Air-liquid interface (ALI) lung cell models cultured on permeable transwell inserts are increasingly used for respiratory hazard assessment requiring controlled aerosolization and deposition of any material on ALI cells. The approach presented herein aimed to assess the transwell insert-delivered dose of aerosolized materials using the VITROCELL® Cloud12 system, a commercially available aerosol-cell exposure system. An inter-laboratory comparison study was conducted with seven European partners having different levels of experience with the VITROCELL® Cloud12. A standard operating procedure (SOP) was developed and applied by all partners for aerosolized delivery of materials, i.e., a water-soluble molecular substance (fluorescence-spiked sa...
In vitro, direct aerosol nanoparticle exposure of cells cultured at the air-liquid interface (ALI) h...
The majority of in vitro studies focusing upon particle–lung cell interactions use static models at ...
BACKGROUND: Engineered nanoparticles are becoming increasingly ubiquitous and their toxicological ef...
Air-liquid interface (ALI) lung cell models cultured on permeable transwell inserts are increasingly...
Air-liquid interface (ALI) lung cell models cultured on permeable transwell inserts are increasingly...
Background Accurate knowledge of cell-/tissue-delivered dose plays a pivotal role in inhalation toxi...
Inhalation is a major exposure route for metallic and low soluble nanomaterials (NM), and TiO2 is on...
The introduction of engineered nanostructured materials into a rapidly increasing number of industri...
Nanoparticles (NP)-based inhalation systems for drug delivery can be administered in liquid form, by...
Nanoparticle toxicity assessments have moved closer to physiological conditions while trying to avoi...
International audienceBackground : Recently, much progress has been made to develop more physiologic...
Little consistency exists in the methodology for toxicological testing of aerosolized nanoparticles ...
In assessing the biological impact of airborne particles in vitro, air-liquid interface (ALI) exposu...
Background: The establishment of reliable and robust in vitro models for hazard assessment, a prereq...
BACKGROUND: Engineered nanoparticles are becoming increasingly ubiquitous and their toxicological ef...
In vitro, direct aerosol nanoparticle exposure of cells cultured at the air-liquid interface (ALI) h...
The majority of in vitro studies focusing upon particle–lung cell interactions use static models at ...
BACKGROUND: Engineered nanoparticles are becoming increasingly ubiquitous and their toxicological ef...
Air-liquid interface (ALI) lung cell models cultured on permeable transwell inserts are increasingly...
Air-liquid interface (ALI) lung cell models cultured on permeable transwell inserts are increasingly...
Background Accurate knowledge of cell-/tissue-delivered dose plays a pivotal role in inhalation toxi...
Inhalation is a major exposure route for metallic and low soluble nanomaterials (NM), and TiO2 is on...
The introduction of engineered nanostructured materials into a rapidly increasing number of industri...
Nanoparticles (NP)-based inhalation systems for drug delivery can be administered in liquid form, by...
Nanoparticle toxicity assessments have moved closer to physiological conditions while trying to avoi...
International audienceBackground : Recently, much progress has been made to develop more physiologic...
Little consistency exists in the methodology for toxicological testing of aerosolized nanoparticles ...
In assessing the biological impact of airborne particles in vitro, air-liquid interface (ALI) exposu...
Background: The establishment of reliable and robust in vitro models for hazard assessment, a prereq...
BACKGROUND: Engineered nanoparticles are becoming increasingly ubiquitous and their toxicological ef...
In vitro, direct aerosol nanoparticle exposure of cells cultured at the air-liquid interface (ALI) h...
The majority of in vitro studies focusing upon particle–lung cell interactions use static models at ...
BACKGROUND: Engineered nanoparticles are becoming increasingly ubiquitous and their toxicological ef...