X-ray scattering and freeze-fracture electron microscopy of a lung surfactant extract show the existence of a complex lamellar phase, L gamma, over a wide range of concentrations and temperatures. This lamellar phase, which consists of two bilayer motifs comprised of monolayers with stiff chains alternating with monolayers with disordered chains, allows us to propose a structural model of a collapse phase at the alveolar pulmonary interface. This model accounts for the increase in surface pressure during the compression as well as the easy respreading upon expansion of the interface during the respiratory cycle
The structures formed by a pulmonary surfactant model system of dipalmitoylphosphatidylcholine (DPPC...
AbstractPulmonary surfactant (PS) is an essential complex of lipids and specific proteins synthesize...
AbstractTo explore the role of individual lung surfactant components in liquid-condensed (LC)/liquid...
X-ray scattering and freeze-fracture electron microscopy of a lung surfactant extract show the exist...
AbstractDuring exhalation, the surfactant film of lipids and proteins that coats the alveoli in the ...
AbstractThe phase behavior of monolayers containing the complete set of purified phospholipids (PPL)...
AbstractThe studies reported here used fluorescence microscopy and Brewster angle microscopy to test...
Pulmonary surfactant forms the alveolar monolayer at the air/aqueous interface within the lung. Duri...
Pulmonary surfactant forms the alveolar monolayer at the air/aqueous interface within the lung. Duri...
AbstractThe respiratory epithelium has evolved to produce a complicated network of extracellular mem...
AbstractThe studies reported here used fluorescence microscopy and Brewster angle microscopy to test...
AbstractDuring exhalation, the surfactant film of lipids and proteins that coats the alveoli in the ...
To determine if lateral phase separation occurs in films of pulmonary surfactant, we used epifluores...
AbstractThe exact mechanism by which pulmonary surfactant films reach the very low surface tensions ...
AbstractThe phase behavior of monolayers containing the complete set of purified phospholipids (PPL)...
The structures formed by a pulmonary surfactant model system of dipalmitoylphosphatidylcholine (DPPC...
AbstractPulmonary surfactant (PS) is an essential complex of lipids and specific proteins synthesize...
AbstractTo explore the role of individual lung surfactant components in liquid-condensed (LC)/liquid...
X-ray scattering and freeze-fracture electron microscopy of a lung surfactant extract show the exist...
AbstractDuring exhalation, the surfactant film of lipids and proteins that coats the alveoli in the ...
AbstractThe phase behavior of monolayers containing the complete set of purified phospholipids (PPL)...
AbstractThe studies reported here used fluorescence microscopy and Brewster angle microscopy to test...
Pulmonary surfactant forms the alveolar monolayer at the air/aqueous interface within the lung. Duri...
Pulmonary surfactant forms the alveolar monolayer at the air/aqueous interface within the lung. Duri...
AbstractThe respiratory epithelium has evolved to produce a complicated network of extracellular mem...
AbstractThe studies reported here used fluorescence microscopy and Brewster angle microscopy to test...
AbstractDuring exhalation, the surfactant film of lipids and proteins that coats the alveoli in the ...
To determine if lateral phase separation occurs in films of pulmonary surfactant, we used epifluores...
AbstractThe exact mechanism by which pulmonary surfactant films reach the very low surface tensions ...
AbstractThe phase behavior of monolayers containing the complete set of purified phospholipids (PPL)...
The structures formed by a pulmonary surfactant model system of dipalmitoylphosphatidylcholine (DPPC...
AbstractPulmonary surfactant (PS) is an essential complex of lipids and specific proteins synthesize...
AbstractTo explore the role of individual lung surfactant components in liquid-condensed (LC)/liquid...