AbstractThe alveolar lung surfactant (LS) is a complex lipid protein mixture that forms an interfacial monolayer reducing the surface tension to near zero values and thus preventing the lungs from collapse. Due to the expanding field of nanotechnology and the corresponding unavoidable exposure of human beings from the air, it is crucial to study the potential effects of nanoparticles (NPs) on the structural organization of the lung surfactant system. In the present study, we investigated both, the domain structure in pure DPPC monolayers as well as in lung surfactant model systems. In the pure lipid system we found that two different sized hydrophobic polymeric nanoparticles with diameter of ∼12 nm and ∼136 nm have contrasting effect on the...
This work is licensed under a Creative Commons Attribution 4.0 International License.Understanding i...
AbstractMonolayers of a functional pulmonary surfactant (PS) can reach very low surface tensions wel...
AbstractLangmuir isotherms, fluorescence microscopy, and atomic force microscopy were used to study ...
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...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
AbstractDipalmitoylphosphatidylcholine (DPPC) is the most abundant component in pulmonary surfactant...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
Copyright © Materials Research Society 2019. Lung surfactant (LS), a thin layer of phospholipids and...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
YesLung surfactant (LS) monolayers that continuously expand and compress during breathing cycles, ac...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
AbstractThe size distribution of domains in phase-separated lung surfactant monolayers influences mo...
The structures formed by a pulmonary surfactant model system of dipalmitoylphosphatidylcholine (DPPC...
This work is licensed under a Creative Commons Attribution 4.0 International License.Understanding i...
AbstractMonolayers of a functional pulmonary surfactant (PS) can reach very low surface tensions wel...
AbstractLangmuir isotherms, fluorescence microscopy, and atomic force microscopy were used to study ...
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...
The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during ...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
AbstractDipalmitoylphosphatidylcholine (DPPC) is the most abundant component in pulmonary surfactant...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
Copyright © Materials Research Society 2019. Lung surfactant (LS), a thin layer of phospholipids and...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
YesLung surfactant (LS) monolayers that continuously expand and compress during breathing cycles, ac...
Interaction with the pulmonary surfactant film, being the first line of host defense, represents the...
AbstractThe size distribution of domains in phase-separated lung surfactant monolayers influences mo...
The structures formed by a pulmonary surfactant model system of dipalmitoylphosphatidylcholine (DPPC...
This work is licensed under a Creative Commons Attribution 4.0 International License.Understanding i...
AbstractMonolayers of a functional pulmonary surfactant (PS) can reach very low surface tensions wel...
AbstractLangmuir isotherms, fluorescence microscopy, and atomic force microscopy were used to study ...