When inhaled nanoparticles (NPs) come into the deep lung, they develop a biomolecular corona by interacting with the pulmonary surfactant. The adsorption of the phospholipids and proteins gives a new biological identity to the NPs, which may alter their subsequent interactions with cells and other biological entities. Investigations of the interaction between the cell membrane and NPs coated with such a biomolecular corona are important in understanding the role of the biofluids on cellular uptake and estimating the dosing capacity and the nanotoxicology of NPs. In this paper, using dissipative particle dynamics, we investigate how the physicochemical properties of the coating pulmonary surfactant lipids and proteins affect the membrane res...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
Nano-sized particles (NSPs) have a diameter of less than 100nm. When inhaled, they preferentially de...
Understanding the interaction between inhaled nanoparticles and pulmonary surfactant is a prerequisi...
When inhaled nanoparticles (NPs) come into the deep lung, they develop a biomolecular corona by inte...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
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...
Particles with a single dimension smaller than 100 nm are called nanoparticles (NPs). There is a lar...
Nanoparticle-based pulmonary drug delivery has gained significant attention due to its ease of admin...
The large respiratory surface and high permeability make the lung promising in drug delivery of inha...
M.S. University of Hawaii at Manoa 2011.Includes bibliographical references.With the rapid developme...
Hydrophilic drugs can be delivered into lungs via nebulization for both local and systemic therapies...
Pulmonary surfactant forms a sub-micrometer thick fluid layer that covers the surface of alveolar lu...
Engineered Nanoparticles are increasingly becoming a part of our daily lives due to their presence i...
<div><p>The peripheral lungs are a potential entrance portal for nanoparticles into the human body d...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
Nano-sized particles (NSPs) have a diameter of less than 100nm. When inhaled, they preferentially de...
Understanding the interaction between inhaled nanoparticles and pulmonary surfactant is a prerequisi...
When inhaled nanoparticles (NPs) come into the deep lung, they develop a biomolecular corona by inte...
The growing risk of human exposure to airborne nanoparticles (NPs) causes a general concern on the b...
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...
Particles with a single dimension smaller than 100 nm are called nanoparticles (NPs). There is a lar...
Nanoparticle-based pulmonary drug delivery has gained significant attention due to its ease of admin...
The large respiratory surface and high permeability make the lung promising in drug delivery of inha...
M.S. University of Hawaii at Manoa 2011.Includes bibliographical references.With the rapid developme...
Hydrophilic drugs can be delivered into lungs via nebulization for both local and systemic therapies...
Pulmonary surfactant forms a sub-micrometer thick fluid layer that covers the surface of alveolar lu...
Engineered Nanoparticles are increasingly becoming a part of our daily lives due to their presence i...
<div><p>The peripheral lungs are a potential entrance portal for nanoparticles into the human body d...
International audienceInhaled nanoparticles traveling through the airways are able to reach the resp...
Nano-sized particles (NSPs) have a diameter of less than 100nm. When inhaled, they preferentially de...
Understanding the interaction between inhaled nanoparticles and pulmonary surfactant is a prerequisi...