Abstract: Quantum dots (QDs) have attracted considerable attention as fluorescent probes for life sciences. The advantages of using QDs in fluorescence-based studies include high brilliance, a narrow emission band allowing multicolor labeling, a chemically active surface for conjugation, and especially, high photostability. Despite these advantageous features, the size of the QDs prevents their free transport across the plasma membrane, limiting their use for specific labeling of intracellular structures. Over the years, various methods have been evaluated to overcome this issue to explore the full potential of the QDs. Thus, in this review, we focused our attention on physical and biochemical QD delivery methods—electroporation, microinjec...
Arg-Gly-Asp-Ser (RGDS), a typical membrane-permeable carrier peptide, was conjugated with mercaptois...
Quantum dots (QDs) have found a wide range of biological applications as fluorophores due to their e...
MULTIMODAL QUANTUM DOTS: DIRECT INTRACELLULAR DELIVERY, PHOTOSENSITIZATION AND CYTOTOXIC EFFECTS\nZh...
Abstract: Quantum dots (QDs) have attracted considerable attention as fluorescent probes for life sc...
The purpose of this communication is to make a bibliographic review of Quantum Dots methods and the...
Semiconductive quantum dots (QDs) with superior optical properties, have been used as unique fluores...
The use of Quantum Dots (QDs) as fluorescent probes for understanding biological functions has emerg...
Arg-Gly-Asp-Ser (RGDS), a typical membrane-permeable carrier peptide, was conjugated with mercaptois...
Incorporate both diagnostic and therapeutic functions into a single nanoscale system is an effective...
Incorporate both diagnostic and therapeutic functions into a single nanoscale system is an effective...
A number of non-viral DNA delivery systems and transfection protocols are under investigation. Howev...
A number of non-viral DNA delivery systems and transfection protocols are under investigation. Howev...
The redox state of cells is fundamental in regulating many essential cellular functions. In cancer c...
The application of semiconductor nanocrystals known as quantum dots (QDs) to biology in the past few...
Quantum dots (QDs) have found a wide range of biological applications as fluorophores due to their e...
Arg-Gly-Asp-Ser (RGDS), a typical membrane-permeable carrier peptide, was conjugated with mercaptois...
Quantum dots (QDs) have found a wide range of biological applications as fluorophores due to their e...
MULTIMODAL QUANTUM DOTS: DIRECT INTRACELLULAR DELIVERY, PHOTOSENSITIZATION AND CYTOTOXIC EFFECTS\nZh...
Abstract: Quantum dots (QDs) have attracted considerable attention as fluorescent probes for life sc...
The purpose of this communication is to make a bibliographic review of Quantum Dots methods and the...
Semiconductive quantum dots (QDs) with superior optical properties, have been used as unique fluores...
The use of Quantum Dots (QDs) as fluorescent probes for understanding biological functions has emerg...
Arg-Gly-Asp-Ser (RGDS), a typical membrane-permeable carrier peptide, was conjugated with mercaptois...
Incorporate both diagnostic and therapeutic functions into a single nanoscale system is an effective...
Incorporate both diagnostic and therapeutic functions into a single nanoscale system is an effective...
A number of non-viral DNA delivery systems and transfection protocols are under investigation. Howev...
A number of non-viral DNA delivery systems and transfection protocols are under investigation. Howev...
The redox state of cells is fundamental in regulating many essential cellular functions. In cancer c...
The application of semiconductor nanocrystals known as quantum dots (QDs) to biology in the past few...
Quantum dots (QDs) have found a wide range of biological applications as fluorophores due to their e...
Arg-Gly-Asp-Ser (RGDS), a typical membrane-permeable carrier peptide, was conjugated with mercaptois...
Quantum dots (QDs) have found a wide range of biological applications as fluorophores due to their e...
MULTIMODAL QUANTUM DOTS: DIRECT INTRACELLULAR DELIVERY, PHOTOSENSITIZATION AND CYTOTOXIC EFFECTS\nZh...