Search results for "Oxide"

showing 10 items of 6424 documents

Dual effect of ceramide on human endothelial cells: induction of oxidative stress and transcriptional upregulation of endothelial nitric oxide syntha…

2002

Background— Generation of the second-messenger molecule ceramide by stimulated sphingomyelinase activity has been implicated in the inflammatory processes contributing to the pathogenesis of atherosclerosis. However, reports of stimulatory effects of ceramide on endothelial NO production in animal models suggest antiatherosclerotic effects of the molecule. Therefore, we investigated long-term effects of ceramide on NO generation in human endothelial cells. Methods and Results— In human umbilical vein endothelial cells (HUVECs) and in HUVEC-derived EA.hy 926 endothelial cells, C6-ceramide ( N -hexanoyl- d -erythro-sphingosine) reduced the generation of bioactive NO (RFL-6 reporter-cell assa…

Transcriptional ActivationCeramideNitric Oxide Synthase Type IIIRNA StabilityBiologyCeramidesNitric OxideUmbilical veinCell Linechemistry.chemical_compoundDownregulation and upregulationEnosPhysiology (medical)Phosphoprotein PhosphatasesHumansEnzyme InhibitorsPromoter Regions GeneticCells CulturedDose-Response Relationship DrugLipid signalingbiology.organism_classificationCell biologyUp-RegulationNitric oxide synthaseEndothelial stem cellKineticsOxidative StressSphingomyelin PhosphodiesteraseBiochemistrychemistrybiology.proteinEndothelium VascularSignal transductionNitric Oxide SynthaseCardiology and Cardiovascular MedicineReactive Oxygen SpeciesCirculation
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Role of reactive oxygen species in the regulation of HIF-1 by prolyl hydroxylase 2 under mild hypoxia

2012

The function and survival of eukaryotic cells depends on a constant and sufficient oxygen supply. Cells recognize and respond to hypoxia by accumulation of the transcription factor hypoxia-inducible factor 1 (HIF-1), composed of an oxygen-sensitive HIF-1α and a constitutive HIF-1β subunit. Besides physiology, HIF-1 induction is involved in major pathological processes such as cardiovascular disease, inflammation and cancer, which are associated with the formation of reactive oxygen species (ROS). ROS have been reported to affect HIF-1 activity but the role for ROS in regulating HIF-1 has not been definitely settled. In order to shed light on the redox-regulation of HIF-1 by ROS, we studied …

Transcriptional ActivationProcollagen-Proline DioxygenaseMedizinBiologyTransfectionBiochemistryHypoxia-Inducible Factor-Proline DioxygenasesTransactivationCell Line TumormedicineHumansRNA Small InterferingTranscription factorchemistry.chemical_classificationRegulation of gene expressionReactive oxygen speciesGene knockdownGeneral MedicineTransfectionHydrogen PeroxideHypoxia (medical)Cell HypoxiaCell biologyHypoxia-inducible factorschemistryBiochemistryHypoxia-Inducible Factor 1medicine.symptomReactive Oxygen SpeciesOxidation-Reduction
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Histamine Upregulates Gene Expression of Endothelial Nitric Oxide Synthase in Human Vascular Endothelial Cells

2003

Background— Histamine has a short-term, transient, stimulating effect on endothelial nitric oxide synthase (eNOS) activity; however, long-term effects on eNOS have not been described yet. In addition, the vascular effect of histamine seems to depend critically on eNOS functionality. Therefore, we studied the effects of histamine on eNOS gene expression and function. Methods and Results— In human umbilical vein endothelial cells (HUVECs) and HUVEC-derived EA.hy 926 cells, histamine upregulated eNOS mRNA (RNase protection assay) and protein (electron microscopic immunocytochemistry) expression. The upregulation of eNOS could be prevented by mepyramine, a selective antagonist at the H 1 recep…

Transcriptional Activationmedicine.medical_specialtyNitric Oxide Synthase Type IIIEndotheliumHistamine H1 receptorNitric OxideCell LineNitric oxidechemistry.chemical_compoundEnosPhysiology (medical)Internal medicinemedicineHumansRNA MessengerReceptors Histamine H1Enzyme InhibitorsPromoter Regions GeneticProtein Kinase InhibitorsCells CulturedDose-Response Relationship DrugbiologyNitric Oxide Synthase Type IIIbiology.organism_classificationMolecular biologyUp-RegulationNitric oxide synthaseKineticsOxidative StressEndocrinologymedicine.anatomical_structurechemistryEnzyme InductionCalcium-Calmodulin-Dependent Protein Kinasesbiology.proteinEndothelium VascularNitric Oxide SynthaseHistamine H3 receptorCalcium-Calmodulin-Dependent Protein Kinase Type 2Reactive Oxygen SpeciesCardiology and Cardiovascular MedicineHistamineHistamineCirculation
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Effect of DNA Aptamer Concentration on the Conductivity of a Water-Gated Al:ZnO Thin-Film Transistor-Based Biosensor

2022

This research was supported by State Education Development Agency, Project No. 1.1.1.2/ 16/I/001, Research Proposal No. 1.1.1.2/VIAA/4/20/590 “Portable diagnostic device based on a biosensor array of 2D material sensing elements”.

Transistors ElectronicWaterzinc oxide:NATURAL SCIENCES::Physics [Research Subject Categories]thin-film transistorBiosensing TechniquesDNAAptamers NucleotidebiosensorBiochemistryAtomic and Molecular Physics and OpticsAnalytical ChemistryelectrochemistryZinc OxideElectrical and Electronic EngineeringInstrumentationSensors
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Oxidative stress induces distinct physiological responses in the two Trebouxia phycobionts of the lichen Ramalina farinacea

2010

† Background and Aims Most lichens form associations with Trebouxia phycobionts and some of them simultaneously include genetically different algal lineages. In other symbiotic systems involving algae (e.g. reef corals), the relative abundances of different endosymbiotic algal clades may change over time. This process seems to provide a mechanism allowing the organism to respond to environmental stress. A similar mechanism may operate in lichens with more than one algal lineage, likewise protecting them against environmental stresses. Here, the physiological responses to oxidative stress of two distinct Trebouxia phycobionts (provisionally named TR1 and TR9) that coexist within the lichen R…

TrebouxiaAntioxidantLichensmedicine.medical_treatmentGlutathione reductasePlant ScienceGenes PlantPhotosynthesismedicine.disease_causeRamalina farinaceaSuperoxide dismutaseChlorophytaBotanyBenzene DerivativesmedicineHSP70 Heat-Shock ProteinsPhotosynthesisChlorophyll fluorescencebiologySuperoxide DismutaseGenetic VariationOriginal Articlesbiology.organism_classificationOxidative StressGlutathione ReductaseBiochemistrybiology.proteinOxidative stressAnnals of Botany
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The organic air pollutant cumene hydroperoxide interferes with NOantioxidant role in rehydrating lichen

2013

Organic pollutants effects on lichens have not been addressed. Rehydration is critical for lichens, a burst of free radicals involving NO occurs. Repeated dehydrations with organic pollutants could increase oxidative damage. Our aim is to learn the effects of cumene hydroperoxide (CP) during lichen rehydration using Ramalina farinacea (L.) Ach., its photobiont Trebouxia spp. and Asterochloris erici. Confocal imaging shows intracellular ROS and NO production within myco and phycobionts, being the chloroplast the main source of free radicals. CP increases ROS, NO and lipid peroxidation and reduces chlorophyll autofluorescence, although photosynthesis remains unaffected. Concomitant NO inhibit…

TrebouxiaChlorophyllAntioxidantLichensHealth Toxicology and Mutagenesismedicine.medical_treatmentBOTANICAToxicologymedicine.disease_causePhotosynthesisRamalina farinaceaLipid peroxidationchemistry.chemical_compoundBotanymedicineBenzene DerivativesDesiccationPhotosynthesisVolatile organic pollutantsBIOLOGIA VEGETALAir PollutantsbiologyDehydrationROSNitric oxideGeneral Medicinebiology.organism_classificationPollutionOxidative StressBiochemistrychemistryCumene hydroperoxideChlorophyllTrebouxiaNitrogen OxidesOxidation-ReductionOxidative stress
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Different strategies to achieve Pb-tolerance by the two Trebouxia algae coexisting in the lichen Ramalina farinacea.

2012

Lichen thalli are permeable to airborne substances, including heavy metals, which are harmful to cell metabolism. Ramalina farinacea shows a moderate tolerance to Pb. This lichen comprises two Trebouxia phycobionts, provisionally referred to as TR1 and TR9, with distinct physiological responses to acute oxidative stress. Thus, there is a more severe decay in photosynthesis and photosynthetic pigments in TR1 than in TR9. Similarly, under oxidative stress, antioxidant enzymes and HSP70 protein decrease in TR1 but increase in TR9. Since Pb toxicity is associated with increased ROS formation, we hypothesized greater Pb tolerance in this phycobiont. Accordingly, the aim of the present study was …

TrebouxiaChlorophyllAntioxidantLichensPhysiologymedicine.medical_treatmentBOTANICAGlutathione reductasePlant SciencePhotosynthesisAntioxidantsFluorescenceLichen microalgaeRamalina farinaceaSuperoxide dismutaseElectron TransportAscorbate PeroxidasesSpecies SpecificityChlorophytaStress PhysiologicalBotanymedicineHSP70 Heat-Shock ProteinsPhotosynthesisSymbiosisChlorophyll fluorescencePlant ProteinsBIOLOGIA VEGETALbiologySuperoxide DismutaseStress responsebiology.organism_classificationAPXCatalaseOxidative StressGlutathione ReductaseBiochemistryLeadTrebouxia algaebiology.proteinReactive Oxygen SpeciesHeavy metal toleranceAgronomy and Crop ScienceJournal of plant physiology
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Push‐Pull Design of Bis(tridentate) Ruthenium(II) Polypyridine Chromophores as Deep Red Light Emitters in Light‐Emitting Electrochemical Cells

2013

Light-emitting electrochemical cells (LECs) with a simple device structure were prepared by using heteroleptic bis(tridentate) ruthenium(II) complexes [1](PF6)(2)-[3](PF6)(2) as emitters. The push-pull substitution shifts the emission energy to low energy, into the NIR region. The devices emit deep red light up to a maximum emission wavelength of 755 nm [CIE (International Commission on Illumination) coordinates: x = 0.731, y = 0.269 for [3](PF6)(2)], which, to the best of our knowledge, is the lowest emission energy for LECs containing bis(tridentate) ruthenium(II) complexes. A device structure of ITO/PEDOT:PSS/ruthenium(II) complex/Ag was used, and the thickness of the emitting layer was …

Tridentate ligandsLuminescenceligandsMolecular electronicschemistry.chemical_elementNChromophorePhotochemistry530RutheniumRutheniumElectrochemical cellIndium tin oxideInorganic Chemistrychemistry.chemical_compoundPEDOT:PSSchemistryQuantum efficiencyMethyl methacrylateLuminescenceEuropean Journal of Inorganic Chemistry
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Suppression of intestinal microbiota-dependent production of pro-atherogenic trimethylamine N-oxide by shifting L-carnitine microbial degradation.

2014

Abstract Aims Trimethylamine-N-oxide (TMAO) is produced in host liver from trimethylamine (TMA). TMAO and TMA share common dietary quaternary amine precursors, carnitine and choline, which are metabolized by the intestinal microbiota. TMAO recently has been linked to the pathogenesis of atherosclerosis and severity of cardiovascular diseases. We examined the effects of anti-atherosclerotic compound meldonium, an aza-analogue of carnitine bioprecursor gamma-butyrobetaine (GBB), on the availability of TMA and TMAO. Main methods Wistar rats received L-carnitine, GBB or choline alone or in combination with meldonium. Plasma, urine and rat small intestine perfusate samples were assayed for L-car…

TrimethylamineTrimethylamine N-oxideBacterial growthBiologyGeneral Biochemistry Genetics and Molecular BiologyStatistics NonparametricCholinechemistry.chemical_compoundMethylaminesBetaineTandem Mass SpectrometryCarnitineBlood plasmamedicineCholineAnimalsCarnitineGeneral Pharmacology Toxicology and PharmaceuticsRats WistarChromatography High Pressure LiquidMeldoniumCarbon IsotopesMicrobiotaGeneral MedicineBiosynthetic PathwaysRatsBetaineGastrointestinal TractBiochemistrychemistrymedicine.drugMethylhydrazinesLife sciences
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Hindering the formation of ferrocenes: mono(cyclopentadienyl)halo iron complexes [Fe(C5R5)X] containing a sterically bulky cyclopentadienyl ligand

2001

Abstract The reaction of lithium 1,2,4-tris(trimethylsilyl)cyclopentadienide Li(Si 3 Cp) with ferrous halide FeX 2 (X=Cl, Br, I) in THF at −95 °C gives a thermally extremely sensitive compound that can be regarded as a functional equivalent for the 14-electron fragment [Fe(Si 3 Cp)X]. Experiments to trap this species with TMEDA gives thermally sensitive, colorless, paramagnetic crystals of the composition [LiFe(Si 3 Cp)Cl 2 (TMEDA) 3 ]. Trimethylphosphite gives isolable 18-electron half-sandwich complexes [Fe(Si 3 Cp){P(OMe) 3 } 2 X]. [Fe(Si 3 Cp)X] is also formed by reducing the ferric derivative [Fe(Si 3 Cp)Cl 2 ] with zinc. Analogous reactivity towards ferrous halides is observed for the…

TrimethylsilylLigandOrganic ChemistryInorganic chemistrychemistry.chemical_elementBiochemistryInorganic Chemistrychemistry.chemical_compoundCrystallographyFerrocenechemistryCyclopentadienyl complexMaterials ChemistrymedicineFerricReactivity (chemistry)LithiumPhysical and Theoretical Chemistrymedicine.drugCarbon monoxideJournal of Organometallic Chemistry
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