Cargando…

A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish

As a vital antioxidant molecule, H(2)S can make an important contribution to regulating blood vessels and inhibiting apoptosis when present at an appropriate concentration. Higher levels of H(2)S can interfere with the physiological responses of the respiratory system and central nervous system carr...

Descripción completa

Detalles Bibliográficos
Autores principales: Tong, Xu, Hao, Liguo, Song, Xue, Wu, Shuang, Zhang, Na, Li, Zhongtao, Chen, Song, Hou, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9201871/
https://www.ncbi.nlm.nih.gov/pubmed/35765346
http://dx.doi.org/10.1039/d2ra00997h
_version_ 1784728409059885056
author Tong, Xu
Hao, Liguo
Song, Xue
Wu, Shuang
Zhang, Na
Li, Zhongtao
Chen, Song
Hou, Peng
author_facet Tong, Xu
Hao, Liguo
Song, Xue
Wu, Shuang
Zhang, Na
Li, Zhongtao
Chen, Song
Hou, Peng
author_sort Tong, Xu
collection PubMed
description As a vital antioxidant molecule, H(2)S can make an important contribution to regulating blood vessels and inhibiting apoptosis when present at an appropriate concentration. Higher levels of H(2)S can interfere with the physiological responses of the respiratory system and central nervous system carried out by mammalian cells. This is associated with many illnesses, such as diabetes, mental decline, cardiovascular diseases, and cancer. Therefore, the accurate measurement of H(2)S in organisms and the environment is of great significance for in-depth studies of the pathogenesis of related diseases. In this contribution, a new coumarin-carbazole-based fluorescent probe, COZ-DNBS, showing a rapid response and large Stokes shift was rationally devised and applied to effectively sense H(2)S in vivo and in vitro. Upon using the probe COZ-DNBS, the established fluorescent platform could detect H(2)S with excellent selectivity, showing 62-fold fluorescence enhancement, a fast-response time (<1 min), high sensitivity (38.6 nM), a large Stokes shift (173 nm), and bright-yellow emission. Importantly, the probe COZ-DNBS works well for monitoring levels of H(2)S in realistic samples, living MCF-7 cells, and zebrafish, showing that COZ-DNBS is a promising signaling tool for H(2)S detection in biosystems.
format Online
Article
Text
id pubmed-9201871
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-92018712022-06-27 A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish Tong, Xu Hao, Liguo Song, Xue Wu, Shuang Zhang, Na Li, Zhongtao Chen, Song Hou, Peng RSC Adv Chemistry As a vital antioxidant molecule, H(2)S can make an important contribution to regulating blood vessels and inhibiting apoptosis when present at an appropriate concentration. Higher levels of H(2)S can interfere with the physiological responses of the respiratory system and central nervous system carried out by mammalian cells. This is associated with many illnesses, such as diabetes, mental decline, cardiovascular diseases, and cancer. Therefore, the accurate measurement of H(2)S in organisms and the environment is of great significance for in-depth studies of the pathogenesis of related diseases. In this contribution, a new coumarin-carbazole-based fluorescent probe, COZ-DNBS, showing a rapid response and large Stokes shift was rationally devised and applied to effectively sense H(2)S in vivo and in vitro. Upon using the probe COZ-DNBS, the established fluorescent platform could detect H(2)S with excellent selectivity, showing 62-fold fluorescence enhancement, a fast-response time (<1 min), high sensitivity (38.6 nM), a large Stokes shift (173 nm), and bright-yellow emission. Importantly, the probe COZ-DNBS works well for monitoring levels of H(2)S in realistic samples, living MCF-7 cells, and zebrafish, showing that COZ-DNBS is a promising signaling tool for H(2)S detection in biosystems. The Royal Society of Chemistry 2022-06-16 /pmc/articles/PMC9201871/ /pubmed/35765346 http://dx.doi.org/10.1039/d2ra00997h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Tong, Xu
Hao, Liguo
Song, Xue
Wu, Shuang
Zhang, Na
Li, Zhongtao
Chen, Song
Hou, Peng
A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title_full A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title_fullStr A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title_full_unstemmed A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title_short A fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living MCF-7 cells and zebrafish
title_sort fast-responsive fluorescent probe based on a styrylcoumarin dye for visualizing hydrogen sulfide in living mcf-7 cells and zebrafish
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9201871/
https://www.ncbi.nlm.nih.gov/pubmed/35765346
http://dx.doi.org/10.1039/d2ra00997h
work_keys_str_mv AT tongxu afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT haoliguo afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT songxue afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT wushuang afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT zhangna afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT lizhongtao afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT chensong afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT houpeng afastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT tongxu fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT haoliguo fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT songxue fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT wushuang fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT zhangna fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT lizhongtao fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT chensong fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish
AT houpeng fastresponsivefluorescentprobebasedonastyrylcoumarindyeforvisualizinghydrogensulfideinlivingmcf7cellsandzebrafish