AbstractAs the lung is one of the main routes of exposure to manufactured nanoparticles, we developed an in vitro model resembling the alveolo-capillary barrier for the study of nanoparticle translocation.In order to provide a relevant and ethical in vitro model, cost effective and easy-to-implement human cell lines were used. Pulmonary epithelial cells (Calu-3 cell line) and macrophages (THP-1 differentiated cells) were cultivated on the apical side and pulmonary endothelial cells (HPMEC-ST1.6R cell line) on the basal side of a microporous polyester membrane (Transwell®). Translocation of non-functionalized (51 and 110 nm) and aminated (52 nm) fluorescent polystyrene (PS) nanobeads was studied in this system.The use of Calu-3 cells allowed...
2011-10-28Nanoparticles have at least one dimension between 1 and 100 nm. Inhaled nanoparticles have...
Nanoconstructs developed for biomedical purposes must overcome diverse biological barriers before re...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...
AbstractAs the lung is one of the main routes of exposure to manufactured nanoparticles, we develope...
International audienceAs the lung is one of the main routes of exposure to manufactured nanoparticle...
One of the vital barriers in the human body is the air-blood barrier (ABB) in the lung. With an area...
Après exposition par inhalation, les nanoparticules (NPs) peuvent atteindre les alvéoles pulmonaires...
Recent years have seen a growth in the manufacturing of nanoparticles for their uses in various fiel...
AbstractPulmonary barrier function plays a pivotal role in protection from inhaled particles. Howeve...
AbstractDrug and gene delivery via nanoparticles across biological barriers such as the alveolar-cap...
Background: The establishment of reliable and robust in vitro models for hazard assessment, a prereq...
The alveolar region of the lung is an important target for drug and gene delivery approaches. Treatm...
International audienceThe alveolar region of the lung is an important target for drug and gene deliv...
The increasing use of nanoparticles in products likely results in increased exposure of both workers...
Alveolar-capillary basement membrane (BM) is ultra-thin (<2 µm) extracellular matrix that maintains ...
2011-10-28Nanoparticles have at least one dimension between 1 and 100 nm. Inhaled nanoparticles have...
Nanoconstructs developed for biomedical purposes must overcome diverse biological barriers before re...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...
AbstractAs the lung is one of the main routes of exposure to manufactured nanoparticles, we develope...
International audienceAs the lung is one of the main routes of exposure to manufactured nanoparticle...
One of the vital barriers in the human body is the air-blood barrier (ABB) in the lung. With an area...
Après exposition par inhalation, les nanoparticules (NPs) peuvent atteindre les alvéoles pulmonaires...
Recent years have seen a growth in the manufacturing of nanoparticles for their uses in various fiel...
AbstractPulmonary barrier function plays a pivotal role in protection from inhaled particles. Howeve...
AbstractDrug and gene delivery via nanoparticles across biological barriers such as the alveolar-cap...
Background: The establishment of reliable and robust in vitro models for hazard assessment, a prereq...
The alveolar region of the lung is an important target for drug and gene delivery approaches. Treatm...
International audienceThe alveolar region of the lung is an important target for drug and gene deliv...
The increasing use of nanoparticles in products likely results in increased exposure of both workers...
Alveolar-capillary basement membrane (BM) is ultra-thin (<2 µm) extracellular matrix that maintains ...
2011-10-28Nanoparticles have at least one dimension between 1 and 100 nm. Inhaled nanoparticles have...
Nanoconstructs developed for biomedical purposes must overcome diverse biological barriers before re...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...