International audienceBACKGROUND: The uptake of nanoparticles (NPs) by cells remains to be better characterized in order to understand the mechanisms of potential NP toxicity as well as for a reliable risk assessment. Real NP uptake is still difficult to evaluate because of the adsorption of NPs on the cellular surface.RESULTS: Here we used two approaches to distinguish adsorbed fluorescently labeled NPs from the internalized ones. The extracellular fluorescence was either quenched by Trypan Blue or the uptake was analyzed using imaging flow cytometry. We used this novel technique to define the inside of the cell to accurately study the uptake of fluorescently labeled (SiO2) and even non fluorescent but light diffracting NPs (TiO2). Time co...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nanoparticles have opened new exciting avenues for both diagnostic and therapeutic applications in h...
PURPOSE: The internalization of nanoparticles into cells is critical for effective nanoparticle medi...
International audienceBACKGROUND: The uptake of nanoparticles (NPs) by cells remains to be better ch...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
Background: Significant progress of nanotechnology, including in particular biomedical and pharmaceu...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
The development of safe engineered nanoparticles (NPs) requires a detailed understanding of their in...
The recent use of nanoparticles (NPs) as carriers for imaging and delivery of therapeutics agents in...
Nanoparticulate systems have emerged as valuable tools in vaccine delivery through their ability to ...
Nanoparticles have opened new exciting avenues for both diagnostic and therapeutic applications in h...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nanoparticles have opened new exciting avenues for both diagnostic and therapeutic applications in h...
PURPOSE: The internalization of nanoparticles into cells is critical for effective nanoparticle medi...
International audienceBACKGROUND: The uptake of nanoparticles (NPs) by cells remains to be better ch...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
Background: Significant progress of nanotechnology, including in particular biomedical and pharmaceu...
The uptake of nanomaterials into different cell types is a central pharmacological issue for the det...
The development of safe engineered nanoparticles (NPs) requires a detailed understanding of their in...
The recent use of nanoparticles (NPs) as carriers for imaging and delivery of therapeutics agents in...
Nanoparticulate systems have emerged as valuable tools in vaccine delivery through their ability to ...
Nanoparticles have opened new exciting avenues for both diagnostic and therapeutic applications in h...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nanoparticles have opened new exciting avenues for both diagnostic and therapeutic applications in h...
PURPOSE: The internalization of nanoparticles into cells is critical for effective nanoparticle medi...