Understanding the uptake and transport dynamics of engineered nanomaterials (ENMs) by mammalian cells is an important step in designing next-generation drug delivery systems. However, to track these materials and their cellular interactions, current studies often depend on surface-bound fluorescent labels, which have the potential to alter native cellular recognition events. As a result, there is still a need to develop methods capable of monitoring ENM-cell interactions independent of surface modification. Addressing these concerns, here we show how scatter enhanced phase contrast (SEPC) microscopy can be extended to work as a generalized label-free approach for monitoring nanoparticle uptake and transport dynamics. To determine which mate...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...
Cellular uptake behavior of iron oxide nanoparticles is investigated using a transmission near-field...
Nanoparticles (NPs) are gaining increasing attention for potential application in medicine; conseque...
Understanding the uptake and transport dynamics of engineered nanomaterials (ENMs) by mammalian cell...
Differential interference contrast (DIC) microscopy is a far-field as well as wide-field optical ima...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
<div><p>Understanding of nanoparticle-bio-interactions within living cells requires knowledge about ...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
International audienceBACKGROUND: The uptake of nanoparticles (NPs) by cells remains to be better ch...
So far, little is known about the interaction of nanoparticles with lung cells, the entering of nano...
Cellular uptake behavior of iron oxide nanoparticles is investigated using a transmission near-field...
Interaction of functional nanoparticles with cells and model biomembranes has been widely studied to...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...
Cellular uptake behavior of iron oxide nanoparticles is investigated using a transmission near-field...
Nanoparticles (NPs) are gaining increasing attention for potential application in medicine; conseque...
Understanding the uptake and transport dynamics of engineered nanomaterials (ENMs) by mammalian cell...
Differential interference contrast (DIC) microscopy is a far-field as well as wide-field optical ima...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
<div><p>Understanding of nanoparticle-bio-interactions within living cells requires knowledge about ...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
International audienceBACKGROUND: The uptake of nanoparticles (NPs) by cells remains to be better ch...
So far, little is known about the interaction of nanoparticles with lung cells, the entering of nano...
Cellular uptake behavior of iron oxide nanoparticles is investigated using a transmission near-field...
Interaction of functional nanoparticles with cells and model biomembranes has been widely studied to...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...
Cellular uptake behavior of iron oxide nanoparticles is investigated using a transmission near-field...
Nanoparticles (NPs) are gaining increasing attention for potential application in medicine; conseque...