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Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish

[Image: see text] Glucose, a critical source of energy, directly determines the homeostasis of the human body. However, due to the lack of robust imaging probes, the mechanism underlying the changes of glucose homeostasis in the human body remains unclear. Herein, diboronic acid probes with good bio...

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Autores principales: Wang, Kai, Zhang, Ruixiao, Zhao, Xiujie, Ma, Yan, Ren, Lijuan, Ren, Youxiao, Chen, Gaofei, Ye, Dingming, Wu, Jinfang, Hu, Xinyuan, Guo, Yuanqiang, Xi, Rimo, Meng, Meng, Yao, Qingqiang, Li, Ping, Chen, Qixin, James, Tony D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10119935/
https://www.ncbi.nlm.nih.gov/pubmed/37023253
http://dx.doi.org/10.1021/jacs.2c13694
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author Wang, Kai
Zhang, Ruixiao
Zhao, Xiujie
Ma, Yan
Ren, Lijuan
Ren, Youxiao
Chen, Gaofei
Ye, Dingming
Wu, Jinfang
Hu, Xinyuan
Guo, Yuanqiang
Xi, Rimo
Meng, Meng
Yao, Qingqiang
Li, Ping
Chen, Qixin
James, Tony D.
author_facet Wang, Kai
Zhang, Ruixiao
Zhao, Xiujie
Ma, Yan
Ren, Lijuan
Ren, Youxiao
Chen, Gaofei
Ye, Dingming
Wu, Jinfang
Hu, Xinyuan
Guo, Yuanqiang
Xi, Rimo
Meng, Meng
Yao, Qingqiang
Li, Ping
Chen, Qixin
James, Tony D.
author_sort Wang, Kai
collection PubMed
description [Image: see text] Glucose, a critical source of energy, directly determines the homeostasis of the human body. However, due to the lack of robust imaging probes, the mechanism underlying the changes of glucose homeostasis in the human body remains unclear. Herein, diboronic acid probes with good biocompatibility and high sensitivity were synthesized based on an ortho-aminomethylphenylboronic acid probe, phenyl(di)boronic acid (PDBA). Significantly, by introducing the water-solubilizing group −CN directly opposite the boronic acid group and −COOCH(3) or −COOH groups to the β site of the anthracene in PDBA, we obtained the water-soluble probe Mc-CDBA with sensitive response (F/F(0) = 47.8, detection limit (LOD) = 1.37 μM) and Ca-CDBA with the highest affinity for glucose (K(a) = 4.5 × 10(3) M(–1)). On this basis, Mc-CDBA was used to identify glucose heterogeneity between normal and tumor cells. Finally, Mc-CDBA and Ca-CDBA were used for imaging glucose in zebrafish. Our research provides a new strategy for designing efficient boronic acid glucose probes and powerful new tools for the evaluation of glucose-related diseases.
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spelling pubmed-101199352023-04-22 Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish Wang, Kai Zhang, Ruixiao Zhao, Xiujie Ma, Yan Ren, Lijuan Ren, Youxiao Chen, Gaofei Ye, Dingming Wu, Jinfang Hu, Xinyuan Guo, Yuanqiang Xi, Rimo Meng, Meng Yao, Qingqiang Li, Ping Chen, Qixin James, Tony D. J Am Chem Soc [Image: see text] Glucose, a critical source of energy, directly determines the homeostasis of the human body. However, due to the lack of robust imaging probes, the mechanism underlying the changes of glucose homeostasis in the human body remains unclear. Herein, diboronic acid probes with good biocompatibility and high sensitivity were synthesized based on an ortho-aminomethylphenylboronic acid probe, phenyl(di)boronic acid (PDBA). Significantly, by introducing the water-solubilizing group −CN directly opposite the boronic acid group and −COOCH(3) or −COOH groups to the β site of the anthracene in PDBA, we obtained the water-soluble probe Mc-CDBA with sensitive response (F/F(0) = 47.8, detection limit (LOD) = 1.37 μM) and Ca-CDBA with the highest affinity for glucose (K(a) = 4.5 × 10(3) M(–1)). On this basis, Mc-CDBA was used to identify glucose heterogeneity between normal and tumor cells. Finally, Mc-CDBA and Ca-CDBA were used for imaging glucose in zebrafish. Our research provides a new strategy for designing efficient boronic acid glucose probes and powerful new tools for the evaluation of glucose-related diseases. American Chemical Society 2023-04-06 /pmc/articles/PMC10119935/ /pubmed/37023253 http://dx.doi.org/10.1021/jacs.2c13694 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Wang, Kai
Zhang, Ruixiao
Zhao, Xiujie
Ma, Yan
Ren, Lijuan
Ren, Youxiao
Chen, Gaofei
Ye, Dingming
Wu, Jinfang
Hu, Xinyuan
Guo, Yuanqiang
Xi, Rimo
Meng, Meng
Yao, Qingqiang
Li, Ping
Chen, Qixin
James, Tony D.
Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title_full Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title_fullStr Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title_full_unstemmed Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title_short Reversible Recognition-Based Boronic Acid Probes for Glucose Detection in Live Cells and Zebrafish
title_sort reversible recognition-based boronic acid probes for glucose detection in live cells and zebrafish
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10119935/
https://www.ncbi.nlm.nih.gov/pubmed/37023253
http://dx.doi.org/10.1021/jacs.2c13694
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