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Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells

The detection of small molecular biothiols (cysteine, homocysteine and glutathione) is of great importance, as they involve in a series of physiological and pathological processes and are associated with many diseases. To realize the real-time monitoring of a specific biothiol, a rapid and reversibl...

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Autores principales: Li, Yu, Chen, Li, Zhu, Yan, Chen, Liming, Yu, Xianglin, Li, Junbo, Chen, Dugang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034037/
https://www.ncbi.nlm.nih.gov/pubmed/35479348
http://dx.doi.org/10.1039/d1ra03221f
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author Li, Yu
Chen, Li
Zhu, Yan
Chen, Liming
Yu, Xianglin
Li, Junbo
Chen, Dugang
author_facet Li, Yu
Chen, Li
Zhu, Yan
Chen, Liming
Yu, Xianglin
Li, Junbo
Chen, Dugang
author_sort Li, Yu
collection PubMed
description The detection of small molecular biothiols (cysteine, homocysteine and glutathione) is of great importance, as they involve in a series of physiological and pathological processes and are associated with many diseases. To realize the real-time monitoring of a specific biothiol, a rapid and reversible probe is required. Therefore, three probes, namely, o-MNPy, m-MNPy and p-MNPy, with pyridine substituted α, β-unsaturated ketone as the recognition site, were reported here, and the reactivity of the recognition site was finely tuned by the connection mode of the pyridine unit. To single out the optimal one, the response performances of three probes toward each biothiol were systemically studied, taking the differences of the intracellular contents of three biothiols into account during the evaluation. Biothiols reacted with the probes through Michael addition, and results showed that the slight structural variations could affect the performances of the probes obviously. p-MNPy with the pyridine unit connected to the recognition site through the para-position of the nitrogen atom, revealed the best sensing ability among the three probes. It demonstrated rapid response, good selectivity and sensitivity, excellent pH adaptability to Cys and GSH, and displayed reversible detection toward GSH. Finally, p-MNPy was successfully applied to track the GSH fluctuations under the oxidative stress stimulated by H(2)O(2) in living cells.
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spelling pubmed-90340372022-04-26 Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells Li, Yu Chen, Li Zhu, Yan Chen, Liming Yu, Xianglin Li, Junbo Chen, Dugang RSC Adv Chemistry The detection of small molecular biothiols (cysteine, homocysteine and glutathione) is of great importance, as they involve in a series of physiological and pathological processes and are associated with many diseases. To realize the real-time monitoring of a specific biothiol, a rapid and reversible probe is required. Therefore, three probes, namely, o-MNPy, m-MNPy and p-MNPy, with pyridine substituted α, β-unsaturated ketone as the recognition site, were reported here, and the reactivity of the recognition site was finely tuned by the connection mode of the pyridine unit. To single out the optimal one, the response performances of three probes toward each biothiol were systemically studied, taking the differences of the intracellular contents of three biothiols into account during the evaluation. Biothiols reacted with the probes through Michael addition, and results showed that the slight structural variations could affect the performances of the probes obviously. p-MNPy with the pyridine unit connected to the recognition site through the para-position of the nitrogen atom, revealed the best sensing ability among the three probes. It demonstrated rapid response, good selectivity and sensitivity, excellent pH adaptability to Cys and GSH, and displayed reversible detection toward GSH. Finally, p-MNPy was successfully applied to track the GSH fluctuations under the oxidative stress stimulated by H(2)O(2) in living cells. The Royal Society of Chemistry 2021-06-15 /pmc/articles/PMC9034037/ /pubmed/35479348 http://dx.doi.org/10.1039/d1ra03221f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Yu
Chen, Li
Zhu, Yan
Chen, Liming
Yu, Xianglin
Li, Junbo
Chen, Dugang
Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title_full Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title_fullStr Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title_full_unstemmed Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title_short Structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
title_sort structure modulation on fluorescent probes for biothiols and the reversible imaging of glutathione in living cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034037/
https://www.ncbi.nlm.nih.gov/pubmed/35479348
http://dx.doi.org/10.1039/d1ra03221f
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