Nanoparticles provide a promising approach for the targeted delivery of therapeutic, diagnostic and imaging agents in the body. However, it is not yet fully understood how the physico-chemical properties of the nanoparticles influence cellular association and uptake. Cellular association experiments are routinely performed in an effort to determine how nanoparticle properties impact the rate of nanoparticle-cell association. To compare experiments in a meaningful manner, the association data must be normalized by the amount of nanoparticles that arrive at the cells, a measure referred to as the delivered dose. The delivered dose is calculated from a model of nanoparticle transport through fluid. A standard assumption is that all nanoparticl...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
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...
Understanding nanoparticle uptake by biological cells is fundamentally important to wide-ranging fie...
Contains model and solution derivation, method of solution, experimental details and experimental da...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Background: Particle size is a key parameter for drug-delivery nanoparticle design. It is believed t...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Nano-engineered particles have the potential to enhance therapeutic success and reduce toxicity-base...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
Background: The constant increase of the use of nanomaterials in consumer products is making increa...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
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...
Understanding nanoparticle uptake by biological cells is fundamentally important to wide-ranging fie...
Contains model and solution derivation, method of solution, experimental details and experimental da...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Background: Particle size is a key parameter for drug-delivery nanoparticle design. It is believed t...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Drug delivery using nano-sized carriers holds tremendous potential for curing a range of diseases. T...
Nano-engineered particles have the potential to enhance therapeutic success and reduce toxicity-base...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
Background: The constant increase of the use of nanomaterials in consumer products is making increa...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
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...