Hydrogen sulfide (H2S), being an important gaseous signaling molecule, has been gaining increasing attention for its involvement in a wide range of physiological processes. Herein, we developed a novel fluorescence turn-on nanoprobe for selective and sensitive detection of H2S based on graphene quantum dots (GQDs) conjugated with (2,4-dinitrophenoxy)tyrosine (DNPTYR). Taking advantage of its high fluorescence quantum yield, biocompatibility, photostability, and ease to be uptaken by cells, the GQD-based fluorescence probe was further employed for real-time monitoring of the triggered dynamic change of the intracellular H2S level in live cells.MOE (Min. of Education, S’pore)Accepted versio
The development of nanoprobes suitable for two-photon microscopy techniques is highly desirable for ...
Hydrogen sulfide has emerged as an important biological messenger and much attention has been paid t...
Monitoring cellular redox homeostasis is critical to the understanding of many physiological functio...
The simple, sensitive, and specific detection of hydrogen sulfide (H2S) is of great importance becau...
A facile assay method for the highly sensitive and selective sensing of biothiols based on graphene ...
Hydrogen sulfide (H2S) has been recognized as one of most important gaseous signaling molecules medi...
Herein, we report a turn-on fluorimetric nanoprobe for intracellular glutathione (GSH) imaging. The ...
Hydrogen sulphide is a gaseous neurotransmitter responsible for neuronal function and controls vast ...
A novel fluorescence probe, HBTSeSe, was designed and synthesized for the detection of H2S with a do...
A fluorescent probe for the sensitive and selective determination of sulfide ions is presented. It i...
Hydrogen sulfide (H2S) is an important gaseous signaling agent mediated by many physiological proces...
In this work, a fluorescein-derived fluorescent probe for H2S based on the thiolysis of dinitropheny...
Graphene quantum dots (GQDs) is a zero-dimensional material of the carbon family and considered as a...
Fluorescent probes for hydrogen sulfide have received considerable attention because of the biologic...
Hydrogen sulfide has emerged as an important biological messenger and much attention has been paid t...
The development of nanoprobes suitable for two-photon microscopy techniques is highly desirable for ...
Hydrogen sulfide has emerged as an important biological messenger and much attention has been paid t...
Monitoring cellular redox homeostasis is critical to the understanding of many physiological functio...
The simple, sensitive, and specific detection of hydrogen sulfide (H2S) is of great importance becau...
A facile assay method for the highly sensitive and selective sensing of biothiols based on graphene ...
Hydrogen sulfide (H2S) has been recognized as one of most important gaseous signaling molecules medi...
Herein, we report a turn-on fluorimetric nanoprobe for intracellular glutathione (GSH) imaging. The ...
Hydrogen sulphide is a gaseous neurotransmitter responsible for neuronal function and controls vast ...
A novel fluorescence probe, HBTSeSe, was designed and synthesized for the detection of H2S with a do...
A fluorescent probe for the sensitive and selective determination of sulfide ions is presented. It i...
Hydrogen sulfide (H2S) is an important gaseous signaling agent mediated by many physiological proces...
In this work, a fluorescein-derived fluorescent probe for H2S based on the thiolysis of dinitropheny...
Graphene quantum dots (GQDs) is a zero-dimensional material of the carbon family and considered as a...
Fluorescent probes for hydrogen sulfide have received considerable attention because of the biologic...
Hydrogen sulfide has emerged as an important biological messenger and much attention has been paid t...
The development of nanoprobes suitable for two-photon microscopy techniques is highly desirable for ...
Hydrogen sulfide has emerged as an important biological messenger and much attention has been paid t...
Monitoring cellular redox homeostasis is critical to the understanding of many physiological functio...