Matches in SemOpenAlex for { <https://semopenalex.org/work/W2904864720> ?p ?o ?g. }
- W2904864720 endingPage "130" @default.
- W2904864720 startingPage "122" @default.
- W2904864720 abstract "Abstract A novel quinoline BODIPY fluorescent probe Q-BODIPY was designed. Probe Q-BODIPY combined 8-hydroxyquinoline-BODIPY with 2,4-dinitrobenzenesulfonyl group as a new biothiols-detection fluorescent probe. After addition of biothiols, probe Q-BODIPY responds to Cys quickly and displays a manifest fluorescent signal at 521 nm with quantum yield increased from 0.02 to 0.16 and detection limit was determined to be 33 nM with great goodness of fit at 0.98. Furthermore, The response of probe Q-BODIPY with Cys also could be observed with “naked eyes” in 3 min. The cleavage of the suphonate accelerated by hydrogen bonds was proposed according the theoretical calculation and acid-base interaction. Additionally, The probe works excellently within a wide pH range of 5.9–10.1 and was used for selective imaging of biothiols in HepG2 cells and zebrafish. These results indicated that the probe could fast sensing different biothiols via different reaction rate of probe Q-BODIPY with these three type of biothiols, which result from hydrogen bonds assistance mechanism, and provide a functional tool for reflecting the changes of biothiols." @default.
- W2904864720 created "2018-12-22" @default.
- W2904864720 creator A5014893272 @default.
- W2904864720 creator A5065775067 @default.
- W2904864720 date "2019-03-01" @default.
- W2904864720 modified "2023-10-18" @default.
- W2904864720 title "A novel quinoline-BODIPY fluorescent probe for fast sensing biothiols via hydrogen bonds assisted-deprotonation mechanism and its application in cells and zebrafish imaging" @default.
- W2904864720 cites W1984505177 @default.
- W2904864720 cites W1985533665 @default.
- W2904864720 cites W1988061203 @default.
- W2904864720 cites W1990484548 @default.
- W2904864720 cites W2002449811 @default.
- W2904864720 cites W2003076361 @default.
- W2904864720 cites W2012848498 @default.
- W2904864720 cites W2023265756 @default.
- W2904864720 cites W2026289840 @default.
- W2904864720 cites W2059016903 @default.
- W2904864720 cites W2069079930 @default.
- W2904864720 cites W2073947952 @default.
- W2904864720 cites W2075157926 @default.
- W2904864720 cites W2076367848 @default.
- W2904864720 cites W2085931823 @default.
- W2904864720 cites W2099607030 @default.
- W2904864720 cites W2106043440 @default.
- W2904864720 cites W2135692925 @default.
- W2904864720 cites W2158496331 @default.
- W2904864720 cites W2160759026 @default.
- W2904864720 cites W2204491107 @default.
- W2904864720 cites W2297764225 @default.
- W2904864720 cites W2317580739 @default.
- W2904864720 cites W2345169835 @default.
- W2904864720 cites W2532422654 @default.
- W2904864720 cites W2568919844 @default.
- W2904864720 cites W2585213217 @default.
- W2904864720 cites W2607307579 @default.
- W2904864720 cites W2610218591 @default.
- W2904864720 cites W2619262198 @default.
- W2904864720 cites W2662739730 @default.
- W2904864720 cites W2724242272 @default.
- W2904864720 cites W2729379414 @default.
- W2904864720 cites W2729719544 @default.
- W2904864720 cites W2735380129 @default.
- W2904864720 cites W2742490537 @default.
- W2904864720 cites W2745522568 @default.
- W2904864720 cites W2768240151 @default.
- W2904864720 cites W2781991428 @default.
- W2904864720 cites W2785978920 @default.
- W2904864720 cites W2789482578 @default.
- W2904864720 cites W2793859000 @default.
- W2904864720 cites W2797348449 @default.
- W2904864720 cites W2809536600 @default.
- W2904864720 cites W2891941916 @default.
- W2904864720 cites W2893904079 @default.
- W2904864720 cites W853596287 @default.
- W2904864720 doi "https://doi.org/10.1016/j.jphotochem.2018.12.013" @default.
- W2904864720 hasPublicationYear "2019" @default.
- W2904864720 type Work @default.
- W2904864720 sameAs 2904864720 @default.
- W2904864720 citedByCount "29" @default.
- W2904864720 countsByYear W29048647202019 @default.
- W2904864720 countsByYear W29048647202020 @default.
- W2904864720 countsByYear W29048647202021 @default.
- W2904864720 countsByYear W29048647202022 @default.
- W2904864720 countsByYear W29048647202023 @default.
- W2904864720 crossrefType "journal-article" @default.
- W2904864720 hasAuthorship W2904864720A5014893272 @default.
- W2904864720 hasAuthorship W2904864720A5065775067 @default.
- W2904864720 hasConcept C104317684 @default.
- W2904864720 hasConcept C111472728 @default.
- W2904864720 hasConcept C112887158 @default.
- W2904864720 hasConcept C118629725 @default.
- W2904864720 hasConcept C120665830 @default.
- W2904864720 hasConcept C121332964 @default.
- W2904864720 hasConcept C12554922 @default.
- W2904864720 hasConcept C138885662 @default.
- W2904864720 hasConcept C145148216 @default.
- W2904864720 hasConcept C178790620 @default.
- W2904864720 hasConcept C185592680 @default.
- W2904864720 hasConcept C2776309666 @default.
- W2904864720 hasConcept C2776878037 @default.
- W2904864720 hasConcept C2781374752 @default.
- W2904864720 hasConcept C32909587 @default.
- W2904864720 hasConcept C55493867 @default.
- W2904864720 hasConcept C75473681 @default.
- W2904864720 hasConcept C86803240 @default.
- W2904864720 hasConcept C89611455 @default.
- W2904864720 hasConcept C91881484 @default.
- W2904864720 hasConceptScore W2904864720C104317684 @default.
- W2904864720 hasConceptScore W2904864720C111472728 @default.
- W2904864720 hasConceptScore W2904864720C112887158 @default.
- W2904864720 hasConceptScore W2904864720C118629725 @default.
- W2904864720 hasConceptScore W2904864720C120665830 @default.
- W2904864720 hasConceptScore W2904864720C121332964 @default.
- W2904864720 hasConceptScore W2904864720C12554922 @default.
- W2904864720 hasConceptScore W2904864720C138885662 @default.
- W2904864720 hasConceptScore W2904864720C145148216 @default.
- W2904864720 hasConceptScore W2904864720C178790620 @default.
- W2904864720 hasConceptScore W2904864720C185592680 @default.