Aim: We aim to develop folic acid (FA)-conjugated cationic Ag2S near-infrared quantum dots (NIRQDs) for the delivery of doxorubicin (DOX) selectively to folate receptor (FR)-positive cancer cells to achieve enhanced drug efficacy and optical tracking in the NIR region. Materials & methods: Cationic Ag2S NIRQDs were decorated with FA using a PEG bridge and loaded with DOX. In vitro studies were performed on FR-positive human cervical carcinoma cells and FR-negative A549 cells. Results: Significantly higher uptake of DOX by human cervical carcinoma cells cells and a greater therapeutic effect along with a strong intracellular optical signal were obtained with DOX-loaded FA-conjugated Ag2S NIRQDs. Conclusion: These Ag2S NIRQDs are promisin...
Despite the recent advances in cancer therapy, the successful detections and treatments of cancer st...
Abstract In this study, we report the preparation, lumi-nescence, and targeting properties of folic ...
In this paper, we demonstrate the preparation of monodispersed quantum dots (QDs) as near-infrared (...
Aim: We aim to develop folic acid (FA)-conjugated cationic Ag2S near-infrared quantum dots (NIRQDs) ...
Nanoscaled quantum dots (QDs), with unique optical properties have been used for the development of ...
Introduction:Luminescent semiconductor quantum dot research in the field of medicine and biotechnolo...
Real-time and objective feedback of therapeutic efficacies would be of great value for tumor treatme...
A one-step approach towards the synthesis of folic acid (FA) coated silver nanoparticles (AgNPs) and...
A one-step approach towards the synthesis of folic acid (FA) coated silver nanoparticles (AgNPs) and...
Quantum dots (QDs) encapsulated with high affinity ligands, specifically binding organic ligands, su...
Biological systems have high transparence to 700–1100-nm near-infrared (NIR) light. Black phosphorus...
Background:Quantum dots (QDs) bring new insights in cancer theranostics. Exceptional brightness toge...
Designing bioresponsive nanocarriers for controlled and efficient intracellular drug release for can...
Near-infrared (NIR) emitting semiconductor quantum dots (QDs) have emerged as a new class of fluores...
targeting specificity are likely to find important appli-cations in bioanalysis, biomedicine, and cl...
Despite the recent advances in cancer therapy, the successful detections and treatments of cancer st...
Abstract In this study, we report the preparation, lumi-nescence, and targeting properties of folic ...
In this paper, we demonstrate the preparation of monodispersed quantum dots (QDs) as near-infrared (...
Aim: We aim to develop folic acid (FA)-conjugated cationic Ag2S near-infrared quantum dots (NIRQDs) ...
Nanoscaled quantum dots (QDs), with unique optical properties have been used for the development of ...
Introduction:Luminescent semiconductor quantum dot research in the field of medicine and biotechnolo...
Real-time and objective feedback of therapeutic efficacies would be of great value for tumor treatme...
A one-step approach towards the synthesis of folic acid (FA) coated silver nanoparticles (AgNPs) and...
A one-step approach towards the synthesis of folic acid (FA) coated silver nanoparticles (AgNPs) and...
Quantum dots (QDs) encapsulated with high affinity ligands, specifically binding organic ligands, su...
Biological systems have high transparence to 700–1100-nm near-infrared (NIR) light. Black phosphorus...
Background:Quantum dots (QDs) bring new insights in cancer theranostics. Exceptional brightness toge...
Designing bioresponsive nanocarriers for controlled and efficient intracellular drug release for can...
Near-infrared (NIR) emitting semiconductor quantum dots (QDs) have emerged as a new class of fluores...
targeting specificity are likely to find important appli-cations in bioanalysis, biomedicine, and cl...
Despite the recent advances in cancer therapy, the successful detections and treatments of cancer st...
Abstract In this study, we report the preparation, lumi-nescence, and targeting properties of folic ...
In this paper, we demonstrate the preparation of monodispersed quantum dots (QDs) as near-infrared (...