ESIPT-based ratiometric fluorescence probe for the intracellular imaging of peroxynitrite

In this work, we set out to develop an endoplasmic reticulum (ER) directed ESIPT-based ONOO − ratiometric fluorescent probe ( ABAH-LW ). ABAH-LW was synthesized in four steps and found to have a high sensitivity and selectivity towards the detection of ONOO − . ABAH-LW was able to detect low concent...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2018-09, Vol.54 (71), p.9953-9956
Hauptverfasser: Wu, Luling, Wang, Yang, Weber, Maria, Liu, Liyuan, Sedgwick, Adam C, Bull, Steven D, Huang, Chusen, James, Tony D
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Sprache:eng
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Zusammenfassung:In this work, we set out to develop an endoplasmic reticulum (ER) directed ESIPT-based ONOO − ratiometric fluorescent probe ( ABAH-LW ). ABAH-LW was synthesized in four steps and found to have a high sensitivity and selectivity towards the detection of ONOO − . ABAH-LW was able to detect low concentrations of ONOO − (limit of detection = 21.4 nM) within seconds producing a ratiometric change in fluorescence intensity. ABAH-LW further demonstrated the ability to ratiometrically image endogenous and exogenous ONOO − in HeLa cells. Moreover, co-localization experiments were carried out using commercially available ER-Tracker Red, Lyso-Tracker Red and Mito-Tracker-Red, which were co-stained with ABAH-LW in HeLa cells. For ER-Tracker Red, Pearson's correlation co-efficient of 0.93 was determined and 3D surface plot analysis illustrated a large overlap between ABAH-LW and ER-Tracker Red using both red and blue channels. In addition some co-localisation with Mito-Tracker Red and ABAH-LW was observed (0.73). In this work, we set out to develop an ER directed ESIPT-based ONOO − ratiometric fluorescent probe ( ABAH-LW ).
ISSN:1359-7345
1364-548X
DOI:10.1039/c8cc04919j