Search results for "Pulmonary Surfactants"

showing 10 items of 17 documents

Pulmonary surfactant protein C containing lipid films at the air-water interface as a model for the surface of lung alveoli.

1995

The pulmonary surfactant lines as a complex monolayer of lipids and proteins the alveolar epithelial surface. The monolayer dynamically adapts the surface tension of this interface to the varying surface areas during inhalation and exhalation. Its presence in the alveoli is thus a prerequisite for a proper lung function. The lipid moiety represents about 90% of the surfactant and contains mainly dipalmitoylphosphatidylcholine (DPPC) and phosphatidylglycerol (PG). The surfactant proteins involved in the surface tension adaption are called SP-A, SP-B and SP-C. The aim of the present investigation is to analyse the properties of monolayer films made from pure SP-C and from mixtures of DPPC, DP…

LangmuirChemical PhenomenaSurface PropertiesProteolipidsLipid BilayersMolecular Sequence DataBiophysicsPalmitic AcidsBiophysical PhenomenaSurface tensionchemistry.chemical_compoundPulmonary surfactantEllipsometryMonolayerHumansPulmonary surfactant-associated protein CAmino Acid SequenceMolecular BiologyPhospholipidsPhosphatidylglycerolChemistryChemistry PhysicalAirtechnology industry and agricultureWaterMembranes ArtificialPulmonary SurfactantsCell BiologyLipid MetabolismLipidsPulmonary AlveoliCrystallographyChemical engineeringDipalmitoylphosphatidylcholinelipids (amino acids peptides and proteins)Protein BindingMolecular membrane biology
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Palmitoylation of Pulmonary Surfactant Protein SP-C Is Critical for Its Functional Cooperation with SP-B to Sustain Compression/Expansion Dynamics in…

2010

AbstractRecent data suggest that a functional cooperation between surfactant proteins SP-B and SP-C may be required to sustain a proper compression-expansion dynamics in the presence of physiological proportions of cholesterol. SP-C is a dually palmitoylated polypeptide of 4.2 kDa, but the role of acylation in SP-C activity is not completely understood. In this work we have compared the behavior of native palmitoylated SP-C and recombinant nonpalmitoylated versions of SP-C produced in bacteria to get a detailed insight into the importance of the palmitic chains to optimize interfacial performance of cholesterol-containing surfactant films. We found that palmitoylation of SP-C is not essenti…

LipoylationSus scrofaBiophysicsAcute respiratory distressModels Biologicallaw.inventionAcylationchemistry.chemical_compoundPalmitoylationPulmonary surfactantlawAnimalsPulmonary Surfactant-Associated Protein BChemistryCholesterolMembraneTemperaturePulmonary SurfactantsBiofísicaPulmonary Surfactant-Associated Protein CBiomechanical PhenomenaCholesterolBiochemistryBiophysicsRecombinant DNAlipids (amino acids peptides and proteins)AdsorptionProteïnes
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Inhaled Surfactant in the treatment of accidental Talc Powder inhalation: a new case report

2011

Abstract The use of talcum powder is incorrectly part of the traditional care of infants. Its acute aspiration is a very dangerous condition in childhood. Although the use of baby powder has been discouraged from many authors and the reports of its accidental inhalation have been ever more rare, sometimes new cases with several fatalities have been reported. We report on a patient in which accidental inhalation of baby powder induced severe respiratory difficulties. We also point out the benefits of surfactant administration. Surfactant contributed to the rapid improvement of the medical and radiological condition, preventing severe early and late complications and avoiding invasive approac…

Lung Diseasesmedicine.medical_specialtymedicine.medical_treatmentTreatment outcomeCase Reportmacromolecular substancesTalcSettore MED/38 - Pediatria Generale E SpecialisticaPulmonary surfactantAdministration InhalationSurfactantmedicineHumansTalcum powderRespiratory physiotherapyIntensive care medicinePhospholipidsBiological ProductsInhalationRespiratory distressbusiness.industrylcsh:RJ1-570InfantRespiratory Physiotherapylcsh:PediatricsPulmonary SurfactantsBronchopulmonary LavageAccidental InhalationAnti-Bacterial AgentsBronchodilator AgentsRadiographyTreatment OutcomeCoughBaby powderTalcRespiratory DistressAccidentalDrug Therapy CombinationFemaleInhaled surfactant talc powder inhalationPowdersbusinessmedicine.drugItalian Journal of Pediatrics
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Protein expression profiling suggests relevance of noncanonical pathways in isolated pulmonary embolism

2019

Abstract Patients with isolated pulmonary embolism (PE) have a distinct clinical profile from those with deep vein thrombosis (DVT)-associated PE, with more pulmonary conditions and atherosclerosis. These findings suggest a distinct molecular pathophysiology and the potential involvement of alternative pathways in isolated PE. To test this hypothesis, data from 532 individuals from the Genotyping and Molecular Phenotyping of Venous ThromboEmbolism Project, a multicenter prospective cohort study with extensive biobanking, were analyzed. Targeted, high-throughput proteomics, machine learning, and bioinformatic methods were applied to contrast the acute-phase plasma proteomes of isolated PE pa…

MaleProteomeDatasets as TopicComorbidity030204 cardiovascular system & hematologyProteomicsBioinformaticsBiochemistryThrombosis and HemostasisMachine LearningPathogenesis0302 clinical medicineProtein-Arginine Deiminase Type 2Prospective StudiesProtein Interaction MapsProspective cohort study0303 health scienceseducation.field_of_studyVenous ThromboembolismHematologyMiddle AgedThrombosisPhenotypePulmonary embolismProteomeN-AcetylgalactosaminyltransferasesFemaleAdultQuantitative Trait LociImmunologyPopulationInterferon-gamma03 medical and health sciencesInterleukin-15 Receptor alpha SubunitmedicineHumansGlial Cell Line-Derived Neurotrophic FactoreducationAged030304 developmental biologybusiness.industryPulmonary SurfactantsCell BiologyAtherosclerosismedicine.diseaseOxidative StressGene Expression RegulationPulmonary EmbolismTranscriptomebusinessAcute-Phase ProteinsFollow-Up StudiesBlood
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Administration of keratinocyte growth factor down-regulates the pulmonary capacity of acetylcholine production.

2007

Abstract Keratinocyte growth factor protects the lung against various injurious stimuli. The protective mechanisms, however, are not yet fully understood. The aim of this study is to determine the influence of keratinocyte growth factor on the pulmonary capacity to synthesize acetylcholine, a potent regulator of pulmonary functions which is potentially involved in lung damage. Rats were treated twice (days 1 and 2) intratracheally with keratinocyte growth factor and analyzed at day 4. The mRNA expression of choline acetyltransferase – the acetylcholine synthesizing enzyme – was analyzed by real-time RT-PCR in the lung and in isolated alveolar epithelial type II cells. Choline acetyltransfer…

Malemedicine.medical_specialtyFibroblast Growth Factor 7CellDown-RegulationBiologyBiochemistryCholine O-Acetyltransferasechemistry.chemical_compoundInternal medicinemedicineAnimalsRNA MessengerCation Transport ProteinsLungSurfactant homeostasisLungEpithelial CellsPulmonary SurfactantsCell BiologyCholine acetyltransferaseAcetylcholineRecombinant ProteinsRatsCholine transporterEndocrinologymedicine.anatomical_structurechemistryRats Inbred LewKeratinocyte growth factorKeratinocyteAcetylcholinemedicine.drugThe international journal of biochemistrycell biology
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Ventilator-Associated Lung Injury Superposed to Oleic Acid Infusion or Surfactant Depletion: Histopathological Characteristics of Two Porcine Models …

2009

<i>Background:</i> The pathophysiological concept of acute lung injury (ALI) in combination with ventilator-associated lung injury (VALI) is still unclear. We characterized the histopathological features of intravenous injection of oleic acid (OAI) and lung lavage (LAV) combined with VALI. <i>Methods:</i> Pigs were randomized to the control, LAV or OAI group and ventilated by pressure-controlled ventilation. Measurements included: haemodynamics, spirometry, blood gas analysis, lung wet-to-dry weight ratio (W/D), total protein content in broncho-alveolar lavage fluid (BALF), and lung pathological description and scoring. <i>Results:</i> Five hours after lu…

Malemedicine.medical_specialtyVentilator-associated lung injurySwineAcute Lung InjuryLung injurychemistry.chemical_compoundPulmonary surfactantmedicineAnimalsHumansInfusions IntravenousTherapeutic IrrigationRespiratory Distress SyndromeLungbusiness.industryPulmonary Surfactantsrespiratory systemmedicine.diseaseRespiration ArtificialPathophysiologyrespiratory tract diseasesDisease Models AnimalOleic acidmedicine.anatomical_structurechemistryAnesthesiaFemaleSurgeryHistopathologybusinessBronchoalveolar Lavage FluidOleic AcidEuropean Surgical Research
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High-resolution investigation of nanoparticle interaction with a model pulmonary surfactant monolayer.

2012

The pulmonary surfactant film spanning the inner alveolar surface prevents alveolar collapse during the end-exhalation and reduces the work of breathing. Nanoparticles (NPs) present in the atmosphere or nanocarriers targeted through the pulmonary route for medical purposes challenge this biological barrier. During interaction with or passage of NPs through the alveolar surfactant, the biophysical functioning of the film may be altered. However, experimental evidence showing detailed biophysical interaction of NPs with the pulmonary surfactant film are scant. In this study, we have investigated the impact of a hydrophobic polyorganosiloxane (AmOrSil20) NPs on the integrity as well as on the …

Materials scienceSiloxanesPolymersSurface PropertiesGeneral Physics and AstronomyHigh resolutionNanoparticleNanotechnologyMicroscopy Atomic Forcelaw.inventionPulmonary surfactantlawMonolayerGeneral Materials ScienceStructural organizationtechnology industry and agricultureGeneral EngineeringPulmonary Surfactantsrespiratory systemKineticsPhase imagingBiophysicsNanoparticlesElectron microscopeNanocarriersHydrophobic and Hydrophilic InteractionsACS nano
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Effect of cholesterol on the physical properties of pulmonary surfactant films: Atomic force measurements study

2006

International audience; Atomic force measurements were performed on supported pulmonary surfactant (PS) films to address the effect of cholesterol on the physical properties of lung surfactant films. We recently found that cholesterol in excess of a physiological proportion abolishes surfactant function, and is the reason that surfactant fails to lower the surface tension upon compression. In this study, we investigated how the loss of mechanical stability observed earlier is related to the local mechanical properties of the film by local force measurements. The presence of 20% of cholesterol in bovine lipid extract surfactant (BLES) resulted in a decrease of the observed adhesive interacti…

Models Molecular12-DipalmitoylphosphatidylcholineSurface PropertiesFunctional failureLipid BilayersAnalytical chemistryMicroscopy Atomic ForceSurface tensionchemistry.chemical_compoundRigidity (electromagnetism)Pulmonary surfactantAnimalsSurface TensionInstrumentationAtomic force microscopyCholesterolPulmonary SurfactantsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsCholesterol[ PHYS.PHYS.PHYS-AO-PH ] Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph]chemistryMechanical stabilityPhosphatidylcholinesBiophysicsCattleAdhesiveUltramicroscopy
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Synthetic Pulmonary Surfactant Preparations: New developments and future trends

2008

Pulmonary surfactant is a lipid-protein complex that coats the interior of the alveoli and enables the lungs to function properly. Upon its synthesis, lung surfactant adsorbs at the interface between the air and the hypophase, a capillary aqueous layer covering the alveoli. By lowering and modulating surface tension during breathing, lung surfactant reduces respiratory work of expansion, and stabilises alveoli against collapse during expiration. Pulmonary surfactant deficiency, or dysfunction, contributes to several respiratory pathologies, such as infant respiratory distress syndrome (IRDS) in premature neonates, and acute respiratory distress syndrome (ARDS) in children and adults. The ma…

Models MolecularARDSmedicine.medical_specialtyMolecular Sequence DataAcute respiratory distressPharmacologyBiochemistryStructure-Activity RelationshipPulmonary surfactantDrug DiscoveryAnimalsHumansMedicineAmino Acid SequenceRespiratory systemPharmacologyRespiratory distressbusiness.industryOrganic ChemistryRespiratory diseasePulmonary Surfactantsmedicine.diseaseLipidsSurgeryDuring expirationBreathingMolecular MedicinebusinessProteïnesPulmons Malalties
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Spatial and temporal heterogeneity of ventilator-associated lung injury after surfactant depletion.

2008

Volutrauma and atelectrauma have been proposed as mechanisms of ventilator-associated lung injury, but few studies have compared their relative importance in mediating lung injury. The objective of our study was to compare the injury produced by stretch (volutrauma) vs. cyclical recruitment (atelectrauma) after surfactant depletion. In saline-lavaged rabbits, we used high tidal volume, low respiratory rate, and low positive end-expiratory pressure to produce stretch injury in nondependent lung regions and cyclical recruitment in dependent lung regions. Tidal changes in shunt fraction were assessed by measuring arterial Po2 oscillations. After ventilating for times ranging from 0 to 6 h, lu…

Pathologymedicine.medical_specialtyVentilator-associated lung injuryPhysiologyNitric Oxide Synthase Type IIInflammationEnzyme-Linked Immunosorbent AssayPulmonary EdemaRespiratory physiologyLung injuryPhysiology (medical)medicineAnimalsInterleukin 8LungChemokine CCL2PeroxidaseLungVentilators Mechanicalbusiness.industryRespiratory diseaseInterleukin-8Pulmonary SurfactantsLung Injuryrespiratory systemmedicine.diseasePulmonary edemarespiratory tract diseasesOxygenmedicine.anatomical_structureNeutrophil InfiltrationCalibrationRespiratory MechanicsCytokinesFluid TherapyFemaleRabbitsmedicine.symptomBlood Gas AnalysisChemokinesbusinessJournal of applied physiology (Bethesda, Md. : 1985)
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