Particle_in_Cell-3D is a powerful method to quantify the cellular uptake of nanoparticles. It combines the advantages of confocal fluorescence microscopy with fast and precise semi-automatic image analysis. In this work we present how this method was applied to investigate the impact of 310 nm silica nanoparticles on human vascular endothelial cells (HUVEC) in comparison to a cancer cell line derived from the cervix carcinoma (HeLa). The absolute number of intracellular silica nanoparticles within the first 24 h was determined and shown to be cell type-dependent. As a second case study, Particle_in_Cell-3D was used to assess the uptake kinetics of 8 nm and 30 nm ceria nanoparticles interacting with human microvascular endothelial cells (HME...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
Inorganic nanoparticles such as silica particles offer many exciting possibilities for biomedical ap...
The development of safe engineered nanoparticles (NPs) requires a detailed understanding of their in...
Particle_in_Cell-3D is a powerful method to quantify the cellular uptake of nanoparticles. It combin...
The potential toxicity of nanoparticles currently raises many discussions in public and scientific li...
Given the increasing variety of manufactured nanomaterials, suitable, robust, standardized in vitro ...
International audienceAmorphous silica is a particularly interesting material because of its inertne...
The effect of nanoparticle charge and conjugation to the cell penetrating peptide Tat on the uptake ...
Localization and intracellular migration of 32 and 83 nm SiO<sub>2</sub> nanoparticles in relation t...
Interest continues to grow in the possibility of understanding the mechanism(s) of nanoparticle-cell...
Silica nanoparticles could be promising delivery vehicles for drug targeting or gene therapy. Howeve...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
Inorganic nanoparticles such as silica particles offer many exciting possibilities for biomedical ap...
The development of safe engineered nanoparticles (NPs) requires a detailed understanding of their in...
Particle_in_Cell-3D is a powerful method to quantify the cellular uptake of nanoparticles. It combin...
The potential toxicity of nanoparticles currently raises many discussions in public and scientific li...
Given the increasing variety of manufactured nanomaterials, suitable, robust, standardized in vitro ...
International audienceAmorphous silica is a particularly interesting material because of its inertne...
The effect of nanoparticle charge and conjugation to the cell penetrating peptide Tat on the uptake ...
Localization and intracellular migration of 32 and 83 nm SiO<sub>2</sub> nanoparticles in relation t...
Interest continues to grow in the possibility of understanding the mechanism(s) of nanoparticle-cell...
Silica nanoparticles could be promising delivery vehicles for drug targeting or gene therapy. Howeve...
The mechanism(s) of nanoparticle-cell interactions are still not understood. At present there is lit...
Inorganic nanoparticles such as silica particles offer many exciting possibilities for biomedical ap...
The development of safe engineered nanoparticles (NPs) requires a detailed understanding of their in...