Search results for "Superoxide"

showing 10 items of 462 documents

A new dual inhibitor of arachidonate metabolism isolated from Helichrysum italicum.

2003

Six acetophenones (1-6) and one gamma-pyrone (7), previously isolated from Helichrysum italicum, were tested for their ability to inhibit enzymatic and non-enzymatic lipid peroxidation, the stable 1,1-diphenyl-2-pycryl-hydrazyl free radical, superoxide scavenging and arachidonic acid metabolism. In addition, they were studied in different experimental models such as the chronic inflammation induced by 12-O-tetradecanoylphorbol 13-acetate (TPA), the phospholipase A(2)-induced mouse paw oedema test, the carrageenan-induced mouse paw oedema test, and the writhing induced by acetic acid in the mouse. Of the assayed compounds, only 1 inhibited enzymatic lipid peroxidation but had no effect on no…

AntioxidantFree RadicalsNeutrophilsmedicine.medical_treatmentCarrageenanHelichrysum italicumLeukotriene B4Phospholipases ALipid peroxidationchemistry.chemical_compoundMiceIndometacinGlucosidesmedicineAnimalsEdemaRats WistarPeroxidasePharmacologyHelichrysumInflammationPhospholipase AAnalgesicsArachidonic AcidbiologyDose-Response Relationship DrugSuperoxidePlant ExtractsAcetophenonesEarbiology.organism_classificationCarrageenanHindlimbRatsBiochemistrychemistryTetradecanoylphorbol AcetateArachidonic acidFemaleLipid Peroxidationmedicine.drugEuropean journal of pharmacology
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Moderate exercise is an antioxidant: Upregulation of antioxidant genes by training

2006

Exercise causes oxidative stress only when exhaustive. Strenuous exercise causes oxidation of glutathione, release of cytosolic enzymes, and other signs of cell damage. However, there is increasing evidence that reactive oxygen species (ROS) not only are toxic but also play an important role in cell signaling and in the regulation of gene expression. Xanthine oxidase is involved in the generation of superoxide associated with exhaustive exercise. Allopurinol (an inhibitor of this enzyme) prevents muscle damage after exhaustive exercise, but also modifies cell signaling pathways associated with both moderate and exhaustive exercise in rats and humans. In gastrocnemius muscle from rats, exerc…

AntioxidantFree Radicalsmedicine.medical_treatmentBiologyPharmacologymedicine.disease_causeModels BiologicalBiochemistryAntioxidantsGene Expression Regulation EnzymologicSuperoxide dismutasechemistry.chemical_compoundDownregulation and upregulationPhysical Conditioning AnimalPhysiology (medical)medicineAnimalsHumansMuscle SkeletalXanthine oxidaseExerciseCell damagechemistry.chemical_classificationReactive oxygen speciesSuperoxidemedicine.diseaseAdaptation PhysiologicalUp-RegulationchemistryBiochemistrybiology.proteinOxidative stressFree Radical Biology and Medicine
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Free radical biology of the cardiovascular system

2012

Most cardiovascular diseases (CVDs), as well as age-related cardiovascular alterations, are accompanied by increases in oxidative stress, usually due to increased generation and/or decreased metabolism of ROS (reactive oxygen species; for example superoxide radicals) and RNS (reactive nitrogen species; for example peroxynitrite). The superoxide anion is generated by several enzymatic reactions, including a variety of NADPH oxidases and uncoupled eNOS (endothelial NO synthase). To relieve the burden caused by this generation of free radicals, which also occurs as part of normal physiological processes, such as mitochondrial respiratory chain activity, mammalian systems have developed endogen…

AntioxidantFree Radicalsmedicine.medical_treatmentmedicine.disease_causeCardiovascular SystemAntioxidantsRenin-Angiotensin Systemchemistry.chemical_compoundmedicineAnimalsHumansReactive nitrogen speciesFree-radical theory of agingchemistry.chemical_classificationClinical Trials as TopicReactive oxygen speciesChemistrySuperoxideFree Radical ScavengersGeneral MedicinePPAR gammaOxidative StressMitochondrial respiratory chainBiochemistryCardiovascular DiseasesPeroxynitriteOxidative stressClinical Science
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Antioxidant and glutathione-related enzymatic activities in rat sciatic nerve

1990

Abstract The present work tries to establish the antioxidant capacity of the peripheral nervous tissue of the rat, in terms of the enzymatic activities present in this tissue that either prevent the formation of activated species as the semiquinone radical (DT-diaphorase), protect against activated oxygen species (superoxide dismutase, glutathione peroxidase), conjugate natural toxic products or xenobiotics (glutathione S-transferases, especially the activity conjugating 4-hydroxy-nonenal), or complete the glutathione system metabolism (glutathione disulfide reductase, γ-glutamyl transpeptidase). All the activities studied are lower in this tissue than they are in liver, except for γ-glutam…

AntioxidantGPX3medicine.medical_treatmentGlutathione reductaseToxicologyAntioxidantsSuperoxide dismutaseCellular and Molecular Neurosciencechemistry.chemical_compoundDevelopmental NeurosciencemedicineAnimalsQuinone ReductasesGlutathione Transferasechemistry.chemical_classificationGlutathione PeroxidasebiologySuperoxide DismutaseChemistryGlutathione peroxidaseNervous tissuegamma-GlutamyltransferaseGlutathioneGlutathioneSciatic NerveRatsGlutathione S-transferasemedicine.anatomical_structureBiochemistrybiology.proteinNeurotoxicology and Teratology
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Effects of a glyphosate-based herbicide on survival and oxidative status of a non-target herbivore, the Colorado potato beetle (Leptinotarsa decemlin…

2018

Abstract Glyphosate is the globally most used herbicide against a wide range of weeds. Glyphosate has been considered safe to animals as it mainly targets physiological pathways in plants. However, recent toxicological studies have revealed that glyphosate can cause various toxic effects also on animals. In this study, we investigated the direct toxic effects of a glyphosate-based herbicide (GBH, Roundup® Bio) on 1) survival and 2) oxidative status of a non-target herbivore by using Colorado potato beetles (Leptinotarsa decemlineata), originating from Poland and USA, as model species. Larvae were randomly divided into three groups: 1) high concentration (100% Roundup Bio, 360 g/l), 2) low c…

AntioxidantPhysiologyHealth Toxicology and Mutagenesismedicine.medical_treatmentherbisidit010501 environmental sciencesToxicology01 natural sciencesBiochemistrychemistry.chemical_compoundRandom Allocationantioxidant defenceglyfosaattiinsectsLeptinotarsa0303 health sciencesbiologyGeneral MedicineAdaptation PhysiologicalDrug Resistance MultipleOrganophosphatesColeopteraCatalaseGlyphosateLarvaorganophosphateGlycineSuperoxide dismutase03 medical and health sciencesAnimal scienceglyphosatemedicineAnimalsHerbivoryoksidatiivinen stressipesticide030304 developmental biology0105 earth and related environmental sciencesantioksidantitfosfaatitHerbicidesfungiColorado potato beetleOsmolar Concentrationta1182koloradonkuoriainenPesticide Residuestorjunta-aineetCell BiologyGlutathionePesticidebiology.organism_classificationSurvival AnalysisresistenssiOxidative Stresschemistryhyönteisetbiology.proteinta1181Lipid PeroxidationPolandBiomarkersVermontComparative biochemistry and physiology. Toxicologypharmacology : CBP
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Inhibition of induced DNA oxidative damage by beers: correlation with the content of polyphenols and melanoidins.

2005

Beers are a source of dietary flavonoids; however, there exist differences in composition, alcohol concentration, and beneficial activities. To characterize these differences, three kinds of lager beer of habitual consumption in Spain, dark, blond, and alcohol-free, were assayed for total phenolic content, antioxidant activity, superoxide and hydroxyl radical scavenging activities, and in vitro inhibitory effect on DNA oxidative damage. Furthermore, their melanoidin content and correlation with antioxidant activity were evaluated. Dark beer contained the highest total phenolic (489 +/- 52 mg/L) and melanoidin (1.49 +/- 0.02 g/L) contents with a 2-fold difference observed when compared to th…

AntioxidantPolymersmedicine.medical_treatmentAntioxidantschemistry.chemical_compoundPhenolsSuperoxidesmedicineFood sciencePhenolsFlavonoidsChemistrySuperoxideDeoxyriboseHydroxyl RadicalMelanoidinfood and beveragesBeerPolyphenolsGeneral ChemistryFree Radical ScavengersBiochemistryDeoxyribosePolyphenolHydroxyl radicalComposition (visual arts)General Agricultural and Biological SciencesOxidation-ReductionDNA DamageJournal of agricultural and food chemistry
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Oxidative stress protection by manganese complexes of tail-tied aza-scorpiand ligands.

2015

The Mn2+ coordination chemistry of double scorpiand ligands in which two polyazacyclophane macrocycles have been connected by pyridine, phenanthroline and bipyridine spacers has been studied by potentiometry, paramagnetic NMR and electrochemistry. All ligands show high stability with Mn2+ and the complexes were formed in a wide pH range. DFT calculations support the structures and coordination geometries derived from the study. A remarkable antioxidant activity was evidenced for these systems by the McCord-Fridovich assay and in Escherichiacoli sodAsodB deficient bacterial cells. The three systems were tested as anti-inflammatory drugs in human macrophages measuring the accumulation of cyto…

AntioxidantStereochemistrymedicine.medical_treatmentPhenanthrolineInorganic chemistrychemistry.chemical_elementManganese010402 general chemistryElectrochemistry01 natural sciencesBiochemistryAntioxidantsCoordination complexInorganic ChemistrySuperoxide dismutasechemistry.chemical_compoundBipyridineBacterial ProteinsCoordination ComplexesCell Line TumorPyridinemedicineEscherichia coliHumanschemistry.chemical_classificationManganesebiology010405 organic chemistryChemistrySuperoxide DismutaseMacrophagesAnti-Inflammatory Agents Non-Steroidal0104 chemical sciencesOxidative Stressbiology.proteinJournal of inorganic biochemistry
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Organic Nitrates and Nitrate Tolerance—State of the Art and Future Developments

2010

The hemodynamic and antiischemic effects of nitroglycerin (GTN) are lost upon chronic administration due to the rapid development of nitrate tolerance. The mechanism of this phenomenon has puzzled several generations of scientists, but recent findings have led to novel hypotheses. The formation of reactive oxygen and nitrogen species in the mitochondria and the subsequent inhibition of the nitrate-bioactivating enzyme mitochondrial aldehyde dehydrogenase (ALDH-2) appear to play a central role, at least for GTN, that is, bioactivated by ALDH-2. Importantly, these findings provide the opportunity to reconcile the two “traditional” hypotheses of nitrate tolerance, that is, the one postulating …

AntioxidantSuperoxideMechanism (biology)medicine.medical_treatmentMitochondrionmedicine.disease_causeHeme oxygenasechemistry.chemical_compoundchemistryNitrateBiochemistrymedicinePeroxynitriteOxidative stress
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Nitic oxide promotes strong cytotoxicity of phenolic compounds against escherichia coli. The influence of antioxidant defenses

2003

[EN] The induction of mutagenic and cytotoxic effects by simple phenolics, including catechol (CAT), 3,4dihydroxyphenylacetic acid (DOPAC), hydroquinone (HQ), and 2,5-dihydroxyphenylacetic (homogentisic) acid (HGA), appears to occur through an oxidative mechanism based on the ability of these compounds to undergo autoxidation, leading to quinone formation with the production of reactive oxygen species. This is supported by the detection of such adverse effects in plate assays using Escherichia coli tester strains deficient in the OxyR function, but not in OxyR(+) strains. The OxyR protein is a redox-sensitive regulator of genes encoding antioxidant enzymes including catalase and alkyl hydro…

AntioxidantUltraviolet Raysmedicine.medical_treatmentCatecholsOxidative toxicityFree radicalsOxidative phosphorylationNitric OxideBiochemistryAntioxidantschemistry.chemical_compoundCaffeic AcidsQUIMICA ORGANICASuperoxidesPhysiology (medical)medicineEscherichia coliBIOQUIMICA Y BIOLOGIA MOLECULARHydrogen peroxidechemistry.chemical_classificationMelaninsReactive oxygen speciesbiologyHydroquinoneAutoxidationDose-Response Relationship DrugPhenolEscherichia coli ProteinsNitric oxideHydrogen PeroxideCatalaseFlow CytometryQuinoneHydroquinonesDNA-Binding ProteinsOxygenRepressor ProteinschemistryBiochemistryCatalaseMutationbiology.proteinQuinoneOxyROxidation-ReductionDNA DamageMutagensTranscription Factors
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PTEN Mediates the Antioxidant Effect of Resveratrol at Nutritionally Relevant Concentrations

2014

Introduction.Antioxidant properties of resveratrol have been intensively studied for the last years, bothin vivoandin vitro. Its bioavailability after an oral dose is very low and therefore it is very important to make sure that plasma concentrations of free resveratrol are sufficient enough to be active as antioxidant.Aims.In the present study, using nutritionally relevant concentrations of resveratrol, we aim to confirm its antioxidant capacity on reducing peroxide levels and look for the molecular pathway involved in this antioxidant effect.Methods.We used mammary gland tumor cells (MCF-7), which were pretreated with different concentrations of resveratrol for 48 h, and/or a PTEN inhibit…

Antioxidantendocrine system diseasesArticle Subjectmedicine.medical_treatmentlcsh:MedicineResveratrolGeneral Biochemistry Genetics and Molecular BiologyAntioxidantschemistry.chemical_compoundDownregulation and upregulationStilbenesmedicinePTENHumansPhosphorylationskin and connective tissue diseasesHydrogen peroxidePI3K/AKT/mTOR pathwayGeneral Immunology and MicrobiologybiologyAkt/PKB signaling pathwaySuperoxide Dismutaseorganic chemicalslcsh:RPTEN Phosphohydrolasefood and beveragesGeneral MedicineHydrogen PeroxideCatalaseUp-RegulationEnzyme ActivationBiochemistrychemistryCatalaseResveratrolbiology.proteinMCF-7 CellsProto-Oncogene Proteins c-akthormones hormone substitutes and hormone antagonistsSignal TransductionResearch Article
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