Search results for "Bios"

showing 10 items of 2557 documents

REDUCTION OF NILUTAMIDE BY NO SYNTHASES : IMPLICATIONS FOR THE ADVERSE EFFECTS OF THIS NITROAROMATIC ANTIANDROGEN DRUG

2003

Nitric oxide synthases (NOSs) are flavohemeproteins that catalyze the oxidation of l-arginine to l-citrulline with formation of the widespread signal molecule NO. Beside their fundamental role in NO biosynthesis, these enzymes are also involved in the formation of reactive oxygen species and in the interactions with some xenobiotic compounds. Nilutamide is a nonsteroidal antiandrogen that behaves as a competitive antagonist of the androgen receptors and is proposed in the treatment of metastatic prostatic carcinoma. However, therapeutic effects of nilutamide are overshadowed by the occurrence of several adverse reactions mediated by toxic mechanism(s), which remain(s) poorly investigated. H…

Time FactorsFree RadicalsNitric Oxide Synthase Type IIImedicine.drug_class[CHIM.THER] Chemical Sciences/Medicinal ChemistryNitric Oxide Synthase Type IINitric Oxide Synthase Type I[CHIM.THER]Chemical Sciences/Medicinal ChemistryToxicologyAntiandrogenImidazolidinesNitric oxide03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineHydroxylaminemedicineAnimalsAnaerobiosisAmines030304 developmental biologychemistry.chemical_classification0303 health sciencesReactive oxygen speciesElectron Spin Resonance SpectroscopyImidazolesAndrogen AntagonistsGeneral MedicineRecombinant Proteins3. Good healthRatsAndrogen receptorEnzymechemistryBiochemistryCompetitive antagonist030220 oncology & carcinogenesisNilutamideCattleNitric Oxide SynthaseOxidation-ReductionNADPmedicine.drug
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The aryl hydrocarbon receptor modulates acute and late mast cell responses.

2012

Abstract The aryl hydrocarbon receptor (AhR) is a ligand-dependent transcription factor whose activity is modulated by xenobiotics as well as physiological ligands. These compounds may modulate inflammatory responses and contribute to the rising prevalence of allergic diseases observed in industrialized countries. Mast cells (MCs), located within tissues at the boundary of the external environment, represent a potential target of AhR ligands. In this study, we report that murine and human MCs constitutively express AhR, and its activation by the high-affinity ligand 6-formylindolo[3,2-b]carbazole (FICZ) determines a boost in degranulation. On the contrary, repeated exposure to FICZ inhibits…

Time FactorsInbred C57BLLigandsCell DegranulationPathogenesischemistry.chemical_compoundMiceAnaphylaxiReceptorsMast CellImmunology and AllergyMast CellsReceptorMice KnockoutbiologyInterleukin-17DegranulationMast cellUp-RegulationImmunology Mast Cell Aryl Receptormedicine.anatomical_structureAryl HydrocarbonBone Marrow Celldeficiency/metabolism/physiologyIgEmedicine.symptomimmunology/metabolism/pathologyHistamineHumanReceptorTime FactorKnockoutImmunologyDown-RegulationLigandInflammationBone Marrow CellsSettore MED/08 - Anatomia PatologicaCell LinebiosynthesiAnaphylaxis; immunology/metabolism/pathology Animals Bone Marrow Cells; immunology/metabolism/pathology Cell Degranulation; genetics/immunology Cell Line Down-Regulation; genetics/immunology Humans Interleukin-17; biosynthesis Interleukin-6; biosynthesis Ligands Mast Cells; immunology/metabolism/pathology Mice Mice; Inbred C57BL Mice; Knockout Receptors; Aryl Hydrocarbon; deficiency/metabolism/physiology Receptors; IgE; physiology Time Factors Up-Regulation; genetics/immunologymedicineAnimalsHumansTranscription factorAnaphylaxisAnimalInterleukin-6Receptors IgEAryl hydrocarbon receptorgenetics/immunologyMice Inbred C57BLMAST CELL; ARYL HYDROCARBON RECEPTORchemistryReceptors Aryl HydrocarbonImmunologyphysiologybiology.proteinbiosynthesisJournal of immunology (Baltimore, Md. : 1950)
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Cross-circulation and Cell Distribution Kinetics in Parabiotic Mice

2011

Blood-borne nucleated cells participate not only in inflammation, but in tissue repair and regeneration. Because progenitor and stem cell populations have a low concentration in the blood, the circulation kinetics and tissue distribution of these cells is largely unknown. An important approach to tracking cell lineage is the use of fluorescent tracers and parabiotic models of cross-circulation. Here, we investigated the cross-circulation and cell distribution kinetics of C57/B6 GFP(+)/wild-type parabionts. Flow cytometry analysis of the peripheral blood after parabiosis demonstrated no evidence for a "parabiotic barrier" based on cell size or surface characterstics; all peripheral blood cel…

Time FactorsPhysiologyParabiosisT-LymphocytesClinical BiochemistryGreen Fluorescent ProteinsParabiosisMice TransgenicBiologyArticleFlow cytometryMiceNucleated cellWeight LossmedicineAnimalsPeripheral blood cellWhole bloodmedicine.diagnostic_testBehavior AnimalCell BiologyMolecular biologyMice Inbred C57BLLymphatic systemGene Expression RegulationImmunologyLymphStem cell
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Equilibrium coverage fluctuations: a new approach to quantify reversible adsorption of proteins.

2005

Time FactorsProtein ConformationKineticsBiophysicsBiosensing TechniquesModels BiologicalAdsorptionAb initio quantum chemistry methodsComputational chemistryElectrochemistryComputer SimulationPhysical and Theoretical ChemistryChemistryReversible adsorptionChemistry PhysicalProteinsSurface Plasmon ResonanceAtomic and Molecular Physics and OpticsNanostructuresKineticsSpectrophotometryAdsorptionStress MechanicalPeptidesMonte Carlo MethodAlgorithmsProtein BindingChemphyschem : a European journal of chemical physics and physical chemistry
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Synthesis and characterization of modified sulfonated chitosan for beryllium recovery

2019

Abstract A new adsorbent, sulfated crosslinked chitosan (SGCH), has been synthesized for the effective extraction of beryllium ions from their aqueous solutions. In recent times, beryllium extraction has been of great importance because beryllium can be used in many applications such as in nuclear reactor, heat shields, high-technology ceramics, alloys and electronic heat sinks. SGCH has been synthesized by two successive phases. The first is the conversion of chitosan (CH) into non-soluble cross-linked chitosan (GCH) through the interaction between chitosan and glutaraldehyde. The second step is the formation of functional sulfonate groups onto the adsorbent material through the interactio…

Time FactorsRemediationchemistry.chemical_elementChemistry Techniques Synthetic02 engineering and technologyBiochemistryChitosan03 medical and health scienceschemistry.chemical_compoundAdsorptionStructural BiologyDesorptionMolecular Biology030304 developmental biologyChitosan0303 health sciencesAqueous solutiontechnology industry and agricultureSorptionGeneral Medicine021001 nanoscience & nanotechnologyrespiratory tract diseasesSulfonatechemistryBiosorptionAdsorptionBerylliumGlutaraldehydeSulfonic AcidsBeryllium0210 nano-technologyNuclear chemistryInternational Journal of Biological Macromolecules
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Thermophilic Anaerobic Digestion of Industrial Orange Waste

2006

Thermophilic anaerobic digestion of industrial orange waste (pulp and peel) with subsequent aerobic post-treatment of the digestate was evaluated. Methane production potential was first determined in batch assays and the effects of operational parameters such as hydraulic retention times (HRT) and organic loading rates (OLR) on process performance were studied through semi-continuous digestion. In batch assays, methane production potential of about 0.49 m(3) kg(-1) volatile solids (VS)(added waste) was achieved. In semi-continuous digestion, loading at 2.8 kgVS m(-3) d(-1) (2.9 kg total solids (TS) m(-3) d(-1)) and HRT of 26 d produced specific methane yields of 0.6 m(3) kg(-1) VS (added wa…

Time FactorsSewageWaste managementChemistryMethanogenesisChemical oxygen demandTemperatureIndustrial WasteGeneral MedicineHydrogen-Ion ConcentrationWaste Disposal FluidIndustrial wasteAnaerobic digestionWaste treatmentBiodegradation EnvironmentalBioreactorsAnimal scienceDigestateBioreactorEnvironmental ChemistryAnaerobiosisMethaneWaste Management and DisposalWater Science and TechnologyWaste disposalEnvironmental Technology
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Scrutiny of annexin A1 mediated membrane-membrane interaction by means of a thickness shear mode resonator and computer simulations.

2004

The dissipational quartz crystal microbalance (D-QCM) technology was applied to monitor the adsorption of vesicles to membrane-bound annexin A1 by simultaneously reading out the shifts in resonance frequency and dissipation. Solid-supported membranes (SSMs) composed of a chemisorbed octanethiol monolayer and a physisorbed 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine/1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine monolayer were immobilized on the gold electrode of a 5 MHz quartz plate. Adsorption and desorption of annexin A1 to the SSM was followed by means of the QCM technique. After nonbound annexin A1 was removed from solution, the second membrane binding was monitored by the D-QCM t…

Time FactorsSurface PropertiesAnalytical chemistryBiosensing TechniquesPhosphatidylserinesAdsorptionAnnexinDesorptionMonolayerElectrochemistryGeneral Materials ScienceComputer SimulationSulfhydryl CompoundsSpectroscopyAnnexin A1ChemistryVesicleMembranes ArtificialSurfaces and InterfacesQuartz crystal microbalanceQuartzCondensed Matter PhysicsMembranePhosphatidylcholinesCalciumAdsorptionGoldAnnexin A1Langmuir : the ACS journal of surfaces and colloids
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Partially Reversible Adsorption of Annexin A1 on POPC/POPS Bilayers Investigated by QCM Measurements, SFM, and DMC Simulations

2005

The kinetics of annexin A1 binding to solid-supported lipid bilayers consisting of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC)/1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine (POPS; 4:1) has been investigated as a function of the calcium ion concentration in the bulk phase. Quartz crystal microbalance measurements in conjunction with scanning force microscopy, fluorescence microscopy, and computer simulations indicate that at a given Ca2+ concentration annexin A1 adsorbs irreversibly on membrane domains enriched in POPS. By contrast, annexin A1 adsorbs reversibly on the POPC-enriched phase, which is composed of single POPS molecules embedded within a POPC matrix. The overall are…

Time FactorsSurface PropertiesLipid BilayersKineticsAnalytical chemistryBiosensing TechniquesPhosphatidylserinesMicroscopy Atomic ForceBiochemistrychemistry.chemical_compoundAdsorptionPhase (matter)MicroscopyComputer SimulationParticle SizeLipid bilayerMolecular BiologyPOPCAnnexin A1ChemistryOrganic Chemistrytechnology industry and agricultureMembranes ArtificialQuartz crystal microbalanceMembraneMicroscopy FluorescencePhosphatidylcholinesMolecular Medicinelipids (amino acids peptides and proteins)AdsorptionStress MechanicalMonte Carlo MethodChemBioChem
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Comprehensive transcriptional analysis of the oxidative response in yeast

2008

The oxidative stress response in Saccharomyces cerevisiae has been analyzed by parallel determination of mRNA levels and transcription rates for the entire genome. A mathematical algorithm has been adapted for a dynamic situation such as the response to stress, to calculate theoretical mRNA decay rates from the experimental data. Yeast genes have been grouped into 25 clusters according to mRNA level and transcription rate kinetics, and average mRNA decay rates have been calculated for each cluster. In most of the genes, changes in one or both experimentally determined parameters occur during the stress response. 24% of the genes are transcriptionally induced without an increase inmRNAlevels…

Time FactorsTranscription GeneticSaccharomyces cerevisiaeResponse elementSaccharomyces cerevisiaeBiochemistryModels BiologicalEvolution MolecularFungal ProteinsTranscription (biology)Gene Expression Regulation FungalP-bodiesProtein biosynthesisCluster AnalysisRNA MessengerRRNA processingMolecular BiologyGeneMessenger RNAbiologyCell Biologybiology.organism_classificationMolecular biologyCell biologyOxygenKineticsOxidative StressModels ChemicalRNARibosomes
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A thin layer-based amperometric enzyme immunoassay for the rapid and sensitive diagnosis of respiratory syncytial virus infections

2012

Abstract A simple electrochemical sandwich immunoassay involving a polystyrene microarray slide coated with monoclonal capture antibodies and carbon screen-printed sensors (SPS) was designed for the rapid diagnosis of respiratory syncytial virus (RSV). The detection of the antibody-antigen complex formation relied on the use of a horseradish peroxidase conjugate. Its chronoamperometric measurement detection was performed by confining a droplet of H 2 O 2 /3,3',5,5'-tetramethylbenzidine enzyme substrate/mediator solution within a thin layer between one spot of the microarray and the surface of one screen-printed electrochemical cell. The accumulation of the enzyme product in the thin film of…

Time Factorsrespiratory syncytial virus[SDV]Life Sciences [q-bio]Biosensing TechniquesRespiratory Syncytial Virus Infectionsscreen-printed sensorSensitivity and SpecificityHorseradish peroxidaseVirusAnalytical ChemistryImmunoenzyme TechniquesElectrochemistrymedicineHumans[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyimmunoassayAntigens ViralHorseradish PeroxidaseChromatographybiologymedicine.diagnostic_testChemistryAntibodies MonoclonalRespiratory infectionSubstrate (chemistry)Molecular biologyAmperometryRespiratory Syncytial VirusesHRP labelImmunoassay[SDE]Environmental Sciencesbiology.proteinColorimetrythin layer amperometric detectionAntibodyConjugate
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