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Flavone-based ESIPT ratiometric chemodosimeter for detection of cysteine in living cells.


ABSTRACT: We have designed and synthesized a novel ratiometric fluorescent chemodosimeter MHF-based ESIPT process for specific detection of cysteine among the biological thiols. The probe MHF shows very weak blue fluorescence under UV excitation. Upon addition of cysteine (Cys), the reaction of Cys with MHF induces acrylate hydrolysis, thereby enabling the ESIPT process to shift the weak blue emission to a strong green emission with about 20-fold enhancement. We utilized (1)H NMR spectra to elucidate the fluorescence sensing mechanism. Moreover, the cellular imaging experiment indicated the MHF possessed excellent selectivity, low cytotoxicity, and desirable cell permeability for biological applications.

SUBMITTER: Liu B 

PROVIDER: S-EPMC3985879 | biostudies-other | 2014 Mar

REPOSITORIES: biostudies-other

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Flavone-based ESIPT ratiometric chemodosimeter for detection of cysteine in living cells.

Liu Bin B   Wang Junfeng J   Zhang Ge G   Bai Ruke R   Pang Yi Y  

ACS applied materials & interfaces 20140306 6


We have designed and synthesized a novel ratiometric fluorescent chemodosimeter MHF-based ESIPT process for specific detection of cysteine among the biological thiols. The probe MHF shows very weak blue fluorescence under UV excitation. Upon addition of cysteine (Cys), the reaction of Cys with MHF induces acrylate hydrolysis, thereby enabling the ESIPT process to shift the weak blue emission to a strong green emission with about 20-fold enhancement. We utilized (1)H NMR spectra to elucidate the  ...[more]

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