68 results on '"Perez-Gil, Jesús"'
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2. Effect of lipid-polymer hybrid nanoparticles on the biophysical function and lateral structure of pulmonary surfactant: Mechanistic in vitro studies
3. Mechanopathology of biofilm-like Mycobacterium tuberculosis cords
4. Pulmonary surfactant-derived antiviral actions at the respiratory surface
5. Insights into the mechanisms of interaction between inhalable lipid-polymer hybrid nanoparticles and pulmonary surfactant
6. Pulmonary surfactant and drug delivery: Vehiculization of a tryptophan-tagged antimicrobial peptide over the air-liquid interfacial highway
7. Disulfide bonds in the SAPA domain of the pulmonary surfactant protein B precursor
8. A recipe for a good clinical pulmonary surfactant
9. Compositional, structural and functional properties of discrete coexisting complexes within bronchoalveolar pulmonary surfactant
10. Role of pulmonary surfactant protein Sp-C dimerization on membrane fragmentation: An emergent mechanism involved in lung defense and homeostasis
11. Structural hallmarks of lung surfactant: Lipid-protein interactions, membrane structure and future challenges
12. Towards the Molecular Mechanism of Pulmonary Surfactant Protein SP-B: At the Crossroad of Membrane Permeability and Interfacial Lipid Transfer
13. Pulmonary surfactant and drug delivery: Vehiculization, release and targeting of surfactant/tacrolimus formulations
14. An adverse outcome pathway for lung surfactant function inhibition leading to decreased lung function
15. Molecular and biophysical basis for the disruption of lung surfactant function by chemicals
16. Functional characterization of the different oligomeric forms of human surfactant protein SP-D
17. Biophysical and biological impact on the structure and IgE-binding of the interaction of the olive pollen allergen Ole e 7 with lipids
18. Pulmonary surfactant protein SP-B nanorings induce the multilamellar organization of surfactant complexes
19. Pulmonary Surfactant Lipid Reorganization Induced by the Adsorption of the Oligomeric Surfactant Protein B Complex
20. Per- and polyfluoroalkyl substances (PFASs) modify lung surfactant function and pro-inflammatory responses in human bronchial epithelial cells
21. The Lord of the Lungs: The essential role of pulmonary surfactant upon inhalation of nanoparticles
22. Native supramolecular protein complexes in pulmonary surfactant: Evidences for SP-A/SP-B interactions
23. Protein and lipid fingerprinting of native-like membrane complexes by combining TLC and protein electrophoresis
24. Pulmonary surfactant and drug delivery: Focusing on the role of surfactant proteins
25. Metabolism of a synthetic compared with a natural therapeutic pulmonary surfactant in adult mice
26. Surfactant protein B (SP-B) enhances the cellular siRNA delivery of proteolipid coated nanogels for inhalation therapy
27. Homo- and hetero-oligomerization of hydrophobic pulmonary surfactant proteins SP-B and SP-C in surfactant phospholipid membranes
28. Effects of HIV-1 gp41-Derived Virucidal Peptides on Virus-like Lipid Membranes
29. Pulmonary surfactant and nanocarriers: Toxicity versus combined nanomedical applications
30. Restoring pulmonary surfactant membranes and films at the respiratory surface
31. Divide & Conquer: Surfactant Protein SP-C and Cholesterol Modulate Phase Segregation in Lung Surfactant
32. A Noninvasive Surfactant Adsorption Test Predicting the Need for Surfactant Therapy in Preterm Infants Treated with Continuous Positive Airway Pressure
33. Pulmonary surfactant metabolism in the alveolar airspace: Biogenesis, extracellular conversions, recycling
34. Effect of Lung Surfactant Protein SP-C and SP-C-Promoted Membrane Fragmentation on Cholesterol Dynamics
35. Human Pulmonary Surfactant Protein SP-A1 Provides Maximal Efficiency of Lung Interfacial Films
36. A small key unlocks a heavy door: The essential function of the small hydrophobic proteins SP-B and SP-C to trigger adsorption of pulmonary surfactant lamellar bodies
37. Bio-inspired materials in drug delivery: Exploring the role of pulmonary surfactant in siRNA inhalation therapy
38. Pneumocytes Assemble Lung Surfactant as Highly Packed/Dehydrated States with Optimal Surface Activity
39. Barrier or carrier? Pulmonary surfactant and drug delivery
40. A tribute to our friend and colleague Professor Richard M. Epand
41. Pulmonary surfactant structure as solved by neutron reflectometry and atomic force microscopy
42. Contribution of surface-associated membranes to pulmonary surfactant-mediated drug delivery
43. The highly packed and dehydrated structure of preformed unexposed human pulmonary surfactant isolated from amniotic fluid.
44. LSC - 2019 - Surfactant protein SP-D to the rescue of NETosis and NET-induced lung surfactant inactivation
45. Surfactant protein SP-D to the rescue of NETosis and NET-induced lung surfactant inactivation
46. Effect of SP-C and its palmitoylation state on membrane fragmentation and vesicle uptake
47. Amniotic fluid surfactant: a new approach to the study of structure and function of pulmonary surfactant
48. Implications of SP-C Oligomerization in Membrane Fragmentation and Pulmonary Surfactant Homeostasis
49. Taking a Cooler Breath: Moderate Hypothermia Boosts Lung Surfactant Activity
50. Role of Glycosylation in Lipid-Interacting Properties of Pulmosaposin A, from the Pulmonary Surfactant Protein B Precursor
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