Search results for "Alveolar Epithelial Cells"

showing 9 items of 9 documents

Long Term Culture of the A549 Cancer Cell Line Promotes Multilamellar Body Formation and Differentiation towards an Alveolar Type II Pneumocyte Pheno…

2016

Pulmonary research requires models that represent the physiology of alveolar epithelium but concerns with reproducibility, consistency and the technical and ethical challenges of using primary or stem cells has resulted in widespread use of continuous cancer or other immortalized cell lines. The A549 'alveolar' cell line has been available for over four decades but there is an inconsistent view as to its suitability as an appropriate model for primary alveolar type II (ATII) cells. Since most work with A549 cells involves short term culture of proliferating cells, we postulated that culture conditions that reduced proliferation of the cancer cells would promote a more differentiated ATII ce…

0301 basic medicineCellular differentiationCell Culture Techniqueslcsh:MedicineGene ExpressionPolymerase Chain ReactionBiochemistry0302 clinical medicineAnimal ProductsMedicine and Health SciencesCell Cycle and Cell Divisionlcsh:ScienceOligonucleotide Array Sequence Analysiseducation.field_of_studyMultidisciplinaryCell CycleCell DifferentiationAgricultureCell cyclerespiratory systemLipidsCell biologyPhenotypeCell Processes030220 oncology & carcinogenesisStem cellResearch ArticleMeatPopulationBiology03 medical and health sciencesExtraction techniquesMicroscopy Electron TransmissionGeneticsHumansGene RegulationeducationNutritionA549 celllcsh:RBiology and Life SciencesCell BiologyLipid MetabolismRNA extractionHamDietResearch and analysis methods030104 developmental biologyMetabolismGene Expression RegulationCell cultureA549 CellsFoodAlveolar Epithelial CellsCancer celllcsh:QImmortalised cell lineDevelopmental BiologyPloS one
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Pulmonary Adenocarcinoma With Enteric Differentiation: Immunohistochemistry and Molecular Morphology

2018

Pulmonary adenocarcinoma with enteric differentiation (PAED) is a rare subtype of lung adenocarcinoma recently recognized in the WHO classification. It is defined as an adenocarcinoma in which the enteric component exceeds 50% and have to show the expression of at least 1 immunohistochemical marker of enteric differentiation. Although the definition of this tumor type is very important, above all in the differential diagnosis between a primary lung tumor and a metastasis of colorectal adenocarcinoma, this cancer still lacks a distinctive immunohistochemical and molecular signature. We recruited the largest series in the literature of PAEDs according to the morphology and the positivity for …

0301 basic medicinePathologymedicine.medical_specialtyLung NeoplasmsHistologyintestinal-type adenocarcinomaCellular differentiationDNA Mutational AnalysisThyroid Nuclear Factor 1AdenocarcinomaBiologymedicine.disease_causePathology and Forensic MedicineMetastasisDiagnosis DifferentialProto-Oncogene Proteins p21(ras)03 medical and health sciences0302 clinical medicineKRASBiomarkers TumormedicineHumansCDX2 Transcription FactorPathology Molecularenteric lung adenocarcinoma intestinal-type adenocarcinoma CDX-2 CDX2 KRASLungKeratin-7entericCancerCell DifferentiationPulmonary adenocarcinoma with enteric differentiation (PAED)lung adenocarcinomamedicine.diseaseCDX-2ImmunohistochemistryMedical Laboratory Technology030104 developmental biologymedicine.anatomical_structureCDX2Alveolar Epithelial Cells030220 oncology & carcinogenesisMutationAdenocarcinomaImmunohistochemistryKRASDifferential diagnosisColorectal Neoplasms
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GSE4-loaded nanoparticles a potential therapy for lung fibrosis that enhances pneumocyte growth, reduces apoptosis and DNA damage.

2021

© 2021 The Authors.

0301 basic medicineTelomeraseDNA damageApoptosismacromolecular substancesBleomycintelomeraseBiochemistryPulmonary fibrosisAlveolar cellsAlveolar cells03 medical and health scienceschemistry.chemical_compoundIdiopathic pulmonary fibrosisBleomycin0302 clinical medicineFibrosisPulmonary fibrosisGeneticsmedicineHumansMolecular BiologyTelomeraseLungLungNanopartículespulmonary fibrosisChemistrytechnology industry and agricultureFibrosi pulmonaralveolar cellsrespiratory systemmedicine.diseaseOxidative Stress030104 developmental biologymedicine.anatomical_structureAlveolar Epithelial CellsCancer researchGSE4NanoparticlesCollagenPeptides030217 neurology & neurosurgeryBiotechnologyDNA DamageFASEB journal : official publication of the Federation of American Societies for Experimental BiologyREFERENCES
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Conditioned Medium from Human Amnion-Derived Mesenchymal Stromal/Stem Cells Attenuating the Effects of Cold Ischemia-Reperfusion Injury in an In Vitr…

2021

The clinical results of lung transplantation (LTx) are still less favorable than other solid organ transplants in both the early and long term. The fragility of the lungs limits the procurement rate and can favor the occurrence of ischemia-reperfusion injury (IRI). Ex vivo lung perfusion (EVLP) with Steen SolutionTM (SS) aims to address problems, and the implementation of EVLP to alleviate the activation of IRI-mediated processes has been achieved using mesenchymal stromal/stem cell (MSC)-based treatments. In this study, we investigated the paracrine effects of human amnion-derived MSCs (hAMSCs) in an in vitro model of lung IRI that includes cold ischemia and normothermic EVLP. We found tha…

0301 basic medicinemedicine.medical_treatmentApoptosislcsh:Chemistry0302 clinical medicinelcsh:QH301-705.5Cells CulturedSpectroscopyamnion-derived mesenchymal stem cellsCell CycleCold IschemiaNF-kappa BCell DifferentiationGeneral MedicineComputer Science Applicationsconditioned mediummedicine.anatomical_structureReperfusion Injury030220 oncology & carcinogenesisCytokinesStem cellStromal cellCell Survivalex vivo lung perfusionArticleCatalysisInorganic Chemistry03 medical and health sciencesParacrine signallingDownregulation and upregulationmedicineHumansLung transplantationAmnionlung ischemia-reperfusion injuryPhysical and Theoretical ChemistryMolecular BiologyLungbusiness.industryOrganic ChemistryMesenchymal stem cellMesenchymal Stem Cellsmedicine.disease030104 developmental biologyGene Expression Regulationlcsh:Biology (General)lcsh:QD1-999A549 CellsAlveolar Epithelial CellsCulture Media ConditionedCancer researchbusinessReperfusion injuryInternational Journal of Molecular Sciences
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Use of the Cultex® Radial Flow System as an in vitro exposure method to assess acute pulmonary toxicity of fine dusts and nanoparticles with special …

2013

Exposure of the respiratory tract to airborne particles (including metal-dusts and nano-particles) is considered as a serious health hazard. For a wide range of substances basic knowledge about the toxic properties and the underlying pathomechanisms is lacking or even completely missing. Legislation demands the toxicological characterization of all chemicals placed on the market until 2018 (REACH). As toxicological in vivo data are rare with regard to acute lung toxicity or exhibit distinct limitations (e.g. inter-species differences) and legislation claims the reduction of animal experiments in general ("3R" principle), profound in vitro models have to be established and characterized to m…

Cell SurvivalPulmonary toxicityMetal NanoparticlesToxicologyRisk AssessmentCell LineToxicologyBasic knowledgeToxicity Tests AcuteHumansMedicineInter-laboratoryInhalation ExposureReproducibilityLung toxicitybusiness.industryReproducibility of ResultsIn vitro exposureDustGeneral MedicineCritical parameterAlveolar Epithelial CellsParticulate MatterRadial flowBiochemical engineeringbusinessChemico-Biological Interactions
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Cigarette smoke affects the onco-suppressor DAB2IP expression in bronchial epithelial cells of COPD patients

2019

AbstractCigarette smoke is a risk factor for COPD and lung cancer. In cancer, epigenetic modifications affect the expression of Enhancer of Zester Homolog 2 (EZH2), and silenced disabled homolog 2 interacting protein gene (DAB2IP) (onco-suppressor gene) by Histone H3 tri-methylation in lysine 27 (H3K27me3). In“ex vivo”studies, we assessed EZH2, H3K27me3 and DAB2IP immunoreactivity in bronchial epithelial cells from COPD patients (smokers, ex-smokers), Smoker and control subjects. In“in vitro” experiments we studied the effect of cigarette smoke extract (CSE) on EZH2/H3K27me3/DAB2IP expression, apoptosis, invasiveness, and vimentin expression in 16HBE, primary cells, and lung cancer cell lin…

Jumonji Domain-Containing Histone DemethylasesLung NeoplasmsCigar SmokingCelllcsh:MedicineApoptosismacromolecular substancesArticlePulmonary Disease Chronic ObstructiveRisk FactorsmedicineHumansEnhancer of Zeste Homolog 2 ProteinNeoplasm Invasivenesslcsh:ScienceLung cancerA549 CellOncogenesisInflammationA549 cellRegulation of gene expressionCOPDMultidisciplinarybusiness.industrylcsh:REZH2ApoptosiJumonji Domain-Containing Histone DemethylaseCancerras GTPase-Activating Proteinmedicine.diseaseAlveolar Epithelial Cellrespiratory tract diseasesLung NeoplasmGene Expression Regulation NeoplasticNeoplasm Invasiveness Pulmonary Disease Chronic Obstructivemedicine.anatomical_structureA549 Cellsras GTPase-Activating ProteinsApoptosisAlveolar Epithelial CellsCancer researchlcsh:QbusinessHumanairway disease
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Identification of periplakin as a major regulator of lung injury and repair in mice

2018

IF 12.784 (2016); International audience; Periplakin is a component of the desmosomes that acts as a cytolinker between intermediate filament scaffolding and the desmosomal plaque. Periplakin is strongly expressed by epithelial cells in the lung and is a target antigen for autoimmunity in idiopathic pulmonary fibrosis. The aim of this study was to determine the role of periplakin during lung injury and remodeling in a mouse model of lung fibrosis induced by bleomycin. We found that periplakin expression was downregulated in the whole lung and in alveolar epithelial cells following bleomycin-induced injury. Deletion of the Ppl gene in mice improved survival and reduced lung fibrosis developm…

Male0301 basic medicinePulmonologylcsh:MedicineMouse modelsMiceIdiopathic pulmonary fibrosischemistry.chemical_compoundFibrosisPeriplakinMice KnockoutLung InjuryGeneral Medicinerespiratory system3. Good healthmedicine.anatomical_structureCytokinesmedicine.symptomSignal TransductionResearch ArticleCell signalingDown-RegulationInflammationRespiratory MucosaLung injuryBleomycinBleomycin03 medical and health sciencesmedicineAnimalsHumansInflammationLung030102 biochemistry & molecular biologybusiness.industryMacrophagesPlakinslcsh:Rmedicine.diseaseFibrosisIdiopathic Pulmonary Fibrosisrespiratory tract diseasesMice Inbred C57BLDisease Models Animal030104 developmental biologychemistryAlveolar Epithelial CellsCancer researchbusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyJCI Insight
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Piclamilast inhibits the pro-apoptotic and anti-proliferative responses of A549 cells exposed to H(2)O(2) via mechanisms involving AP-1 activation.

2012

Reactive oxygen species (ROS) are involved in the pathogenesis of many inflammatory diseases such as chronic obstructive pulmonary disease (COPD). They can alter the expression of genes involved in cellular damage by activating transcription factors, including the NF-κB and the activator protein 1 (AP-1). Phosphodiesterase type 4 (PDE4) inhibitors have anti-inflammatory and antioxidant effects, as described in in vivo and in vitro COPD models. This study analysed the effects of piclamilast, a selective PDE4 inhibitor, on modulating the global gene expression profile in A549 cells exposed to H(2)O(2).Changes in gene expression were analysed using high-density Affymetrix microarrays and valid…

Proto-Oncogene Proteins c-junPyridinesActivating transcription factorApoptosisBiologymedicine.disease_causeBiochemistryAntioxidantschemistry.chemical_compoundPulmonary Disease Chronic ObstructiveIn vivoAnnexinCell Line TumorGene expressionmedicineHumansRNA MessengerPhosphorylationCell ProliferationOligonucleotide Array Sequence AnalysisA549 cellGene Expression ProfilingNF-kappa BGeneral MedicineCell Cycle CheckpointsHydrogen PeroxideMolecular biologyTranscription Factor AP-1chemistryGene Expression RegulationAlveolar Epithelial CellsBenzamidesPhosphodiesterase 4 InhibitorsSignal transductionReactive Oxygen SpeciesPiclamilastOxidative stressSignal TransductionFree radical research
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An impaired alveolar-capillary barrier in vitro : effect of proinflammatory cytokines and consequences on nanocarrier interaction.

2009

The alveolar region of the lung is an important target for drug and gene delivery approaches. Treatment with drugs is often necessary under pathophysiological conditions, in which there is acute inflammation of the target organ. Therefore, in vitro models of the alveolar-capillary barrier, which mimic inflammatory conditions in the alveolar region, would be useful to analyse and predict effects of novel drugs on healthy or inflamed tissues. The epithelial cell line H441 was cultivated with primary isolated human pulmonary microvascular endothelial cells (HPMECs) or the endothelial cell line ISO-HAS-1 on opposite sides of a permeable filter support under physiological and inflammatory condi…

bilayerPathologytight junctions[SDV.BIO]Life Sciences [q-bio]/Biotechnologymedicine.medical_treatment[SDV]Life Sciences [q-bio]02 engineering and technology[SDV.BC.BC]Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]nanocarrier interactionBiochemistry[SDV.BC.IC]Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]Electric ImpedancePolyethyleneimineBarrier function0303 health sciencesTight junctionArticlesTransfection021001 nanoscience & nanotechnologyImmunohistochemistryCell biologyEndothelial stem cellCytokine[SDV.TOX]Life Sciences [q-bio]/Toxicology0210 nano-technologyBiotechnologymedicine.medical_specialtyBiomedical EngineeringBiophysicsBioengineering[SDV.BC]Life Sciences [q-bio]/Cellular BiologyGene deliveryBiologyLung injuryModels BiologicalCell LineProinflammatory cytokineBiomaterialsInterferon-gamma03 medical and health sciencesmedicineHumanslung injury030304 developmental biologyAnalysis of VarianceTumor Necrosis Factor-alphaEndothelial CellsBiological TransportCoculture Techniquesalveolar-capillary barrierAlveolar Epithelial CellsNanoparticles
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