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Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen

Herein, we developed a paper-based smart sensing chip for the real-time, visual, and non-destructive monitoring of food freshness using a ratiometric aggregation-induced emission (AIE) luminogen (i.e., H(+)MQ, protonated 4-(triphenylamine)styryl)quinoxalin-2(1H)-one) as pH sensitive indicators. Upon...

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Autores principales: Guo, Xujing, Chen, Xirui, Chen, Rui, Tu, Yujie, Lu, Tianying, Guo, Yuqian, Guo, Liang, Xiong, Yonghua, Huang, Xiaolin, Tang, Ben Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997827/
https://www.ncbi.nlm.nih.gov/pubmed/35407018
http://dx.doi.org/10.3390/foods11070932
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author Guo, Xujing
Chen, Xirui
Chen, Rui
Tu, Yujie
Lu, Tianying
Guo, Yuqian
Guo, Liang
Xiong, Yonghua
Huang, Xiaolin
Tang, Ben Zhong
author_facet Guo, Xujing
Chen, Xirui
Chen, Rui
Tu, Yujie
Lu, Tianying
Guo, Yuqian
Guo, Liang
Xiong, Yonghua
Huang, Xiaolin
Tang, Ben Zhong
author_sort Guo, Xujing
collection PubMed
description Herein, we developed a paper-based smart sensing chip for the real-time, visual, and non-destructive monitoring of food freshness using a ratiometric aggregation-induced emission (AIE) luminogen (i.e., H(+)MQ, protonated 4-(triphenylamine)styryl)quinoxalin-2(1H)-one) as pH sensitive indicators. Upon exposure to amine vapors, the deprotonation of H(+)MQ occurs and triggers its color change from blue to yellow, with the fluorescence redshift from blue to amaranth. Consequently, we successfully achieved the sensitive detection of ammonia vapors by recording the bimodal color and fluorescence changes. Given the high sensitivity of H(+)MQ to ammonia vapor, a paper-based smart sensor chip was prepared by depositing H(+)MQ on the commercial qualitative filter paper through a physical deposition strategy. After being placed inside the sealed containers, the developed H(+)MQ-loaded paper chip was applied to the real-time monitoring of biogenic amine contents according to its color difference and ratio fluorescence change. The detection results were further compared with those obtained by the high-performance liquid chromatography method, which verified the feasibility of the designed paper chip for the food spoilage degree evaluation. Briefly, this work indicates that the designed H(+)MQ-loaded paper chip could be a promising approach for improving food freshness monitoring.
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spelling pubmed-89978272022-04-12 Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen Guo, Xujing Chen, Xirui Chen, Rui Tu, Yujie Lu, Tianying Guo, Yuqian Guo, Liang Xiong, Yonghua Huang, Xiaolin Tang, Ben Zhong Foods Article Herein, we developed a paper-based smart sensing chip for the real-time, visual, and non-destructive monitoring of food freshness using a ratiometric aggregation-induced emission (AIE) luminogen (i.e., H(+)MQ, protonated 4-(triphenylamine)styryl)quinoxalin-2(1H)-one) as pH sensitive indicators. Upon exposure to amine vapors, the deprotonation of H(+)MQ occurs and triggers its color change from blue to yellow, with the fluorescence redshift from blue to amaranth. Consequently, we successfully achieved the sensitive detection of ammonia vapors by recording the bimodal color and fluorescence changes. Given the high sensitivity of H(+)MQ to ammonia vapor, a paper-based smart sensor chip was prepared by depositing H(+)MQ on the commercial qualitative filter paper through a physical deposition strategy. After being placed inside the sealed containers, the developed H(+)MQ-loaded paper chip was applied to the real-time monitoring of biogenic amine contents according to its color difference and ratio fluorescence change. The detection results were further compared with those obtained by the high-performance liquid chromatography method, which verified the feasibility of the designed paper chip for the food spoilage degree evaluation. Briefly, this work indicates that the designed H(+)MQ-loaded paper chip could be a promising approach for improving food freshness monitoring. MDPI 2022-03-24 /pmc/articles/PMC8997827/ /pubmed/35407018 http://dx.doi.org/10.3390/foods11070932 Text en © 2022 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
Guo, Xujing
Chen, Xirui
Chen, Rui
Tu, Yujie
Lu, Tianying
Guo, Yuqian
Guo, Liang
Xiong, Yonghua
Huang, Xiaolin
Tang, Ben Zhong
Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title_full Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title_fullStr Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title_full_unstemmed Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title_short Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen
title_sort ratiometric monitoring of biogenic amines by a simple ammonia-response aiegen
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997827/
https://www.ncbi.nlm.nih.gov/pubmed/35407018
http://dx.doi.org/10.3390/foods11070932
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