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A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines

Aflatoxin B(1) (AFB(1)) is a very hazardous carcinogen, readily contaminating foodstuffs and traditional Chinese medicines (TCMs) that has inspired increasing health concerns due to dietary exposure. Colloidal nanocrystals have been proposed as optical labels for aptasensor assembly, but these typic...

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Autores principales: Zhang, Cheng, Dou, Xiaowen, Zhang, Lei, Sun, Meifeng, Zhao, Ming, OuYang, Zhen, Kong, Dandan, Antonio, F. Logrieco, Yang, Meihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5869389/
https://www.ncbi.nlm.nih.gov/pubmed/29495577
http://dx.doi.org/10.3390/toxins10030101
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author Zhang, Cheng
Dou, Xiaowen
Zhang, Lei
Sun, Meifeng
Zhao, Ming
OuYang, Zhen
Kong, Dandan
Antonio, F. Logrieco
Yang, Meihua
author_facet Zhang, Cheng
Dou, Xiaowen
Zhang, Lei
Sun, Meifeng
Zhao, Ming
OuYang, Zhen
Kong, Dandan
Antonio, F. Logrieco
Yang, Meihua
author_sort Zhang, Cheng
collection PubMed
description Aflatoxin B(1) (AFB(1)) is a very hazardous carcinogen, readily contaminating foodstuffs and traditional Chinese medicines (TCMs) that has inspired increasing health concerns due to dietary exposure. Colloidal nanocrystals have been proposed as optical labels for aptasensor assembly, but these typically require tedious multistep conjugation and suffer from unsatisfactory robustness when used for complex matrices. In the present study, we report a rapid and sensitive method for screening for trace AFB(1) levels in TCMs using a label-free fluorescent aptasensor PicoGreen dye-based strategy. Using PicoGreen to selectively measure complementary double-stranded DNA, fluorescence enhancement due to dsDNA is ‘turned off’ in the presence of AFB(1) due binding of aptamer target over complementary sequence. Self-assembly of a label-free fluorescent aptasensor based on AFB(1) aptamer and PicoGreen dye was performed. Due to competition between the complementary sequence and AFB(1) target, this rapid method was capable of highly sensitive and selective screening for AFB(1) in five types of TCMs. This proposed approach had a limit of detection as low as 0.1 μg·L(−1) and good linearity with a range of 0.1–10 μg·L(−1) (0.1–10 ppb). Among the 20 samples tested, 6 batches were found to be contaminated with AFB(1) using this method, which was confirmed using sophisticated liquid chromatography-electrospray ionization-tandem mass spectrometry/mass spectrometry analysis. The results of this study indicate the developed method has the potential to be a simple, quick, and sensitive tool for detecting AFB(1) in TCMs.
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spelling pubmed-58693892018-03-28 A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines Zhang, Cheng Dou, Xiaowen Zhang, Lei Sun, Meifeng Zhao, Ming OuYang, Zhen Kong, Dandan Antonio, F. Logrieco Yang, Meihua Toxins (Basel) Article Aflatoxin B(1) (AFB(1)) is a very hazardous carcinogen, readily contaminating foodstuffs and traditional Chinese medicines (TCMs) that has inspired increasing health concerns due to dietary exposure. Colloidal nanocrystals have been proposed as optical labels for aptasensor assembly, but these typically require tedious multistep conjugation and suffer from unsatisfactory robustness when used for complex matrices. In the present study, we report a rapid and sensitive method for screening for trace AFB(1) levels in TCMs using a label-free fluorescent aptasensor PicoGreen dye-based strategy. Using PicoGreen to selectively measure complementary double-stranded DNA, fluorescence enhancement due to dsDNA is ‘turned off’ in the presence of AFB(1) due binding of aptamer target over complementary sequence. Self-assembly of a label-free fluorescent aptasensor based on AFB(1) aptamer and PicoGreen dye was performed. Due to competition between the complementary sequence and AFB(1) target, this rapid method was capable of highly sensitive and selective screening for AFB(1) in five types of TCMs. This proposed approach had a limit of detection as low as 0.1 μg·L(−1) and good linearity with a range of 0.1–10 μg·L(−1) (0.1–10 ppb). Among the 20 samples tested, 6 batches were found to be contaminated with AFB(1) using this method, which was confirmed using sophisticated liquid chromatography-electrospray ionization-tandem mass spectrometry/mass spectrometry analysis. The results of this study indicate the developed method has the potential to be a simple, quick, and sensitive tool for detecting AFB(1) in TCMs. MDPI 2018-02-28 /pmc/articles/PMC5869389/ /pubmed/29495577 http://dx.doi.org/10.3390/toxins10030101 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Cheng
Dou, Xiaowen
Zhang, Lei
Sun, Meifeng
Zhao, Ming
OuYang, Zhen
Kong, Dandan
Antonio, F. Logrieco
Yang, Meihua
A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title_full A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title_fullStr A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title_full_unstemmed A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title_short A Rapid Label-Free Fluorescent Aptasensor PicoGreen-Based Strategy for Aflatoxin B(1) Detection in Traditional Chinese Medicines
title_sort rapid label-free fluorescent aptasensor picogreen-based strategy for aflatoxin b(1) detection in traditional chinese medicines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5869389/
https://www.ncbi.nlm.nih.gov/pubmed/29495577
http://dx.doi.org/10.3390/toxins10030101
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