International audienceInhaled nanoparticles (< 100 nm) reaching the deep lung region first interact with the pulmonary surfactant, a thin lipid film lining the alveolar epithelium. To date, most biophysical studies have focused on particle induced modifications of the film interfacial properties. In comparison , there is less work on the surfactant bulk properties, and on their changes upon particle exposure. Here we study the viscoelastic properties of a biomimetic pulmonary surfactant in the presence of various engineered nanoparticles. The microrheology technique used is based on the remote actuation of micron-sized wires via the application of a rotating magnetic field and on time-lapse optical microscopy. It is found that particles str...
AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfaci...
Nanoparticulate drug carriers have been proposed for the targeted and controlled release of pharmace...
ABSTRACT: Polymeric nanoparticles (NPs) have had much focus on their ability to penetrate deep pulmo...
International audienceInhaled airborne particles smaller than 100 nm entering the airways have been ...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
When inhaled, nanoparticles (NPs) deposit in alveoli and transit through the pulmonary surfactant (P...
The interaction of nanoparticles (NPs) with pulmonary surfactant is important for understanding the ...
Pulmonary surfactant forms a sub-micrometer thick fluid layer that covers the surface of alveolar lu...
International audienceThe role of pulmonary surfactant is to reduce the surface tension in the lungs...
After inhalation, nanoparticles reach the deeper airways and get into contact with the pulmonary sur...
International audienceStudies have shown that following exposure to particulate matter, ultrafine fr...
The alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfacial monol...
AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfaci...
Nanoparticulate drug carriers have been proposed for the targeted and controlled release of pharmace...
ABSTRACT: Polymeric nanoparticles (NPs) have had much focus on their ability to penetrate deep pulmo...
International audienceInhaled airborne particles smaller than 100 nm entering the airways have been ...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
When inhaled, nanoparticles (NPs) deposit in alveoli and transit through the pulmonary surfactant (P...
The interaction of nanoparticles (NPs) with pulmonary surfactant is important for understanding the ...
Pulmonary surfactant forms a sub-micrometer thick fluid layer that covers the surface of alveolar lu...
International audienceThe role of pulmonary surfactant is to reduce the surface tension in the lungs...
After inhalation, nanoparticles reach the deeper airways and get into contact with the pulmonary sur...
International audienceStudies have shown that following exposure to particulate matter, ultrafine fr...
The alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfacial monol...
AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfaci...
Nanoparticulate drug carriers have been proposed for the targeted and controlled release of pharmace...
ABSTRACT: Polymeric nanoparticles (NPs) have had much focus on their ability to penetrate deep pulmo...