samples. Furthermore, the results of BSA-IMB for authentic samples show reliability and high correlation of 0.9928 with an HPLC-fluorescence detector. The proposed BSA-IMB system is demonstrated to be a satisfactory tool for homogeneous, efficient, sensitive, and alternative detection of AFB(1) in a wide detection range for agricultural product samples.
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spelling pubmed-90831242022-05-09 Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products Li, Ming Zhang, Yuanyuan Zhao, Rujin Liu, Zhenjiang Hong, Xia Cui, Yin Xue, Yonglai Du, Daolin RSC Adv Chemistry The potential homogeneous assay employing immunomagnetic beads (IMB) has been receiving attention as a screening tool in food-safety control; the method is simple, efficient, and does not require long incubation times or complex separation steps. In this study, a homogeneous immunoassay has been successfully developed and applied in the determination of aflatoxin B(1) (AFB(1)) contamination in agricultural products by coupling IMB and the biotin-streptavidin (BSA) (BSA-IMB) system. Under optimal conditions, the limit of detection (LOD, IC(10)), half-maximal inhibition concentration (IC(50)) and detection range (IC(20)–IC(80)) of BSA-IMB are 0.00579, 0.573 and 0.0183–17.9 ng mL(−1), respectively, for AFB(1). The detection of AFB(1) by BSA-IMB can be achieved in 40 min (ELISA needs at least 180 min). The cross-reactivities of BSA-IMB with its analogues are negligible (<3.82%); these results indicate high selectivity. The spiked recoveries are in the range from 89.6 to 118.2% with relative standard deviations (RSDs) of 3.4 to 13.2% for AFB(1) in agricultural product samples. Furthermore, the results of BSA-IMB for authentic samples show reliability and high correlation of 0.9928 with an HPLC-fluorescence detector. The proposed BSA-IMB system is demonstrated to be a satisfactory tool for homogeneous, efficient, sensitive, and alternative detection of AFB(1) in a wide detection range for agricultural product samples. The Royal Society of Chemistry 2018-07-19 /pmc/articles/PMC9083124/ /pubmed/35541948 http://dx.doi.org/10.1039/c8ra04460k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Ming
Zhang, Yuanyuan
Zhao, Rujin
Liu, Zhenjiang
Hong, Xia
Cui, Yin
Xue, Yonglai
Du, Daolin
Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title_full Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title_fullStr Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title_full_unstemmed Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title_short Immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin B(1) in agricultural products
title_sort immunomagnetic bead-based biotin-streptavidin system for highly efficient detection of aflatoxin b(1) in agricultural products
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083124/
https://www.ncbi.nlm.nih.gov/pubmed/35541948
http://dx.doi.org/10.1039/c8ra04460k
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