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Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone

This study synthesized the NaGdF(4)@NaGdF(4): Yb, Tm@NaGdF(4): Yb, Nd upconversion nanoparticles (UCNPs), combined with another three-layer structure NaYF(4)@NaYF(4): Yb, Er@NaYF(4) UCNPs, with a core-shell-shell structure, effectively suppressing fluorescence quenching and significantly improving u...

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Detalles Bibliográficos
Autores principales: Song, Yang, Jin, Jingyi, Hu, Liuling, Hu, Bingqian, Wang, Mengyao, Guo, Lilong, Lv, Xiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10529869/
https://www.ncbi.nlm.nih.gov/pubmed/37761153
http://dx.doi.org/10.3390/foods12183445
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author Song, Yang
Jin, Jingyi
Hu, Liuling
Hu, Bingqian
Wang, Mengyao
Guo, Lilong
Lv, Xiyan
author_facet Song, Yang
Jin, Jingyi
Hu, Liuling
Hu, Bingqian
Wang, Mengyao
Guo, Lilong
Lv, Xiyan
author_sort Song, Yang
collection PubMed
description This study synthesized the NaGdF(4)@NaGdF(4): Yb, Tm@NaGdF(4): Yb, Nd upconversion nanoparticles (UCNPs), combined with another three-layer structure NaYF(4)@NaYF(4): Yb, Er@NaYF(4) UCNPs, with a core-shell-shell structure, effectively suppressing fluorescence quenching and significantly improving upconversion luminescence efficiency. Two types of modified UCNPs were coupled with antibodies against fenpropathrin and procymidone to form signal probes, and magnetic nanoparticles were coupled with antigens of fenpropathrin and procymidone to form capture probes. A rapid and sensitive fluorescence immunoassay for the simultaneous detection of fenpropathrin and procymidone was established based on the principle of specific binding of antigen and antibody and magnetic separation technology. Under the optimal competitive reaction conditions, different concentrations of fenpropathrin and procymidone standards were added to collect the capture probe-signal probe complex. The fluorescence values at 542 nm and 802 nm were measured using 980 nm excitation luminescence. The results showed that the detection limits of fenpropathrin and procymidone were 0.114 µg/kg and 0.082 µg/kg, respectively, with sensitivities of 8.15 µg/kg and 7.98 µg/kg, and they were applied to the detection of fenpropathrin and procymidone in tomatoes, cucumbers, and cabbage. The average recovery rates were 86.5~100.2% and 85.61~102.43%, respectively, with coefficients of variation less than 10%. The results showed good consistency with the detection results of high-performance liquid chromatography, proving that this method has good accuracy and is suitable for the rapid detection of fenpropathrin and procymidone in food.
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spelling pubmed-105298692023-09-28 Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone Song, Yang Jin, Jingyi Hu, Liuling Hu, Bingqian Wang, Mengyao Guo, Lilong Lv, Xiyan Foods Article This study synthesized the NaGdF(4)@NaGdF(4): Yb, Tm@NaGdF(4): Yb, Nd upconversion nanoparticles (UCNPs), combined with another three-layer structure NaYF(4)@NaYF(4): Yb, Er@NaYF(4) UCNPs, with a core-shell-shell structure, effectively suppressing fluorescence quenching and significantly improving upconversion luminescence efficiency. Two types of modified UCNPs were coupled with antibodies against fenpropathrin and procymidone to form signal probes, and magnetic nanoparticles were coupled with antigens of fenpropathrin and procymidone to form capture probes. A rapid and sensitive fluorescence immunoassay for the simultaneous detection of fenpropathrin and procymidone was established based on the principle of specific binding of antigen and antibody and magnetic separation technology. Under the optimal competitive reaction conditions, different concentrations of fenpropathrin and procymidone standards were added to collect the capture probe-signal probe complex. The fluorescence values at 542 nm and 802 nm were measured using 980 nm excitation luminescence. The results showed that the detection limits of fenpropathrin and procymidone were 0.114 µg/kg and 0.082 µg/kg, respectively, with sensitivities of 8.15 µg/kg and 7.98 µg/kg, and they were applied to the detection of fenpropathrin and procymidone in tomatoes, cucumbers, and cabbage. The average recovery rates were 86.5~100.2% and 85.61~102.43%, respectively, with coefficients of variation less than 10%. The results showed good consistency with the detection results of high-performance liquid chromatography, proving that this method has good accuracy and is suitable for the rapid detection of fenpropathrin and procymidone in food. MDPI 2023-09-15 /pmc/articles/PMC10529869/ /pubmed/37761153 http://dx.doi.org/10.3390/foods12183445 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Song, Yang
Jin, Jingyi
Hu, Liuling
Hu, Bingqian
Wang, Mengyao
Guo, Lilong
Lv, Xiyan
Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title_full Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title_fullStr Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title_full_unstemmed Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title_short Core-Shell-Shell Upconversion Nanomaterials Applying for Simultaneous Immunofluorescent Detection of Fenpropathrin and Procymidone
title_sort core-shell-shell upconversion nanomaterials applying for simultaneous immunofluorescent detection of fenpropathrin and procymidone
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10529869/
https://www.ncbi.nlm.nih.gov/pubmed/37761153
http://dx.doi.org/10.3390/foods12183445
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