Nanoparticle interacts with live cells depending on their surface chemistry, enters into cell via endocytosis, and is commonly trafficked to an endosome/lysozome that restricts subcellular targeting options. Here we show that nanoparticle surface chemistry can be tuned to alter their cell uptake mechanism and subcellular trafficking. Quantum dot based nanoprobes of 20–30 nm hydrodynamic diameters have been synthesized with tunable surface charge (between +15 mV to −25 mV) and lipophilicity to influence their cellular uptake processes and subcellular trafficking. It is observed that cationic nanoprobe electrostatically interacts with cell membrane and enters into cell via clathrin-mediated endocytosis. At lower surface charge (between +10 mV...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Nanoparticle interacts with live cells depending on their surface chemistry, enters into cell via en...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Nanoparticle interacts with live cells depending on their surface chemistry, enters into cell via en...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Following exposure to biological milieus (e.g. after systemic administration), nanoparticles (NPs) g...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...