In this paper, the use of biocompatible carbon dots (C-Dots) as caps on the surface of mesoporous silica nanoparticles (MSPs) for the design of intelligent on-demand molecular delivery and cell imaging system is described. These C-Dots-attached MSPs exhibited low cytotoxicity toward the cells and strong luminescence both in vitro and in vivo. A further loading of anticancer drug (DOX) endowed the fluorescent material with therapeutic functions. It was found that changing the pH to mildly acidic condition at physiological temperature caused the dissociation of the C-Dots@MSPs complex and release of a large number of DOX from the nanospheres. Moreover, the DOX-loaded nanocomposites exhibited a remarkably enhanced efficiency in killing cancer ...
Cancer theranostics has been a rising field toward personalized cancer therapy for the benefit of pa...
Fluorescent carbon dots (small carbon nanoparticles with the surface passivated by oligomeric PEG mo...
The synthesis and full characterization of a family of sustainable luminescent nanoparticles, CdTeQD...
Designing bioresponsive nanocarriers for controlled and efficient intracellular drug release for can...
A distinctive and personalized nanocarrier is described here for controlled and targeted antitumor d...
On page 1401 X. Chen, X. Zhang, Y. Zhou, and co-workers describe the synthesis of mesoporous silica ...
Mesoporous silica nanocarriers with pH-switchable antifouling zwitterionic surface, enzyme responsiv...
Carbon nanoparticles become photoluminescent upon surface passivation with oligomeric polymer chains...
Surgery, radiotherapy, and chemotherapy are inevitable for most cancer patients, but these treatment...
Abstract Samson Dada and Dr. Hua Mei, Department of Chemistry, College of Arts and Sciences, East Te...
Multifunctional nanocarrier-based theranostics have been proposed to overcome some key problems in c...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Specific targeting and phototriggered therapy in mouse model have recently emerged as the starting p...
265-270The development of combination therapy for cancer treatment has attracted considerable attent...
Cancer theranostics has been a rising field toward personalized cancer therapy for the benefit of pa...
Fluorescent carbon dots (small carbon nanoparticles with the surface passivated by oligomeric PEG mo...
The synthesis and full characterization of a family of sustainable luminescent nanoparticles, CdTeQD...
Designing bioresponsive nanocarriers for controlled and efficient intracellular drug release for can...
A distinctive and personalized nanocarrier is described here for controlled and targeted antitumor d...
On page 1401 X. Chen, X. Zhang, Y. Zhou, and co-workers describe the synthesis of mesoporous silica ...
Mesoporous silica nanocarriers with pH-switchable antifouling zwitterionic surface, enzyme responsiv...
Carbon nanoparticles become photoluminescent upon surface passivation with oligomeric polymer chains...
Surgery, radiotherapy, and chemotherapy are inevitable for most cancer patients, but these treatment...
Abstract Samson Dada and Dr. Hua Mei, Department of Chemistry, College of Arts and Sciences, East Te...
Multifunctional nanocarrier-based theranostics have been proposed to overcome some key problems in c...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Specific targeting and phototriggered therapy in mouse model have recently emerged as the starting p...
265-270The development of combination therapy for cancer treatment has attracted considerable attent...
Cancer theranostics has been a rising field toward personalized cancer therapy for the benefit of pa...
Fluorescent carbon dots (small carbon nanoparticles with the surface passivated by oligomeric PEG mo...
The synthesis and full characterization of a family of sustainable luminescent nanoparticles, CdTeQD...