TY - JOUR
T1 - Ligand-displacement-based two-photon fluorogenic probe for visualizing mercapto biomolecules in live cells,
T2 - Drosophila brains and zebrafish
AU - Zhao, Yanfei
AU - Ni, Yun
AU - Wang, Liulin
AU - Xu, Chenchen
AU - Xin, Chenqi
AU - Zhang, Chengwu
AU - Zhang, Gaobin
AU - Xie, Xiaoji
AU - Li, Lin
AU - Huang, Wei
N1 - Publisher Copyright:
© 2018 The Royal Society of Chemistry.
PY - 2018/7/21
Y1 - 2018/7/21
N2 - Investigating the change in expression level of mercapto biomolecules (GSH/Cys/Hcy) necessitates a rapid detection method for a series of physiological and pathological processes. Herein, we present a ligand-displacement-based two-photon fluorogenic probe based on an Fe(iii) complex, TPFeS, which is a GSH/Cys/Hcy rapid detection fluorogenic probe for in vitro analysis and live cell/tissue/in vivo imaging. The "in situ" probe is non-fluorescent and was prepared from a 1:2 ratio of Fe(iii) and TPS, a novel two-photon (TP) fluorophore with excellent one-photon (OP) and TP properties under physiological conditions, as a fluorescent ligand. This probe shows a rapid and remarkable fluorescence restoration (OFF-ON) property due to the ligand-displacement reaction of mercapto biomolecules in a recyclable manner in vitro. A significant two-photon action cross-section, good selectivity for biothiols, low cytotoxicity, and insensitivity to pH over the biologically relevant pH range allowed the direct visualization of mercapto biomolecules at different levels between normal/drug-treated live cells, as well as in Drosophila brain tissues/zebrafish based on the use of two-photon fluorescence microscopy.
AB - Investigating the change in expression level of mercapto biomolecules (GSH/Cys/Hcy) necessitates a rapid detection method for a series of physiological and pathological processes. Herein, we present a ligand-displacement-based two-photon fluorogenic probe based on an Fe(iii) complex, TPFeS, which is a GSH/Cys/Hcy rapid detection fluorogenic probe for in vitro analysis and live cell/tissue/in vivo imaging. The "in situ" probe is non-fluorescent and was prepared from a 1:2 ratio of Fe(iii) and TPS, a novel two-photon (TP) fluorophore with excellent one-photon (OP) and TP properties under physiological conditions, as a fluorescent ligand. This probe shows a rapid and remarkable fluorescence restoration (OFF-ON) property due to the ligand-displacement reaction of mercapto biomolecules in a recyclable manner in vitro. A significant two-photon action cross-section, good selectivity for biothiols, low cytotoxicity, and insensitivity to pH over the biologically relevant pH range allowed the direct visualization of mercapto biomolecules at different levels between normal/drug-treated live cells, as well as in Drosophila brain tissues/zebrafish based on the use of two-photon fluorescence microscopy.
UR - http://www.scopus.com/inward/record.url?scp=85049690280&partnerID=8YFLogxK
U2 - 10.1039/c8an00453f
DO - 10.1039/c8an00453f
M3 - 文章
C2 - 29916502
AN - SCOPUS:85049690280
SN - 0003-2654
VL - 143
SP - 3433
EP - 3441
JO - The Analyst
JF - The Analyst
IS - 14
ER -