Cargando…
A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk
Developing sensitive and effective methods to monitor oxytetracycline residues in food is of great significance for maintaining public health. Herein, a fluorescent sensor (NH(2)-UIO-66 (Zr)@MIP) based on a molecularly imprinted polymer-coated amino-functionalized zirconium (IV) metal–organic framew...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10252438/ https://www.ncbi.nlm.nih.gov/pubmed/37297499 http://dx.doi.org/10.3390/foods12112255 |
_version_ | 1785056171335352320 |
---|---|
author | Wang, Xiaohui Liu, Chang Cao, Yichuan Cai, Lin Wang, Haiyang Fang, Guozhen |
author_facet | Wang, Xiaohui Liu, Chang Cao, Yichuan Cai, Lin Wang, Haiyang Fang, Guozhen |
author_sort | Wang, Xiaohui |
collection | PubMed |
description | Developing sensitive and effective methods to monitor oxytetracycline residues in food is of great significance for maintaining public health. Herein, a fluorescent sensor (NH(2)-UIO-66 (Zr)@MIP) based on a molecularly imprinted polymer-coated amino-functionalized zirconium (IV) metal–organic framework was successfully constructed and first used for the ultrasensitive determination of oxytetracycline. NH(2)-UIO-66 (Zr), with a maximum emission wavelength of 455 nm under 350 nm excitation, was prepared using a microwave-assisted heating method. The NH(2)-UIO-66 (Zr)@MIP sensor with specific recognition sites for oxytetracycline was then acquired by modifying a molecularly imprinted polymer on the surface of NH(2)-UIO-66 (Zr). The introduction of NH(2)-UIO-66 (Zr) as both a signal tag and supporter can strengthen the sensitivity of the fluorescence sensor. Thanks to the combination of the unique characteristics of the molecularly imprinted polymer and NH(2)-UIO-66 (Zr), the prepared sensor not only exhibited a sensitive fluorescence response, specific identification capabilities and a high selectivity for oxytetracycline, but also showed good fluorescence stability, satisfactory precision and reproducibility. The fabricated sensor displayed a fluorescent linear quenching in the OTC concentration range of 0.05–40 μg mL(−1), with a detection limit of 0.012 μg mL(−1). More importantly, the fluorescence sensor was finally applied for the detection of oxytetracycline in milk, and the results were comparable to those obtained using the HPLC approach. Hence, the NH(2)-UIO-66 (Zr)@MIP sensor possesses great application potential for the accurate evaluation of trace oxytetracycline in dairy products. |
format | Online Article Text |
id | pubmed-10252438 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-102524382023-06-10 A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk Wang, Xiaohui Liu, Chang Cao, Yichuan Cai, Lin Wang, Haiyang Fang, Guozhen Foods Article Developing sensitive and effective methods to monitor oxytetracycline residues in food is of great significance for maintaining public health. Herein, a fluorescent sensor (NH(2)-UIO-66 (Zr)@MIP) based on a molecularly imprinted polymer-coated amino-functionalized zirconium (IV) metal–organic framework was successfully constructed and first used for the ultrasensitive determination of oxytetracycline. NH(2)-UIO-66 (Zr), with a maximum emission wavelength of 455 nm under 350 nm excitation, was prepared using a microwave-assisted heating method. The NH(2)-UIO-66 (Zr)@MIP sensor with specific recognition sites for oxytetracycline was then acquired by modifying a molecularly imprinted polymer on the surface of NH(2)-UIO-66 (Zr). The introduction of NH(2)-UIO-66 (Zr) as both a signal tag and supporter can strengthen the sensitivity of the fluorescence sensor. Thanks to the combination of the unique characteristics of the molecularly imprinted polymer and NH(2)-UIO-66 (Zr), the prepared sensor not only exhibited a sensitive fluorescence response, specific identification capabilities and a high selectivity for oxytetracycline, but also showed good fluorescence stability, satisfactory precision and reproducibility. The fabricated sensor displayed a fluorescent linear quenching in the OTC concentration range of 0.05–40 μg mL(−1), with a detection limit of 0.012 μg mL(−1). More importantly, the fluorescence sensor was finally applied for the detection of oxytetracycline in milk, and the results were comparable to those obtained using the HPLC approach. Hence, the NH(2)-UIO-66 (Zr)@MIP sensor possesses great application potential for the accurate evaluation of trace oxytetracycline in dairy products. MDPI 2023-06-03 /pmc/articles/PMC10252438/ /pubmed/37297499 http://dx.doi.org/10.3390/foods12112255 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 Wang, Xiaohui Liu, Chang Cao, Yichuan Cai, Lin Wang, Haiyang Fang, Guozhen A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title | A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title_full | A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title_fullStr | A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title_full_unstemmed | A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title_short | A Turn-Off Fluorescent Biomimetic Sensor Based on a Molecularly Imprinted Polymer-Coated Amino-Functionalized Zirconium (IV) Metal–Organic Framework for the Ultrasensitive and Selective Detection of Trace Oxytetracycline in Milk |
title_sort | turn-off fluorescent biomimetic sensor based on a molecularly imprinted polymer-coated amino-functionalized zirconium (iv) metal–organic framework for the ultrasensitive and selective detection of trace oxytetracycline in milk |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10252438/ https://www.ncbi.nlm.nih.gov/pubmed/37297499 http://dx.doi.org/10.3390/foods12112255 |
work_keys_str_mv | AT wangxiaohui aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT liuchang aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT caoyichuan aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT cailin aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT wanghaiyang aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT fangguozhen aturnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT wangxiaohui turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT liuchang turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT caoyichuan turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT cailin turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT wanghaiyang turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk AT fangguozhen turnofffluorescentbiomimeticsensorbasedonamolecularlyimprintedpolymercoatedaminofunctionalizedzirconiumivmetalorganicframeworkfortheultrasensitiveandselectivedetectionoftraceoxytetracyclineinmilk |