Search results for "Lung injury"

showing 10 items of 113 documents

2006

The objective was to study the effects of a lung recruitment procedure by stepwise increases of mean airway pressure upon organ blood flow and hemodynamics during high-frequency oscillatory ventilation (HFOV) versus pressure-controlled ventilation (PCV) in experimental lung injury. Lung damage was induced by repeated lung lavages in seven anesthetized pigs (23–26 kg). In randomized order, HFOV and PCV were performed with a fixed sequence of mean airway pressure increases (20, 25, and 30 mbar every 30 minutes). The transpulmonary pressure, systemic hemodynamics, intracranial pressure, cerebral perfusion pressure, organ blood flow (fluorescent microspheres), arterial and mixed venous blood ga…

Mean arterial pressurebusiness.industryAnesthesiaHemodynamicsMedicineLung injuryMean airway pressureCerebral perfusion pressureCritical Care and Intensive Care MedicinePulmonary wedge pressurebusinessIntracranial pressureTranspulmonary pressureCritical Care
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Supportive und adjunktive Therapiemaßnahmen bei akutem Lungenversagen

2008

Various supportive and adjunctive therapies to conventional mechanical ventilation have been evaluated in patients with acute lung injury and acute respiratory distress syndrome (e.g. nitric oxide, prone position, surfactant, glucocorticoids). Although some investigations have shown promising improvements in oxygenation and physiological variables, large randomized trials of adjunctive and supportive therapies showed no impact on survival.

Mechanical ventilationmedicine.medical_specialtybusiness.industrymedicine.medical_treatmentGeneral MedicineOxygenationLung protective ventilationLung injuryCritical Care and Intensive Care MedicinePulmonary edemamedicine.diseaseNitric oxidelaw.inventionchemistry.chemical_compoundProne positionAnesthesiology and Pain MedicinechemistryRandomized controlled triallawEmergency MedicinemedicinebusinessIntensive care medicineAINS - Anästhesiologie · Intensivmedizin · Notfallmedizin · Schmerztherapie
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Flower lose, a cell fitness marker, predicts COVID‐19 prognosis

2021

Abstract Risk stratification of COVID‐19 patients is essential for pandemic management. Changes in the cell fitness marker, hFwe‐Lose, can precede the host immune response to infection, potentially making such a biomarker an earlier triage tool. Here, we evaluate whether hFwe‐Lose gene expression can outperform conventional methods in predicting outcomes (e.g., death and hospitalization) in COVID‐19 patients. We performed a post‐mortem examination of infected lung tissue in deceased COVID‐19 patients to determine hFwe‐Lose’s biological role in acute lung injury. We then performed an observational study (n = 283) to evaluate whether hFwe‐Lose expression (in nasopharyngeal samples) could accu…

OncologyMedicine (General)medicine.medical_specialtyFlowersDiseaseQH426-470Lung injurySeverity of Illness Indexcell fitnessArticleR5-920COVID‐19Internal medicineSeverity of illnessGeneticsmedicineHumansPandemicsRetrospective StudiesReceiver operating characteristicSARS-CoV-2business.industryCOVID-19Retrospective cohort studyArticlesTriageMicrobiology Virology & Host Pathogen InteractionflowerROC CurvebiomarkerMolecular MedicineBiomarker (medicine)Observational studyprognosisbusinessBiomarkersEMBO Molecular Medicine
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Lung epithelial cell lines in coculture with human pulmonary microvascular endothelial cells: development of an alveolo-capillary barrier in vitro.

2004

We have established a coculture system of human distal lung epithelial cells and human microvascular endothelial cells in order to study the cellular interactions of epithelium and endothelium at the alveolocapillary barrier in both pathogenesis and recovery from acute lung injury. The aim was to determine conditions for the development of functional cellular junctions and the formation of a tight epithelial barrier similar to that observed in vivo. The in vitro coculture system consisted of monolayers of human lung epithelial cell lines (A549 or NCI H441) and primary human pulmonary microvascular endothelial cells (HPMEC) on opposite sides of a permeable filter membrane. A549 failed to sho…

Pathologymedicine.medical_specialtyEndotheliummedicine.medical_treatmentBiologyLung injuryCell junctionDexamethasonePathology and Forensic MedicineCell LineTight JunctionsAdherens junctionmedicineElectric ImpedanceHumansMolecular BiologyLungLungBlood-Air BarrierTumor Necrosis Factor-alphaEpithelial CellsCell BiologyAdherens JunctionsEpitheliumCoculture TechniquesCell biologyEndothelial stem cellPulmonary AlveoliMicroscopy Electronmedicine.anatomical_structureCytokineEndothelium VascularInflammation MediatorsLaboratory investigation; a journal of technical methods and pathology
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Visualization of alveolar recruitment in a porcine model of unilateral lung lavage using3He-MRI

2009

BACKGROUND: In the acute respiratory distress syndrome potentially recruitable lung volume is currently discussed. (3)He-magnetic resonance imaging ((3)He-MRI) offers the possibility to visualize alveolar recruitment directly. METHODS: With the approval of the state animal care committee, unilateral lung damage was induced in seven anesthetized pigs by saline lavage of the right lungs. The left lung served as an intraindividual control (healthy lung). Unilateral lung damage was confirmed by conventional proton MRI and spiral-CT scanning. The total aerated lung volume was determined both at a positive end-expiratory pressure (PEEP) of 0 and 10 mbar from three-dimensionally reconstructed (3)H…

Pathologymedicine.medical_specialtySwinemedicine.medical_treatmentAcute Lung InjuryHemodynamicsAtelectasisAcute respiratory distressBronchoalveolar LavageHeliumPositive-Pressure RespirationAnimal modelIsotopesAnimalsMedicineLung volumesLungSalineLungPulmonary Gas Exchangebusiness.industryHemodynamicsGeneral Medicinerespiratory systemmedicine.diseaseMagnetic Resonance ImagingRespiratory Function Testsrespiratory tract diseasesDisease Models AnimalTreatment OutcomeAnesthesiology and Pain Medicinemedicine.anatomical_structureModels AnimalbusinessNuclear medicineLung lavageActa Anaesthesiologica Scandinavica
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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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Acute Morphological and Toxicological Effects in a Human Bronchial Coculture Model after Sulfur Mustard Exposure

2009

International audience; Sulfur mustard (SM) is a strong alkylating agent. Inhalation of SM causes acute lung injury accompanied by severe disruption of the airway barrier. In our study, we tested the acute effects after mustard exposure in an in vitro coculture bronchial model of the proximal barrier. To achieve this, we seeded normal human bronchial epithelial explant-outgrowth cells (HBEC) together with lung fibroblasts as a bilayer on filter plates and exposed the bronchial model after 31 days of differentiation to various concentrations of SM (30, 100, 300, and 500mM). The HBEC formed confluent layers, expressing functional tight junctions as measured by transepithelial electrical resis…

Pathologymedicine.medical_specialtysulfur mustard[SDV]Life Sciences [q-bio]ApoptosisBronchiEnzyme-Linked Immunosorbent Assay[SDV.BC]Life Sciences [q-bio]/Cellular BiologyBiologyLung injuryToxicologyCell LinelungProinflammatory cytokinechemistry.chemical_compoundIn vivoMustard GasmedicineHumansChemical Warfare AgentsInterleukin 8Tight junctionInterleukinSulfur mustardprimary bronchial cellsMolecular biologyCoculture TechniqueschemistryApoptosis[SDV.TOX]Life Sciences [q-bio]/ToxicologyMicroscopy Electron ScanningbarriercocultureToxicological Sciences
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Drugs modulating the biological effects of peroxynitrite and related nitrogen species

2006

The term “reactive nitrogen species” includes nitrogen monoxide, commonly called nitric oxide, and some other remarkable chemical entities (peroxynitrite, nitrosoperoxycarbonate, etc.) formed mostly from nitrogen monoxide itself in biological environments. Regardless of the specific mechanisms implicated in their effects, however, it is clear that an integrated pharmacological approach to peroxynitrite and related species is only just beginning to take shape. The array of affected chemical and pathological processes is extremely broad. One of the most conspicuous mechanisms observed thus far has been the scavenging of the peroxynitrite anion by molecules endowed with antioxidant activity. T…

PharmacologyAntioxidantmedicine.medical_treatmentOxidative phosphorylationLung injuryIn vitroNitric oxidechemistry.chemical_compoundchemistryBiochemistryIn vivoDrug DiscoverymedicineMolecular MedicineReactive nitrogen speciesPeroxynitriteMedicinal Research Reviews
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Acute cytotoxicity and apoptotic effects after l-Pam exposure in different cocultures of the proximal and distal respiratory system.

2009

Abstract Sulphur and nitrogen mustard are strong alkylating agents which can cause after inhalation acute lung injury in the larynx, trachea and large bronchi and can lead to alveolar edema. In our study we tested the N-Lost l -Phenylalanine Mustard ( l -Pam). Therefore we seeded the alveolar type II cell line NCI H441 on the upper membrane of a Transwell filter plate and the endothelial cell line ISO-Has-1 on the lower side of the membrane for the alveolar model and combined the human bronchial explant-outgrowth cells and fibroblasts in the bronchial model and exposed both models with various concentrations of l -Pam. Treatment with l -Pam led to a concentration-dependent decrease of the t…

ProteomeIntracellular SpaceBioengineeringApoptosisBronchiBiologyLung injuryApplied Microbiology and BiotechnologyCell Linechemistry.chemical_compoundMicroscopy Electron TransmissionmedicineElectric ImpedanceToxicity Tests AcuteHumansRespiratory systemMelphalanOrganellesAnalysis of VarianceLungCytotoxinsEndothelial CellsGeneral Medicinerespiratory systemMolecular biologyWI-38Nitrogen mustardCoculture TechniquesEndothelial stem cellPulmonary Alveolimedicine.anatomical_structurechemistryApoptosisImmunologyVacuolesIntracellularBiotechnologyJournal of biotechnology
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A comparison of micropore membrane inlet mass spectrometry–derived pulmonary shunt measurement with riley shunt in a porcine model

2009

The multiple inert gas elimination technique was developed to measure shunt and the ratio of alveolar ventilation to simultaneous alveolar capillary blood flow in any part of the lung (V(A)'/Q') distributions. Micropore membrane inlet mass spectrometry (MMIMS), instead of gas chromatography, has been introduced for inert gas measurement and shunt determination in a rabbit lung model. However, agreement with a frequently used and accepted method for quantifying deficits in arterial oxygenation has not been established. We compared MMIMS-derived shunt (M-S) as a fraction of total cardiac output (CO) with Riley shunt (R-S) derived from the R-S formula in a porcine lung injury model.To allow a …

Pulmonary AtelectasisPulmonary CirculationSwineCapillary actionBlood PressureMass spectrometryVentilation/perfusion ratioMass SpectrometryAdministration InhalationVentilation-Perfusion RatiomedicineAnimalsCardiac OutputChromatographyMultiple inert gas elimination techniquebusiness.industryMicropore FiltersModels CardiovascularMembranes ArtificialLung InjuryBlood flowrespiratory systemOxygenDisease Models AnimalAnesthesiology and Pain MedicineAnesthesiaAnesthetics InhalationLinear ModelsPulmonary shuntGas chromatographyBlood Gas Analysismedicine.symptombusinessShunt (electrical)
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