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Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens

Clostridium perfringens is an important foodborne pathogen, which has caused serious public health problems worldwide. So, there is an urgent need for rapid and ultrasensitive detection of C. perfringens. In this paper, a dual-mode sensing platform using the synergy between fluorescent and electroch...

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Detalles Bibliográficos
Autores principales: Wang, Wenzhuo, Yuan, Wei, Wang, Debao, Mai, Xutao, Wang, Daoying, Zhu, Yongzhi, Liu, Fang, Sun, Zhilan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460978/
https://www.ncbi.nlm.nih.gov/pubmed/36199343
http://dx.doi.org/10.1039/d2ra04344k
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author Wang, Wenzhuo
Yuan, Wei
Wang, Debao
Mai, Xutao
Wang, Daoying
Zhu, Yongzhi
Liu, Fang
Sun, Zhilan
author_facet Wang, Wenzhuo
Yuan, Wei
Wang, Debao
Mai, Xutao
Wang, Daoying
Zhu, Yongzhi
Liu, Fang
Sun, Zhilan
author_sort Wang, Wenzhuo
collection PubMed
description Clostridium perfringens is an important foodborne pathogen, which has caused serious public health problems worldwide. So, there is an urgent need for rapid and ultrasensitive detection of C. perfringens. In this paper, a dual-mode sensing platform using the synergy between fluorescent and electrochemical signals for Clostridium perfringens detection was proposed. An electrochemical aptasensor was constructed by a dual-amplification technology based on a DNA walker and hybridization chain reaction (HCR). When the C. perfringens genomic DNA was present, it specifically bonded with FAM-labeled aptamer which triggered the DNA walker on hairpin DNA (hDNA) tracks to start the synthesis of double-stranded DNA. HCR occurred subsequently and produced long-chain DNA to absorb more methylene blue (MB). In this cycle, the fluorescent signals of released FAM-labeled aptamer could also be detected. The synergistic effects of MB and FAM significantly improved the sensitivity and accuracy of the dual-mode sensor. As a result, the biosensor displayed an excellent analytical performance for C. perfringens at a concentration of 1 to 10(8) CFU g(−1). A minimum concentration of 1 CFU g(−1) and good accuracy were detected in real samples. The proposed ultrasensitive detection method for detecting C. perfringens in food showed great potential in controlling foodborne diseases.
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spelling pubmed-94609782022-10-04 Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens Wang, Wenzhuo Yuan, Wei Wang, Debao Mai, Xutao Wang, Daoying Zhu, Yongzhi Liu, Fang Sun, Zhilan RSC Adv Chemistry Clostridium perfringens is an important foodborne pathogen, which has caused serious public health problems worldwide. So, there is an urgent need for rapid and ultrasensitive detection of C. perfringens. In this paper, a dual-mode sensing platform using the synergy between fluorescent and electrochemical signals for Clostridium perfringens detection was proposed. An electrochemical aptasensor was constructed by a dual-amplification technology based on a DNA walker and hybridization chain reaction (HCR). When the C. perfringens genomic DNA was present, it specifically bonded with FAM-labeled aptamer which triggered the DNA walker on hairpin DNA (hDNA) tracks to start the synthesis of double-stranded DNA. HCR occurred subsequently and produced long-chain DNA to absorb more methylene blue (MB). In this cycle, the fluorescent signals of released FAM-labeled aptamer could also be detected. The synergistic effects of MB and FAM significantly improved the sensitivity and accuracy of the dual-mode sensor. As a result, the biosensor displayed an excellent analytical performance for C. perfringens at a concentration of 1 to 10(8) CFU g(−1). A minimum concentration of 1 CFU g(−1) and good accuracy were detected in real samples. The proposed ultrasensitive detection method for detecting C. perfringens in food showed great potential in controlling foodborne diseases. The Royal Society of Chemistry 2022-09-09 /pmc/articles/PMC9460978/ /pubmed/36199343 http://dx.doi.org/10.1039/d2ra04344k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Wenzhuo
Yuan, Wei
Wang, Debao
Mai, Xutao
Wang, Daoying
Zhu, Yongzhi
Liu, Fang
Sun, Zhilan
Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title_full Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title_fullStr Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title_full_unstemmed Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title_short Dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of Clostridium perfringens
title_sort dual-mode sensor based on the synergy of magnetic separation and functionalized probes for the ultrasensitive detection of clostridium perfringens
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460978/
https://www.ncbi.nlm.nih.gov/pubmed/36199343
http://dx.doi.org/10.1039/d2ra04344k
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