Search results for " bronchi"

showing 10 items of 113 documents

Human HSP10 variants downregulation after cigarette smoke extract exposure in lung cells

2009

The impact of cigarette-smoke stress (a form of oxidative stress) on human lung fibroblasts and epithelial cells, particularly its effect on Hsp10 expression, has not been characterized despite the fact that a role for mitochondrial chaperonins in the development of lung diseases, ranging from chronic obstructive pulmonary disease to bronchial carcinogenesis, has been suggested (1). We studied the effects of non-lethal doses of cigarette smoke extract (CSE) on the expression of Hsp10 in human lung fibroblasts (HFL-1 line) and epithelial cells (16HBE line). Proteomics was carried out using 2D-IPG, silver stain, western blotting, and mass-spectrometry; mRNA was measured by RT-PCR. Database se…

Hsp10 cigarette smoke bronchial epithelial cells lung fibroblasts oxidative stress 2D-electrophoresis IPG isoelectric variants chaperoninsSettore BIO/16 - Anatomia Umana
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Effects of hyperosmolar stimulation on IL-8 release in different bronchial epithelial cell lines

2009

Hyperhosmolarity NaCl Mannitol IL-8 release bronchial epithelial cellsSettore BIO/09 - Fisiologia
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RUOLO DELL’IL-13 NELLA DESENSIBILIZZAZIONE DEL RECETTORE beta2 ADRENERGICO NELLE CELLULE EPITELIALI BRONCHIALI PRIMARIE UMANE

2014

IL-13 induced beta2-adrenergic receptor (ß2-AR) desensitization in human airway epithelial cells.

IL-13 recettore beta due adrenergico cellule epiteliali bronchialiIL-13 beta2-adrenergic receptor human airway epithelial cells.
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Bronchial thermoplasty in severe asthma: food for thoughts

2014

Asthma is a complex inflammatory disorder of the airways characterized by airway hyper-responsiveness and variable, reversible, airflow obstruction. Bronchial thermoplasty (BT) is a new modality for treating asthma. It targets airway smooth muscles (ASM) by delivering a controlled specific amount of thermal energy (radiofrequency ablation) to the airway wall through a dedicated catheter. The use of bronchial thermoplasty has been widely discussed for its potential in the treatment of asthma, since it seems to be able to reduce the symptoms of asthma. The definitive study for BT (AIR2 trial) employed a randomized, double-blind, sham-controlled design and enrolled 288 subjects with severe per…

InflammationSocio-culturaleTherapyasthma airflow obstruction treatmentSettore MED/10 - Malattie Dell'Apparato RespiratorioAsthma; Bronchial diseases; Inflammation.; TherapyAsthmaBronchial diseases
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Cellular and Molecular Signatures of Oxidative Stress in Bronchial Epithelial Cell Models Injured by Cigarette Smoke Extract

2022

Exposure of the airways epithelium to environmental insults, including cigarette smoke, results in increased oxidative stress due to unbalance between oxidants and antioxidants in favor of oxidants. Oxidative stress is a feature of inflammation and promotes the progression of chronic lung diseases, including Chronic Obstructive Pulmonary Disease (COPD). Increased oxidative stress leads to exhaustion of antioxidant defenses, alterations in autophagy/mitophagy and cell survival regulatory mechanisms, thus promoting cell senescence. All these events are amplified by the increase of inflammation driven by oxidative stress. Several models of bronchial epithelial cells are used to study the molec…

Inflammationnatural and synthetic antioxidantsQH301-705.5cigarette smokeOrganic ChemistryBronchiEpithelial CellsGeneral MedicineCatalysisCigarette SmokingComputer Science ApplicationsInorganic ChemistryChemistryOxidative StressSettore ING-IND/23 - Chimica Fisica ApplicataSettore ING-IND/17 - Impianti Industriali MeccaniciAnimalsHumansElectrochemical sensors Bronchial epithelial cells Cigarette smoke Natural and synthetic antioxidants Oxidative stressBiology (General)Physical and Theoretical ChemistryQD1-999Molecular Biologybronchial epithelial cellsSpectroscopy
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Cigarette smoke increases BLT2 receptor functions in bronchial epithelial cells: in vitro and ex vivo evidence

2013

Summary Leukotriene B4 (LTB4) is a neutrophil chemotactic molecule with important involvement in the inflammatory responses of chronic obstructive pulmonary disease (COPD). Airway epithelium is emerging as a regulator of innate immune responses to a variety of insults including cigarette smoke, the major risk factor for COPD. In this study we have explored whether cigarette smoke extracts (CSE) or soluble mediators present in distal lung fluid samples (mini-bronchoalveolar lavages) from smokers alter the expression of the LTB4 receptor 2 (BLT2) and peroxisome proliferator-activated receptor-α (PPAR-α) in bronchial epithelial cells. We also evaluated the effects of CSE on the expression of i…

Leukotriene B4NeutrophilsImmunologyIntercellular Adhesion Molecule-1Blotting WesternReceptors Leukotriene B4Peroxisome proliferator-activated receptorSettore MED/41 - AnestesiologiaInflammationBronchiBiologychronic obstructive pulmonary diseasechemistry.chemical_compoundTobaccoacute lung injiurybronchial epithelial cellleukotriene B4.medicineCell AdhesionImmunology and AllergyHumansPPAR alphaReceptorPromoter Regions GeneticCells Culturedchemistry.chemical_classificationInnate immune systemPlant Extractscigarette smokeSmokingEpithelial CellsOriginal Articlesrespiratory systemFlow CytometryIntercellular Adhesion Molecule-1Neutrophiliarespiratory tract diseasesacute lung injiury; bronchial epithelial cells; cigarette smoke; chronic obstructive pulmonary disease; inflammation; leukotriene B4.STAT1 Transcription FactorchemistryinflammationImmunologyRespiratory epitheliumRNA Interferencemedicine.symptomBronchoalveolar Lavage FluidProtein Binding
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MRI of the pulmonary parenchyma.

1999

Imaging of the pulmonary parenchyma represents a unique challenge for MRI. Limited signal is caused by low proton density, susceptibility artifacts, and physiological motion (cardiac pulsation, respiration). Recently, further improvements in MRI techniques have widened the potential for investigations of pulmonary parenchymal disease. These include very short echo times, ultrafast turbo-spin-echo acquisitions, projection reconstruction technique, breathhold imaging, ECG triggering, contrast agents (perfusion imaging, aerosols), sodium imaging, hyperpolarized noble gas imaging, and oxygen enhancement. By using widely available techniques, MRI is helpful in the assessment of (a) acute alveoli…

Lung DiseasesChronic bronchitismedicine.medical_specialtyPulmonary FibrosisContrast MediaAtelectasisPerfusion scanningPulmonary EdemaSensitivity and SpecificityDiagnosis DifferentialMedicineHumansRadiology Nuclear Medicine and imagingLungNeuroradiologyBronchiectasisLungbusiness.industryGeneral MedicinePneumoniamedicine.diseasePulmonary edemaImage EnhancementMagnetic Resonance ImagingPneumoniamedicine.anatomical_structureInjections IntravenousRadiologybusinessPulmonary EmbolismEuropean radiology
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Crystal Structures and Cytotoxicity of ent-Kaurane-Type Diterpenoids from Two Aspilia Species

2018

A phytochemical investigation of the roots of Aspilia pluriseta led to the isolation of ent-kaurane-type diterpenoids and additional phytochemicals (1⁻23). The structures of the isolated compounds were elucidated based on Nuclear Magnetic Resonance (NMR) spectroscopic and mass spectrometric analyses. The absolute configurations of seven of the ent-kaurane-type diterpenoids (3⁻6, 6b, 7 and 8) were determined by single crystal X-ray diffraction studies. Eleven of the compounds were also isolated from the roots and the aerial parts of Aspilia mossambicensis. The literature NMR assignments for compounds 1 and 5 were revised. In a cytotoxicity assay, 12α-methoxy-ent-kaur-9(11),1…

Lung Neoplasms<i>Aspilia mossambicensis</i>Pharmaceutical ScienceCrystal structureAspilia plurisetaAsteraceaePlant Roots01 natural sciencesAnalytical Chemistryent-kaurane diterpenoid.Drug DiscoveryAspilia mossambicensisCytotoxicityEnt kauraneta116Organisk kemiMolecular StructurebiologyChemistryLiver NeoplasmsHep G2 CellsMass spectrometricterpeenitPhytochemicalChemistry (miscellaneous)solunsalpaajatMolecular MedicinecytotoxicityasterikasvitDiterpenes KauraneAspilia<i>ent</i>-kaurane diterpenoidCarcinoma HepatocellularCell SurvivalStereochemistry010402 general chemistryta3111Articlelcsh:QD241-441lcsh:Organic chemistryHumans<i>Aspilia pluriseta</i>Physical and Theoretical ChemistryIC50x-ray crystallography010405 organic chemistrycytostatic drugsOrganic Chemistryta1182Adenocarcinoma Bronchiolo-AlveolarPlant Components AerialAsteraceaebiology.organism_classificationluonnonaineetX-ray crystal structurenaturally occurring substances0104 chemical sciencesA549 Cellsent-kaurane diterpenoidröntgenkristallografiaterpenesMolecules
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L’EMBOLIZZAZIONE BRONCHIALE NEI PAZIENTI CON EMOTTISI IN FIBROSI CISTICA HA UN IMPATTO NEGATIVO SUL DECORSO CLINICO? ANALISI COMPARATIVA IN DUE POPOL…

2008

L’EMBOLIZZAZIONE BRONCHIALE FIBROSI CISTICA.
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Early mitochondrial dysfunction, superoxide anion production, and DNA degradation are associated with non-apoptotic death of human airway epithelial …

2002

It has been shown that bacterial exoproducts may induce airway epithelium injury. During the epithelial repair process, the respiratory epithelial cells no more establish tight junctional intercellular complexes and may be particularly susceptible to bacterial virulence factors. In this study, we analyzed the effect of Pseudomonas aeruginosa exotoxin A (ETA) at different periods of time and concentrations on 16 HBE 14o(-) human bronchial epithelial cells in culture conditions inducing a phenotype of repairing cells. ETA treatment for 24 and 48 h led to the killing of 40.0 +/- 5.7% and 79.0 +/- 1.4% of the cells, respectively, as determined by the dimethylthiazole 2,5 diphenyl tetrazolium br…

MESH: Cell DeathMESH: ADP Ribose TransferasesMESH : DNAClinical BiochemistryCellApoptosisMESH : Dose-Response Relationship DrugMitochondrion[SDV.MHEP.PSR]Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractMembrane PotentialsMESH: Dose-Response Relationship Drugchemistry.chemical_compoundSuperoxidesMESH: Intracellular MembraneMESH : DNA FragmentationRespiratory systemEnzyme InhibitorsCells CulturedADP Ribose TransferasesMESH : Cell SurvivalCell DeathSuperoxideMESH: DNAMESH: BronchiCaspase InhibitorsMESH : BronchiMitochondriaMESH : Epithelial Cellsmedicine.anatomical_structureMESH: Cell SurvivalMESH: Enzyme InhibitorsMESH: Epithelial CellsMESH : ADP Ribose TransferasesIntracellularMESH: Cells CulturedPulmonary and Respiratory MedicineProgrammed cell deathCell SurvivalVirulence FactorsBacterial ToxinsExotoxinsBronchiDNA FragmentationRespiratory MucosaBiologyMicrobiologyNecrosisNasal PolypsMESH : Cells CulturedmedicineHumansMESH: DNA FragmentationMESH : Intracellular MembraneMolecular BiologyMESH : Enzyme InhibitorsMESH: HumansMESH: CaspasesDose-Response Relationship DrugMESH: ApoptosisMESH : HumansEpithelial CellsCell BiologyDNAIntracellular MembranesMESH: ExotoxinschemistryMESH: Bacterial ToxinsApoptosisMESH : ExotoxinsMESH : Cell DeathMESH : Bacterial ToxinsRespiratory epithelium[SDV.MHEP.PSR] Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractMESH : CaspasesMESH : Apoptosis[ SDV.MHEP.PSR ] Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tract
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