Search results for "peroxynitrite"

showing 10 items of 62 documents

Therapeutic effect of enhancing endothelial nitric oxide synthase (eNOS) expression and preventing eNOS uncoupling

2011

Nitric oxide (NO) produced by the endothelium is an important protective molecule in the vasculature. It is generated by the enzyme endothelial NO synthase (eNOS). Similar to all NOS isoforms, functional eNOS transfers electrons from nicotinamide adenine dinucleotide phosphate (NADPH), via the flavins flavin adenine dinucleotide and flavin mononucleotide in the carboxy-terminal reductase domain, to the heme in the amino-terminal oxygenase domain. Here, the substrate L-arginine is oxidized to L-citrulline and NO. Cardiovascular risk factors such as diabetes mellitus, hypertension, hypercholesterolaemia or cigarette smoking reduce bioactive NO. These risk factors lead to an enhanced productio…

PharmacologyFlavin adenine dinucleotideNADPH oxidasebiologyNitric Oxide Synthase Type IIIbiology.organism_classificationCofactorNitric oxidechemistry.chemical_compoundBiochemistrychemistryEnosbiology.proteinPeroxynitriteNicotinamide adenine dinucleotide phosphateBritish Journal of Pharmacology
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Effects of plant alkylphenols on cytokine production, tyrosine nitration and inflammatory damage in the efferent phase of contact hypersensitivity

2007

Background and purpose: The phenolic compounds isoprenylhydroquinone glucoside (IHG), 3,5-dicaffeoylquinic acid (DCA), and its methyl ester (DCE) have previously been shown to inhibit both contact hypersensitivity (CHS) and peroxynitrite reactivity. The present work seeks to establish a relationship between the anti-inflammatory effect and the release of cytokines and tyrosine nitration in skin. Experimental approach: Murine CHS was developed by means of sensitization and challenge with dinitrofluorobenzene (DNFB) or oxazolone. Ear swelling was measured 24 and 96 h after challenge. Interleukin (IL)-1b, IL-4, and tumour necrosis factor (TNF)-a were measured by ELISA; and the expression of in…

Pharmacologybiologymedicine.medical_treatmentInterleukinPharmacologyOxazoloneNitric oxide synthasechemistry.chemical_compoundCytokinemedicine.anatomical_structurechemistryBiochemistryNitrationmedicinebiology.proteinTyrosinePeroxynitriteSensitizationBritish Journal of Pharmacology
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Explaining the phenomenon of nitrate tolerance.

2005

During the last century, nitroglycerin has been the most commonly used antiischemic and antianginal agent. Unfortunately, after continuous application, its therapeutic efficacy rapidly vanishes. Neurohormonal activation of vasoconstrictor signals and intravascular volume expansion constitute early counter-regulatory responses (pseudotolerance), whereas long-term treatment induces intrinsic vascular changes, eg, a loss of nitrovasodilator-responsiveness (vascular tolerance). This is caused by increased vascular superoxide production and a supersensitivity to vasoconstrictors secondary to a tonic activation of protein kinase C. NADPH oxidase(s) and uncoupled endothelial nitric oxide synthase …

PhysiologyVasodilator AgentsPharmacologymedicine.disease_causeNitric OxideProstacyclin synthaseNitric oxidechemistry.chemical_compoundNitroglycerinSuperoxidesPeroxynitrous AcidmedicineCyclic GMP-Dependent Protein KinasesAnimalsHumansBiotransformationchemistry.chemical_classificationReactive oxygen speciesNADPH oxidasebiologyChemistrySuperoxidePhosphoric Diester HydrolasesAldehyde Dehydrogenase MitochondrialDrug ToleranceAldehyde DehydrogenaseCyclic Nucleotide Phosphodiesterases Type 1VasodilationOxidative StressBiochemistryVasoconstrictioncardiovascular systembiology.proteinEndothelium VascularCardiology and Cardiovascular MedicineSoluble guanylyl cyclaseReactive Oxygen SpeciesPeroxynitriteOxidative stressSignal TransductionCirculation research
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Hypoxia-induced dysfunction of rat diaphragm

2004

Contains fulltext : 47331.pdf (Publisher’s version ) (Closed access) Oxidants may play a role in hypoxia-induced respiratory muscle dysfunction. In the present study we hypothesized that hypoxia-induced impairment in diaphragm contractility is associated with elevated peroxynitrite generation. In addition, we hypothesized that strenuous contractility of the diaphragm increases peroxynitrite formation. In vitro force-frequency relationship, isotonic fatigability, and nitrotyrosine levels were assessed under hypoxic (Po(2) approximately 6.5 kPa) and hyperoxic (Po(2) approximately 88.2 kPa) control conditions and also in the presence of authentic peroxynitrite (60 min), ebselen (60 min), and t…

Pulmonary and Respiratory MedicineAzolesMalemedicine.medical_specialtyPhysiologyDiaphragmAetiology screening and detection [ONCOL 5]In Vitro TechniquesIsoindolesNitric oxideContractilitychemistry.chemical_compoundTranslational research [ONCOL 3]Physiology (medical)Internal medicineOrganoselenium CompoundsPeroxynitrous AcidmedicineRespiratory muscleAnimalsRespiratory systemEnzyme InhibitorsRats WistarHypoxiaHeart lung and circulation [UMCN 2.1]Renal disorder [IGMD 9]omega-N-MethylarginineNitrotyrosineCell BiologyHypoxia (medical)Tissue engineering and pathology [NCMLS 3]musculoskeletal systemRatsPathogenesis and modulation of inflammation [N4i 1]EndocrinologychemistryBiochemistryMuscle FatigueTyrosineRat DiaphragmLipid Peroxidationmedicine.symptomPeroxynitriteMuscle ContractionAmerican Journal of Physiology - Lung Cellular and Molecular Physiology
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Oxidative stress in cardiovascular disease: successful translation from bench to bedside?

2007

Over the last decades, sound evidence has been generated that oxidative stress is one of the most potent inductors of endothelial dysfunction and is involved at all stages of atherosclerotic plaque evolution.1,2 Experimental and animal models provide a clear association between the amount of oxidative challenge and reversible vascular dysfunction that can be observed before permanent alterations of the vessel wall occur. Article p 1367 Important for cardiovascular biology is the consumption of nitric oxide (NO) by reactive oxygen species. Endothelium relaxant factor is a central molecule in vascular homeostasis as a modulator of endothelial tone and reactivity.3 It is produced by NO synthas…

RiskEndotheliumOxidative phosphorylation030204 cardiovascular system & hematologyPharmacologymedicine.disease_causeArginineNitric OxideNitric oxide03 medical and health scienceschemistry.chemical_compound0302 clinical medicinePhysiology (medical)medicineHumansEndothelial dysfunction030304 developmental biologychemistry.chemical_classification0303 health sciencesReactive oxygen speciesbiologybusiness.industryThrombosismedicine.diseaseAtherosclerosis3. Good healthVasodilationOxidative Stressmedicine.anatomical_structurechemistryCardiovascular DiseasesMyeloperoxidaseImmunologyHemorheologybiology.proteinEndothelium VascularCardiology and Cardiovascular MedicinebusinessReactive Oxygen SpeciesPeroxynitriteOxidative stressBiomarkersCirculation
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Paradoxical effect of l-arginine: Acceleration of endothelial cell senescence

2009

We have recently shown that inhibition of nitric oxide (NO) synthesis by asymmetrical dimethylarginine (ADMA) accelerated endothelial cell (EC) senescence which was prevented by coincubation with L-arginine; however the effect of long-term treatment of l-arginine alone on senescence of ECs have not been investigated. Human ECs were cultured in medium containing different concentrations of L-arginine until senescence. L-Arginine paradoxically accelerated senescence indicated by inhibiting telomerase activity. Moreover, L-arginine decreased NO metabolites, increased peroxynitrite, and 8-iso-prostaglandin F(2alpha) formation. In old cells, the mRNA expression of human amino acid transporter (h…

SenescenceArginineEndotheliumBiophysicsBiologyArginineNitric OxideBiochemistryNitric oxidechemistry.chemical_compoundmedicineHumansCationic Amino Acid Transporter 2Molecular BiologyCells CulturedCellular SenescenceCationic Amino Acid Transporter 1ArginaseEndothelial CellsCell BiologyTransfectionMolecular biologyArginaseEndothelial stem cellOxidative Stressmedicine.anatomical_structurechemistryEndothelium VascularPeroxynitriteBiochemical and Biophysical Research Communications
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Nitration of cathepsin D enhances its proteolytic activity during mammary gland remodelling after lactation

2009

Proteomic studies in the mammary gland of control lactating and weaned rats have shown that there is an increased pattern of nitrated proteins during weaning when compared with controls. Here we report the novel finding that cathepsin D is nitrated during weaning. The expression and protein levels of this enzyme are increased after 8 h of litter removal and this up-regulation declines 5 days after weaning. However, there is a marked delay in cathepsin D activity since it does not increase until 2 days post-weaning and remains high thereafter. In order to find out whether nitration of cathepsin D regulates its activity, iNOS (inducible nitric oxide synthase)−/− mice were used. The expression…

Spectrometry Mass Electrospray Ionizationmedicine.medical_specialtyImmunoblottingNitric Oxide Synthase Type IICathepsin DWeaningCathepsin DBiochemistryChromatography AffinityMice03 medical and health scienceschemistry.chemical_compoundMammary Glands Animal0302 clinical medicinePregnancyTandem Mass SpectrometryInternal medicineLactationmedicineAnimalsImmunoprecipitationLactationWeaningElectrophoresis Gel Two-DimensionalMolecular BiologyMammary gland involution030304 developmental biology0303 health sciencesNitratesbiologyReverse Transcriptase Polymerase Chain ReactionNitrotyrosineLife SciencesCell BiologyEnzyme assayRats3. Good healthNitric oxide synthaseEndocrinologymedicine.anatomical_structurechemistry030220 oncology & carcinogenesisbiology.proteinFemalePeroxynitriteChromatography LiquidBiochemical Journal
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Chemical model systems for cellular nitros(yl)ation reactions.

2009

S-nitros(yl)ation belongs to the redox-based posttranslational modifications of proteins but the underlying chemistry is controversial. In contrast to current concepts involving the autoxidation of nitric oxide ( • NO, nitrogen monoxide), we and others have proposed the formation of peroxynitrite (oxoperoxonitrate (1-)) as an essential intermediate. This requires low cellular fluxes of 'NO and superoxide ( • O 2 - ), for which model systems have been introduced. We here propose two new systems for nitros(yl)ation that avoid the shortcomings of previous models. Based on the thermal decomposition of 3-morpholinosydnonimine, equal fluxes of • NO and • O 2 - were generated and modulated by the …

StereochemistrySwineNitrosationIn Vitro TechniquesPhotochemistryNitric OxideBiochemistryRedoxArticlechemistry.chemical_compoundElectrophilic substitutionPhysiology (medical)Peroxynitrous AcidAnimalsAutoxidationPhenolNitrosoniumSuperoxideSuperoxide DismutaseGlutathioneIsocitrate DehydrogenasePeroxynitrous acidchemistryModels ChemicalMolsidomineNitrosationCattlePeroxynitriteFree radical biologymedicine
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Regulation of Human Mitochondrial Aldehyde Dehydrogenase (ALDH-2) Activity by Electrophiles in Vitro

2011

Recently, mitochondrial aldehyde dehydrogenase (ALDH-2) was reported to reduce ischemic damage in an experimental myocardial infarction model. ALDH-2 activity is redox-sensitive. Therefore, we here compared effects of various electrophiles (organic nitrates, reactive fatty acid metabolites, or oxidants) on the activity of ALDH-2 with special emphasis on organic nitrate-induced inactivation of the enzyme, the biochemical correlate of nitrate tolerance. Recombinant human ALDH-2 was overexpressed in Escherichia coli; activity was determined with an HPLC-based assay, and reactive oxygen and nitrogen species formation was determined by chemiluminescence, fluorescence, protein tyrosine nitration,…

Thioredoxin reductaseAldehyde dehydrogenaseNitric Oxidemedicine.disease_causeBiochemistryNitric oxideMitochondrial Proteinschemistry.chemical_compoundmedicineHumansEnzyme InhibitorsMolecular BiologybiologyAldehyde Dehydrogenase MitochondrialMolecular Bases of DiseaseHydrogen PeroxideCell BiologyAldehyde DehydrogenaseRecombinant ProteinsEnzyme assaychemistryBiochemistryNitrosationbiology.proteinThioredoxinPeroxynitriteOxidative stressJournal of Biological Chemistry
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The role of NtRBOHD in regulation of response to cryptogein in tobacco cells

2014

International audience

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesreactive oxygen speciesnitric oxide[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyplant immunitysignalingComputingMilieux_MISCELLANEOUSperoxynitritecryptogein
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