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2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)

Fluorescent probes for nitric oxide (NO), or more frequently for its oxidized surrogate dinitrogen trioxide (N(2)O(3)), have enabled scientists to study the contributions of this signaling molecule to many physiological processes. Seeking to improve upon limitations of other probes, we have develope...

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Autores principales: Escamilla, P. Rogelio, Shen, Yanming, Zhang, Quanjuan, Hernandez, Derek S., Howard, Cecil J., Qian, Xuhong, Filonov, Daria Y., Kinev, Alexander V., Shear, Jason B., Anslyn, Eric V., Yang, Youjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148321/
https://www.ncbi.nlm.nih.gov/pubmed/34123264
http://dx.doi.org/10.1039/c9sc04304g
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author Escamilla, P. Rogelio
Shen, Yanming
Zhang, Quanjuan
Hernandez, Derek S.
Howard, Cecil J.
Qian, Xuhong
Filonov, Daria Y.
Kinev, Alexander V.
Shear, Jason B.
Anslyn, Eric V.
Yang, Youjun
author_facet Escamilla, P. Rogelio
Shen, Yanming
Zhang, Quanjuan
Hernandez, Derek S.
Howard, Cecil J.
Qian, Xuhong
Filonov, Daria Y.
Kinev, Alexander V.
Shear, Jason B.
Anslyn, Eric V.
Yang, Youjun
author_sort Escamilla, P. Rogelio
collection PubMed
description Fluorescent probes for nitric oxide (NO), or more frequently for its oxidized surrogate dinitrogen trioxide (N(2)O(3)), have enabled scientists to study the contributions of this signaling molecule to many physiological processes. Seeking to improve upon limitations of other probes, we have developed a family of fluorescent probes based on a 2-amino-3′-dialkylaminobiphenyl core. This core condenses with N(2)O(3) to form benzo[c]cinnoline structures, incorporating the analyte into the newly formed fluorophore, which results in product fluorescence with virtually no background contribution from the initial probe. We varied the substituents in the core in order to optimize both the reactivity of the probes with N(2)O(3) and their cinnoline products' fluorescence wavelengths and brightness. The top candidates were then applied to cultured cells to verify that they could respond to NO within cellular milieus, and the top performer, NO(530), was compared with a “gold standard” commercial probe, DAF-FM, in a macrophage-derived cell line, RAW 264.7, stimulated to produce NO. NO(530) demonstrated similar or better sensitivity and higher selectivity for NO than DAF, making it an attractive potential alternative for NO tracking in various applications.
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spelling pubmed-81483212021-06-11 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3) Escamilla, P. Rogelio Shen, Yanming Zhang, Quanjuan Hernandez, Derek S. Howard, Cecil J. Qian, Xuhong Filonov, Daria Y. Kinev, Alexander V. Shear, Jason B. Anslyn, Eric V. Yang, Youjun Chem Sci Chemistry Fluorescent probes for nitric oxide (NO), or more frequently for its oxidized surrogate dinitrogen trioxide (N(2)O(3)), have enabled scientists to study the contributions of this signaling molecule to many physiological processes. Seeking to improve upon limitations of other probes, we have developed a family of fluorescent probes based on a 2-amino-3′-dialkylaminobiphenyl core. This core condenses with N(2)O(3) to form benzo[c]cinnoline structures, incorporating the analyte into the newly formed fluorophore, which results in product fluorescence with virtually no background contribution from the initial probe. We varied the substituents in the core in order to optimize both the reactivity of the probes with N(2)O(3) and their cinnoline products' fluorescence wavelengths and brightness. The top candidates were then applied to cultured cells to verify that they could respond to NO within cellular milieus, and the top performer, NO(530), was compared with a “gold standard” commercial probe, DAF-FM, in a macrophage-derived cell line, RAW 264.7, stimulated to produce NO. NO(530) demonstrated similar or better sensitivity and higher selectivity for NO than DAF, making it an attractive potential alternative for NO tracking in various applications. The Royal Society of Chemistry 2020-01-02 /pmc/articles/PMC8148321/ /pubmed/34123264 http://dx.doi.org/10.1039/c9sc04304g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Escamilla, P. Rogelio
Shen, Yanming
Zhang, Quanjuan
Hernandez, Derek S.
Howard, Cecil J.
Qian, Xuhong
Filonov, Daria Y.
Kinev, Alexander V.
Shear, Jason B.
Anslyn, Eric V.
Yang, Youjun
2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title_full 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title_fullStr 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title_full_unstemmed 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title_short 2-Amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate N(2)O(3)
title_sort 2-amino-3′-dialkylaminobiphenyl-based fluorescent intracellular probes for nitric oxide surrogate n(2)o(3)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148321/
https://www.ncbi.nlm.nih.gov/pubmed/34123264
http://dx.doi.org/10.1039/c9sc04304g
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