Cargando…

A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells

Sulfur dioxide, known as an environmental pollutant, produced during industrial productions is also a common food additive that is permitted worldwide. In living organisms, sulfur dioxide forms hydrates of sulfite (SO(2)·H(2)O), bisulfite (HSO(3)(−)) and sulfite (SO(3)(2−)) under physiological pH co...

Descripción completa

Detalles Bibliográficos
Autores principales: Deng, Zhenmei, Li, Fangzhao, Zhao, Guomin, Yang, Wenge, Hu, Yonghong
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/PMC9055423/
https://www.ncbi.nlm.nih.gov/pubmed/35519787
http://dx.doi.org/10.1039/d0ra01233e
_version_ 1784697408010059776
author Deng, Zhenmei
Li, Fangzhao
Zhao, Guomin
Yang, Wenge
Hu, Yonghong
author_facet Deng, Zhenmei
Li, Fangzhao
Zhao, Guomin
Yang, Wenge
Hu, Yonghong
author_sort Deng, Zhenmei
collection PubMed
description Sulfur dioxide, known as an environmental pollutant, produced during industrial productions is also a common food additive that is permitted worldwide. In living organisms, sulfur dioxide forms hydrates of sulfite (SO(2)·H(2)O), bisulfite (HSO(3)(−)) and sulfite (SO(3)(2−)) under physiological pH conditions; these three exist in a dynamic balance and play a role in maintaining redox balance, further participating in a wide range of physiological and pathological processes. On the basis of the differences in nucleophilicity between SO(3)(2−) and HSO(3)(−), for the first time, we built a mitochondrion-targeted dual-site fluorescent probe (Mito-CDTH-CHO) based on benzopyran for the highly specific detection of SO(3)(2−) and HSO(3)(−) with two diverse emission channels. Mito-CDTH-CHO can discriminatively respond to the levels of HSO(3)(−) and SO(3)(2−). Besides, its advantages of low cytotoxicity, superior biocompatibility and excellent mitochondrial enrichment ability contribute to the detection and observation of the distribution of sulfur dioxide derivatives in living organisms as well as allowing further studies on the physiological functions of sulfur dioxide.
format Online
Article
Text
id pubmed-9055423
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90554232022-05-04 A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells Deng, Zhenmei Li, Fangzhao Zhao, Guomin Yang, Wenge Hu, Yonghong RSC Adv Chemistry Sulfur dioxide, known as an environmental pollutant, produced during industrial productions is also a common food additive that is permitted worldwide. In living organisms, sulfur dioxide forms hydrates of sulfite (SO(2)·H(2)O), bisulfite (HSO(3)(−)) and sulfite (SO(3)(2−)) under physiological pH conditions; these three exist in a dynamic balance and play a role in maintaining redox balance, further participating in a wide range of physiological and pathological processes. On the basis of the differences in nucleophilicity between SO(3)(2−) and HSO(3)(−), for the first time, we built a mitochondrion-targeted dual-site fluorescent probe (Mito-CDTH-CHO) based on benzopyran for the highly specific detection of SO(3)(2−) and HSO(3)(−) with two diverse emission channels. Mito-CDTH-CHO can discriminatively respond to the levels of HSO(3)(−) and SO(3)(2−). Besides, its advantages of low cytotoxicity, superior biocompatibility and excellent mitochondrial enrichment ability contribute to the detection and observation of the distribution of sulfur dioxide derivatives in living organisms as well as allowing further studies on the physiological functions of sulfur dioxide. The Royal Society of Chemistry 2020-07-14 /pmc/articles/PMC9055423/ /pubmed/35519787 http://dx.doi.org/10.1039/d0ra01233e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Deng, Zhenmei
Li, Fangzhao
Zhao, Guomin
Yang, Wenge
Hu, Yonghong
A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title_full A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title_fullStr A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title_full_unstemmed A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title_short A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO(3)(2−) and HSO(3)(−) in living HepG-2 cells
title_sort mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of so(3)(2−) and hso(3)(−) in living hepg-2 cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055423/
https://www.ncbi.nlm.nih.gov/pubmed/35519787
http://dx.doi.org/10.1039/d0ra01233e
work_keys_str_mv AT dengzhenmei amitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT lifangzhao amitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT zhaoguomin amitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT yangwenge amitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT huyonghong amitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT dengzhenmei mitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT lifangzhao mitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT zhaoguomin mitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT yangwenge mitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells
AT huyonghong mitochondriontargeteddualsitefluorescentprobeforthediscriminativedetectionofso32andhso3inlivinghepg2cells