2021
DOI: 10.1016/j.saa.2020.119041
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An ICT-based fluorescent probe guided by theoretical calculation for selectively mapping endogenous GSH in living cells

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Cited by 14 publications
(2 citation statements)
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“…Second, the photoluminescence properties, especially high QY, should be reckoned 154 - 163 . Based on the photochemical mechanisms such as PET 164 - 167 , FRET 168 - 170 , ICT 171 - 173 , fluorescent probes with long emission wavelengths will be developed continuously. Additionally, the QY and photochemical stability are critical for the usefulness of the fluorescent probes.…”
Section: Conclusion and Perspectivementioning
confidence: 99%
“…Second, the photoluminescence properties, especially high QY, should be reckoned 154 - 163 . Based on the photochemical mechanisms such as PET 164 - 167 , FRET 168 - 170 , ICT 171 - 173 , fluorescent probes with long emission wavelengths will be developed continuously. Additionally, the QY and photochemical stability are critical for the usefulness of the fluorescent probes.…”
Section: Conclusion and Perspectivementioning
confidence: 99%
“…[35][36][37][38] From the perspective of molecular design, the reaction between the probe and biothiols should be reversible. Among the extensively studied reaction mechanisms for biothiol detection, such as nucleophilic substitution, [39][40][41] nucleophilic addition and cyclization, [42][43][44] Michael addition, [36][37][38] and multisite reaction strategy, [45][46][47] Michael addition is more reasonable to build a reversible probe credited to its nature of reversibility. Wang and coworkers reported the rst uorescent probe ThiolQuant Green (TQ Green) for quantitative detection of GSH in living cells through carefully adjusting the properties of the Michael acceptor.…”
Section: Introductionmentioning
confidence: 99%