Cargando…

Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model

Hydrogen peroxide (H(2)O(2)), an important reactive oxygen species (ROS) with unique destructive oxidation properties, can be produced in lysosomes to fight off pathogens. Although many fluorescent probes have been developed for the detection and imaging of H(2)O(2), the development of a ratiometric...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Rongrong, Peng, Qiyao, Wan, Dan, Yu, Chao, Zhang, Yuan, Hou, Yi, Luo, Quan, Li, Xiong, Zhang, Shuihan, Xie, Lin, Ou, Pinghua, Peng, Yongbo
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/PMC9036682/
https://www.ncbi.nlm.nih.gov/pubmed/35479027
http://dx.doi.org/10.1039/d1ra04026j
_version_ 1784693568635404288
author Zhou, Rongrong
Peng, Qiyao
Wan, Dan
Yu, Chao
Zhang, Yuan
Hou, Yi
Luo, Quan
Li, Xiong
Zhang, Shuihan
Xie, Lin
Ou, Pinghua
Peng, Yongbo
author_facet Zhou, Rongrong
Peng, Qiyao
Wan, Dan
Yu, Chao
Zhang, Yuan
Hou, Yi
Luo, Quan
Li, Xiong
Zhang, Shuihan
Xie, Lin
Ou, Pinghua
Peng, Yongbo
author_sort Zhou, Rongrong
collection PubMed
description Hydrogen peroxide (H(2)O(2)), an important reactive oxygen species (ROS) with unique destructive oxidation properties, can be produced in lysosomes to fight off pathogens. Although many fluorescent probes have been developed for the detection and imaging of H(2)O(2), the development of a ratiometric fluorescent probe for H(2)O(2) detection and imaging in lysosomes and an inflammation model remains rather scarce. Therefore, it is important to develop an efficient tool for monitoring H(2)O(2) in inflamed tissues to evaluate the physiological and pathological relationship between inflammation and lysosomal H(2)O(2). In this work, a new naphthalimide-based lysosome-targeting fluorescent probe (NPT-H(2)O(2)) for ratiometric detection and imaging was developed in vitro and in vivo. The probe exhibited two well-resolved emission peaks separated by 125 nm, rapid response (<40 s), and high selectivity and sensitivity toward H(2)O(2), as well as low cytotoxicity in vitro. Inspired by prominent features of these results, we further successfully applied NPT-H(2)O(2) for H(2)O(2) imaging with a dual-channel in living cells, demonstrating that our probe NPT-H(2)O(2) was targeted in the lysosomes. Finally, NPT-H(2)O(2) was used for H(2)O(2) detection in inflamed tissues and achieved satisfactory results. We predict that our probe can be used as a powerful tool to reveal the relationship between physiology and pathology of inflammation and lysosomal H(2)O(2).
format Online
Article
Text
id pubmed-9036682
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90366822022-04-26 Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model Zhou, Rongrong Peng, Qiyao Wan, Dan Yu, Chao Zhang, Yuan Hou, Yi Luo, Quan Li, Xiong Zhang, Shuihan Xie, Lin Ou, Pinghua Peng, Yongbo RSC Adv Chemistry Hydrogen peroxide (H(2)O(2)), an important reactive oxygen species (ROS) with unique destructive oxidation properties, can be produced in lysosomes to fight off pathogens. Although many fluorescent probes have been developed for the detection and imaging of H(2)O(2), the development of a ratiometric fluorescent probe for H(2)O(2) detection and imaging in lysosomes and an inflammation model remains rather scarce. Therefore, it is important to develop an efficient tool for monitoring H(2)O(2) in inflamed tissues to evaluate the physiological and pathological relationship between inflammation and lysosomal H(2)O(2). In this work, a new naphthalimide-based lysosome-targeting fluorescent probe (NPT-H(2)O(2)) for ratiometric detection and imaging was developed in vitro and in vivo. The probe exhibited two well-resolved emission peaks separated by 125 nm, rapid response (<40 s), and high selectivity and sensitivity toward H(2)O(2), as well as low cytotoxicity in vitro. Inspired by prominent features of these results, we further successfully applied NPT-H(2)O(2) for H(2)O(2) imaging with a dual-channel in living cells, demonstrating that our probe NPT-H(2)O(2) was targeted in the lysosomes. Finally, NPT-H(2)O(2) was used for H(2)O(2) detection in inflamed tissues and achieved satisfactory results. We predict that our probe can be used as a powerful tool to reveal the relationship between physiology and pathology of inflammation and lysosomal H(2)O(2). The Royal Society of Chemistry 2021-07-07 /pmc/articles/PMC9036682/ /pubmed/35479027 http://dx.doi.org/10.1039/d1ra04026j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, Rongrong
Peng, Qiyao
Wan, Dan
Yu, Chao
Zhang, Yuan
Hou, Yi
Luo, Quan
Li, Xiong
Zhang, Shuihan
Xie, Lin
Ou, Pinghua
Peng, Yongbo
Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title_full Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title_fullStr Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title_full_unstemmed Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title_short Construction of a lysosome-targetable ratiometric fluorescent probe for H(2)O(2) tracing and imaging in living cells and an inflamed model
title_sort construction of a lysosome-targetable ratiometric fluorescent probe for h(2)o(2) tracing and imaging in living cells and an inflamed model
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9036682/
https://www.ncbi.nlm.nih.gov/pubmed/35479027
http://dx.doi.org/10.1039/d1ra04026j
work_keys_str_mv AT zhourongrong constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT pengqiyao constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT wandan constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT yuchao constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT zhangyuan constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT houyi constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT luoquan constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT lixiong constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT zhangshuihan constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT xielin constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT oupinghua constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel
AT pengyongbo constructionofalysosometargetableratiometricfluorescentprobeforh2o2tracingandimaginginlivingcellsandaninflamedmodel