International audienceThe technological and economic benefits of engineered nanomaterials may be offset by their adverse effects on living organisms. One of the highly produced nanomaterials under such scrutiny is amorphous silica nanoparticles, which are known to have an appreciable, although reversible, inflammatory potential. This is due to their selective toxicity toward macrophages, and it is thus important to study the cellular responses of this cell type to silica nanoparticles to better understand the direct or indirect adverse effects of nanosilica. We have here studied the responses of the RAW264.7 murine macrophage cells and of the control MPC11 plasma cells to subtoxic concentrations of nanosilica, using a combination of pro-teo...
Amorphous silica particles, such as nanoparticles (,100 nm diameter particles), are used in a wide v...
There is growing evidence that amorphous silica nanoparticles cause toxic effects on lung cells in v...
Amorphous silica particles, such as nanoparticles (<100 nm diameter particles), are used in a wide v...
International audienceThe technological and economic benefits of engineered nanomaterials may be off...
Aims: We tested whether phagocytic monocytes/macrophages are more susceptible than nonphagocytes to ...
Engineered amorphous silica nanoparticles (nanosilica) are widely used in industry yet can induce ad...
Phagocytes are important players in host exposure to nanomaterials, by processing nanomaterials and ...
International audienceSynthetic amorphous silica is used in various applications such as cosmetics, ...
International audienceSynthetic amorphous silica is one of the most used nanomaterials, and numerous...
International audienceSynthetic amorphous silica (SAS) is a nanomaterial used in a wide variety of a...
Macrophages play a major role in the removal of foreign materials, including nano-sized materials, s...
<div><p>Amorphous silica particles, such as nanoparticles (<100 nm diameter particles), are used in ...
Amorphous silica particles, such as nanoparticles (,100 nm diameter particles), are used in a wide v...
There is growing evidence that amorphous silica nanoparticles cause toxic effects on lung cells in v...
Amorphous silica particles, such as nanoparticles (<100 nm diameter particles), are used in a wide v...
International audienceThe technological and economic benefits of engineered nanomaterials may be off...
Aims: We tested whether phagocytic monocytes/macrophages are more susceptible than nonphagocytes to ...
Engineered amorphous silica nanoparticles (nanosilica) are widely used in industry yet can induce ad...
Phagocytes are important players in host exposure to nanomaterials, by processing nanomaterials and ...
International audienceSynthetic amorphous silica is used in various applications such as cosmetics, ...
International audienceSynthetic amorphous silica is one of the most used nanomaterials, and numerous...
International audienceSynthetic amorphous silica (SAS) is a nanomaterial used in a wide variety of a...
Macrophages play a major role in the removal of foreign materials, including nano-sized materials, s...
<div><p>Amorphous silica particles, such as nanoparticles (<100 nm diameter particles), are used in ...
Amorphous silica particles, such as nanoparticles (,100 nm diameter particles), are used in a wide v...
There is growing evidence that amorphous silica nanoparticles cause toxic effects on lung cells in v...
Amorphous silica particles, such as nanoparticles (<100 nm diameter particles), are used in a wide v...