Polyhydroxyalkanoates (PHA) are polyesters produced intracellularly by many bacterial species as energy storage materials, which are used in biomedical applications, including drug delivery systems, due to their biocompatibility and biodegradability. In this study, we evaluated the potential application of this nanomaterial as a basis of inhaled drug delivery systems. To that end, we assessed the possible interaction between PHA nanoparticles (NPs) and pulmonary surfactant using dynamic light scattering, Langmuir balances, and epifluorescence microscopy. Our results demonstrate that NPs deposited onto preformed monolayers of DPPC or DPPC/POPG bind these surfactant lipids. This interaction facilitated the translocation of the nanomaterial to...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
The pulmonary route is very attractive for drug delivery by inhalation. In this regard, nanoparticul...
Pulmonary drug delivery is superior to the systemic administration in treating lung diseases. An opt...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
ABSTRACT: Polymeric nanoparticles (NPs) have had much focus on their ability to penetrate deep pulmo...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfaci...
The alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfacial monol...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
Nanoparticulate drug carriers have been proposed for the targeted and controlled release of pharmace...
Pulmonary surfactant (PS) has been extensively studied because of its primary role in mammalian brea...
Nanoparticle-based pulmonary drug delivery has gained significant attention due to its ease of admin...
When inhaled nanoparticles (NPs) come into the deep lung, they develop a biomolecular corona by inte...
The pulmonary route is very attractive for drug delivery by inhalation. In this regard, nanoparticul...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
The pulmonary route is very attractive for drug delivery by inhalation. In this regard, nanoparticul...
Pulmonary drug delivery is superior to the systemic administration in treating lung diseases. An opt...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
ABSTRACT: Polymeric nanoparticles (NPs) have had much focus on their ability to penetrate deep pulmo...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfaci...
The alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfacial monol...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
Nanoparticulate drug carriers have been proposed for the targeted and controlled release of pharmace...
Pulmonary surfactant (PS) has been extensively studied because of its primary role in mammalian brea...
Nanoparticle-based pulmonary drug delivery has gained significant attention due to its ease of admin...
When inhaled nanoparticles (NPs) come into the deep lung, they develop a biomolecular corona by inte...
The pulmonary route is very attractive for drug delivery by inhalation. In this regard, nanoparticul...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
The pulmonary route is very attractive for drug delivery by inhalation. In this regard, nanoparticul...
Pulmonary drug delivery is superior to the systemic administration in treating lung diseases. An opt...