Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
about
Evolution of air breathing: oxygen homeostasis and the transitions from water to land and skyThe surfactant peptide KL4 in lipid monolayers: phase behavior, topography, and chemical distributionActive microrheology and simultaneous visualization of sheared phospholipid monolayersA microfluidic-based bubble generation platform enables analysis of physical property change in phospholipid surfactant layers by interfacial ozone reactionEffect of cholesterol nanodomains on monolayer morphology and dynamics.Deciphering chemokine properties by a hybrid agent-based model of Aspergillus fumigatus infection in human alveoli.Environmental tobacco smoke effects on lung surfactant film organization.More than a monolayer: relating lung surfactant structure and mechanics to compositionInfluence of molecular coherence on surface viscosity.Lipid-protein interactions alter line tensions and domain size distributions in lung surfactant monolayersFluorescence Recovery after Merging a Droplet to Measure the Two-dimensional Diffusion of a Phospholipid Monolayer.The molecular mechanism of lipid monolayer collapse.Topological transformations in proteins: effects of heating and proximity of an interface.Lung surfactants and different contributions to thin film stability.Interfacial rheology of coexisting solid and fluid monolayers.Critical appraisal of some factors pertinent to the functional designs of the gas exchangers.SH3GLB2/endophilin B2 regulates lung homeostasis and recovery from severe influenza A virus infection.Biomimicry of surfactant protein C.A modified squeeze-out mechanism for generating high surface pressures with pulmonary surfactantDeciphering the Counterplay of Aspergillus fumigatus Infection and Host Inflammation by Evolutionary Games on GraphsKinematic viscosity of therapeutic pulmonary surfactants with added polymers.Pivotal debates and controversies on the structure and function of the avian respiratory system: setting the record straight.Interfacial curvature effects on the monolayer morphology and dynamics of a clinical lung surfactant.Interfacial shear rheology of DPPC under physiologically relevant conditions.Design and development of a biorelevant simulated human lung fluid
P2860
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P2860
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
description
2005 nî lūn-bûn
@nan
2005 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年学术文章
@wuu
2005年学术文章
@zh-cn
2005年学术文章
@zh-hans
2005年学术文章
@zh-my
2005年学术文章
@zh-sg
2005年學術文章
@yue
name
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@ast
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@en
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@nl
type
label
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@ast
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@en
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@nl
prefLabel
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@ast
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@en
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@nl
P2093
P2860
P1433
P1476
Keeping lung surfactant where it belongs: protein regulation of two-dimensional viscosity
@en
P2093
Alan Waring
Coralie Alonso
Joseph A Zasadzinski
P2860
P304
P356
10.1529/BIOPHYSJ.104.052092
P407
P577
2005-04-15T00:00:00Z