Assessing dose in nanoparticle-cell interactions is inherently difficult due to a complex multiplicity of possible mechanisms and metrics controlling particle uptake. The fundamental unit of nanoparticle dose is the number of particles internalized per cell; we show that this can be obtained for large cell populations that internalize fluorescent nanoparticles by endocytosis, through calibration of cytometry measurements to transmission electron microscopy data. Low-throughput, high-resolution electron imaging of quantum dots in U-2 OS cells is quantified and correlated with high-throughput, low-resolution optical imaging of the nanoparticle-loaded cells. From the correlated data, we obtain probability distribution functions of vesicles per...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
BACKGROUND: Nanoparticles (NPs) are currently used in a wide variety of fields such as technology, m...
For phenotypic behavior to be understood in the context of cell lineage and local environment, prope...
Assessing dose in nanoparticle–cell interactions is inherently difficult due to a complex multiplici...
Semiconductor quantum dot nanoparticles are in demand as optical biomarkers yet the cellular uptake ...
There are an increasing number of potential applications for nanoparticles in clinical medicine, inc...
The application of nanoparticles (NPs) within medicine is of great interest; their innate physicoche...
Understanding nanoparticle uptake by biological cells is fundamentally important to wide-ranging fie...
The delivery of nanoparticles into cells is important in therapeutic applications1, 2, 3 and in nano...
Single cell encoding with quantum dots as live cell optical tracers for deriving proliferation param...
UNLABELLED: Cellular microvesicles and nanovesicles (exosomes) are involved in many disease processe...
AbstractCellular microvesicles and nanovesicles (exosomes) are involved in many disease processes an...
he accurate determination of dose when studying nanoparticlecell in-teractions is essential for quan...
Cellular microvesicles and nanovesicles (exosomes) are involved in many disease processes and have m...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
BACKGROUND: Nanoparticles (NPs) are currently used in a wide variety of fields such as technology, m...
For phenotypic behavior to be understood in the context of cell lineage and local environment, prope...
Assessing dose in nanoparticle–cell interactions is inherently difficult due to a complex multiplici...
Semiconductor quantum dot nanoparticles are in demand as optical biomarkers yet the cellular uptake ...
There are an increasing number of potential applications for nanoparticles in clinical medicine, inc...
The application of nanoparticles (NPs) within medicine is of great interest; their innate physicoche...
Understanding nanoparticle uptake by biological cells is fundamentally important to wide-ranging fie...
The delivery of nanoparticles into cells is important in therapeutic applications1, 2, 3 and in nano...
Single cell encoding with quantum dots as live cell optical tracers for deriving proliferation param...
UNLABELLED: Cellular microvesicles and nanovesicles (exosomes) are involved in many disease processe...
AbstractCellular microvesicles and nanovesicles (exosomes) are involved in many disease processes an...
he accurate determination of dose when studying nanoparticlecell in-teractions is essential for quan...
Cellular microvesicles and nanovesicles (exosomes) are involved in many disease processes and have m...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
BACKGROUND: Nanoparticles (NPs) are currently used in a wide variety of fields such as technology, m...
For phenotypic behavior to be understood in the context of cell lineage and local environment, prope...