Search results for "OXIDASE"

showing 10 items of 927 documents

Effect of a two-year supplementation with low doses of antioxidant vitamins and/or minerals in elderly subjects on levels of nutrients and antioxidan…

1997

Eighty-one elderly hospitalized subjects (65 years) were recruited for a double-blind placebo-controlled study to examine low dose supplementation of antioxidant vitamins and minerals on biological and functional parameters of free radical metabolism. Subjects were randomly assigned to one of the four treatment groups, daily receiving for 2 years: placebo group; mineral group: 20 mg zinc, 100 micrograms selenium; vitamin group: 120 mg vitamin C (Vit C), 6 mg beta-carotene (beta CA), 15 mg vitamin E (Vit E); mineral and vitamin group: Zn 20 mg, Se 100 micrograms, Vit C 120 mg, beta CA 6 mg, Vit E 15 mg.Fifty-seven subjects completed the study. A large frequency of Vit C, Zn and Se deficienci…

MaleVitaminmedicine.medical_specialtyErythrocytesAntioxidantmedicine.medical_treatmentNutritional StatusMedicine (miscellaneous)chemistry.chemical_elementAscorbic AcidThiobarbituric Acid Reactive SubstancesAntioxidantsSeleniumchemistry.chemical_compoundOral administrationInternal medicinemedicineHumansVitamin ENutritional Physiological PhenomenaAgedAged 80 and overGlutathione PeroxidaseMineralsNutrition and DieteticsVitamin CSuperoxide DismutaseVitamin EVitaminsMetabolismbeta CaroteneAscorbic acidGlutathioneZincEndocrinologychemistryBiochemistryFemaleSeleniumJournal of the American College of Nutrition
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Vitamin E deficiency and the susceptibility to lipid peroxidation of mouse cardiac and skeletal muscles

1984

Effects of a short-term vitamin E deficiency on some lipid peroxidative properties were investigated in mouse cardiac and skeletal muscles. The concentration of vitamin E decreased 35.8% in 5 weeks and 61.2% in 12 weeks in skeletal muscle. The corresponding decrease in cardiac muscle was 65.7% in 12 weeks. Simultaneously the susceptibility of muscle homogenates to in vitro lipid peroxidation increased with 48.6% (5 weeks) and 44.5% (12 weeks) in skeletal muscle and with 101.8% (12 weeks) in cardiac muscle. Highly significant negative correlations were observed between the concentration of vitamin E and in vitro lipid peroxidation in cardiac and skeletal muscles. Also the sensitivity to Fe2+…

MaleVitaminmedicine.medical_specialtyTime FactorsPhysiologymedicine.medical_treatmentMice Inbred StrainsBiologyLipofuscinLipid peroxidationMicechemistry.chemical_compoundInternal medicinemedicineAnimalsVitamin EVitamin E DeficiencyTocopherolchemistry.chemical_classificationMusclesMyocardiumGlutathione peroxidaseVitamin ECardiac muscleSkeletal muscleLipid Metabolismmedicine.anatomical_structureEndocrinologychemistryVitamin E deficiencyOxidation-ReductionActa Physiologica Scandinavica
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Genetic and biochemical characterization of little isoxanthopterin (lix), a gene controlling dihydropterin oxidase activity in Drosophila melanogaste…

1991

Dihydropterin oxidase catalyses the oxidation of 7,8-dihydropteridines into their fully oxidized products, and is involved in the biosynthesis of isoxanthopterin. Fifteen Drosophila melanogaster mutants, selected for their low pterin and isoxanthopterin content, were assayed for dihydropterin oxidase activity. The activity was around 100% in most mutants tested, slightly reduced in red, g and dke, and undetectable in lix. In flies carrying various doses of the lix+ allele, a correlation was found between enzyme activity and the number of lix+ copies in the genome. The results suggest that lix is the structural gene for the dihydropterin oxidase enzyme. Isoxanthopterin was quantitated in str…

MaleX ChromosomeGenotypeMutantSubstrate Specificitychemistry.chemical_compoundDihydropterin oxidase activityDrosophilidaeGeneticsAnimalsPterinMolecular BiologyCrosses Geneticchemistry.chemical_classificationbiologyPteridinesStructural geneTemperatureChromosome Mappingbiology.organism_classificationEnzyme assayEnzymeDrosophila melanogasterchemistryBiochemistryMutationbiology.proteinFemaleDrosophila melanogasterOxidoreductasesMoleculargeneral genetics : MGG
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Inhibition of Xanthine Oxidase by Phenolic Conjugates of Methylated Quinic Acid

2003

The caffeoyl conjugates of prenylhydroquinone glucoside and of quinic acid, either in the carboxyl-free or carboxymethyl forms, isolated from Phagnalon rupestre (Asteraceae), showed inhibitory activity on lipid peroxidation induced by Fe 2+/ascorbate and by CCl4/NADPH in rat liver microsomes, with IC50 values ranging from 3 to 11 microM. After having demonstrated their effect on the xanthine oxidase-regulated superoxide production, the active compounds were tested for the direct inhibition of this enzyme. Methylated dicaffeoylquinic conjugates competitively inhibited the enzyme and the highest potency was obtained for the 4,5-diester, with an IC50 value of 3.6 microM, nearly ten times lower…

MaleXanthine OxidaseAntioxidantStereochemistrymedicine.medical_treatmentQuinic AcidPharmaceutical ScienceAsteraceaeAntioxidantsAnalytical ChemistryLipid peroxidationInhibitory Concentration 50chemistry.chemical_compoundPhenolsGlucosideDrug DiscoverymedicineAnimalsEnzyme InhibitorsRats WistarXanthine oxidasePharmacologybiologyPlant ExtractsSuperoxideOrganic ChemistryQuinic acidXanthineHydroquinonesRatsComplementary and alternative medicinechemistryBiochemistryEnzyme inhibitorMicrosomes Liverbiology.proteinMolecular MedicineLipid PeroxidationPhytotherapyPlanta Medica
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Antioxidant activity of anti-inflammatory plant extracts

2002

The antioxidant properties of twenty medical herbs used in the traditional Mediterranean and Chinese medicine were studied. Extracts from Forsythia suspensa, Helichrysum italicum, Scrophularia auriculata, Inula viscosa, Coptis chinensis, Poria cocos and Scutellaria baicalensis had previously shown anti-inflammatory activity in different experimental models. Using free radical-generating systems H. italicum. I. viscosa and F. suspensa protected against enzymatic and non-enzymatic lipid peroxidation in model membranes and also showed scavenging property on the superoxide radical. All extracts were assayed at a concentration of 100 microg/ml. Most of the extracts were weak scavengers of the hy…

MaleXanthine OxidaseErythrocytesAntioxidantmedicine.drug_classmedicine.medical_treatmentHelichrysum italicumAntioxidantsGeneral Biochemistry Genetics and Molecular BiologyAnti-inflammatoryRats Sprague-DawleyLipid peroxidationchemistry.chemical_compoundmedicineAnimalsGeneral Pharmacology Toxicology and PharmaceuticsXanthine oxidaseForsythia suspensaPlants MedicinalbiologyTraditional medicineDeoxyribosePlant ExtractsAnti-Inflammatory Agents Non-SteroidalFree Radical ScavengersGeneral MedicineCoptis chinensisbiology.organism_classificationRatsBiochemistrychemistryMicrosomes LiverScutellaria baicalensisLipid PeroxidationMedicine TraditionalAminopyrine N-DemethylaseLife Sciences
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Xanthine oxidase is involved in exercise-induced oxidative stress in chronic obstructive pulmonary disease

1999

In the present study, we hypothesized that exhaustive exercise in patients with chronic obstructive pulmonary disease (COPD) results in glutathione oxidation and lipid peroxidation and that xanthine oxidase (XO) contributes to free radical generation during exercise. COPD patients performed incremental cycle ergometry until exhaustion with (n = 8) or without (n = 8) prior treatment with allopurinol, an XO inhibitor. Reduced (GSH) and oxidized glutathione (GSSG) and lipid peroxides [malondialdehyde (MDA)] were measured in arterial blood. In nontreated COPD patients, maximal exercise (approximately 75 W) resulted in a significant increase in the GSSG-to-GSH ratio (4. 6 +/- 0.9% at rest vs. 9.…

MaleXanthine OxidasePhysiologyAllopurinolRestPhysical ExertionPhysical exercisePharmacologymedicine.disease_causeLipid peroxidationchemistry.chemical_compoundAdenosine TriphosphatePhysiology (medical)MalondialdehydemedicineHumansLung Diseases ObstructiveXanthine oxidaseCOPDGlutathione DisulfideRespiratory diseaseGlutathioneMiddle Agedmedicine.diseaseGlutathionePathophysiologyOxidative StressBiochemistrychemistryExercise TestFemaleLipid PeroxidationOxidative stress
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Effect of xanthine oxidase-generated extracellular superoxide on skeletal muscle force generation

2009

Skeletal muscle contractions increase superoxide anion in skeletal muscle extracellular space. We tested the hypotheses that 1) after an isometric contraction protocol, xanthine oxidase (XO) activity is a source of superoxide anion in the extracellular space of skeletal muscle and 2) the increase in XO-derived extracellular superoxide anion during contractions affects skeletal muscle contractile function. Superoxide anion was monitored in the extracellular space of mouse gastrocnemius muscles by following the reduction of cytochrome c in muscle microdialysates. A 15-min protocol of nondamaging isometric contractions increased the reduction of cytochrome c in microdialysates, indicating an …

MaleXanthine Oxidasemedicine.medical_specialtyPhysiologyOxypurinolfree radicalsSuperoxide dismutaseExtensor digitorum longus muscleMice03 medical and health sciencesGastrocnemius musclechemistry.chemical_compound0302 clinical medicineSuperoxidescontractile functionIsometric ContractionPhysiology (medical)Internal medicinemedicineAnimalsMuscle Skeletal030304 developmental biologySoleus muscle0303 health sciencesexercisebiologyMuscle fatigueSuperoxide DismutaseChemistrySuperoxideCytochromes cSkeletal muscleArticlesmusculoskeletal systemElectric StimulationMice Inbred C57BLmedicine.anatomical_structureEndocrinologyBiochemistryModels AnimalMuscle Fatiguebiology.proteinmedicine.symptomExtracellular Space030217 neurology & neurosurgeryMuscle ContractionMuscle contractionAmerican Journal of Physiology-Regulatory, Integrative and Comparative Physiology
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Behavioural and physiological effects of the trophically transmitted cestode parasite, Cyathocephalus truncatus, on its intermediate host, Gammarus p…

2007

SUMMARYSome parasites with complex life-cycles are able to manipulate the behaviour of their intermediate hosts in a way that increases their transmission to the next host. Gammarids infected by the tapeworm Cyathocephalus truncatus (Cestoda: Spathebothriidea) are known to be more predated by fish than uninfected ones, but potential behavioural manipulation by the parasite has never been investigated. In this study, we tested the hypothesis that C. truncatus is able to manipulate the behaviour of one of its intermediate hosts, Gammarus pulex (Crustacea: Amphipoda). To assess if any behavioural change was linked to other phenotypic alterations, we also measured the immunity of infected and u…

Male[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAmphipodaCestodaZoologyBiologyHost-Parasite InteractionsPredationOxygen Consumption[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisPhototaxisAnimalsParasite hostingAmphipodacestodeSwimmingEnzyme Precursors[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyBehavior AnimalMonophenol MonooxygenaseHost (biology)EcologyIntermediate hostbiology.organism_classificationSurvival AnalysisimmunityGammarus pulexInfectious DiseasesCestodaAnimal Science and ZoologyParasitologypathogenic effectsCatechol OxidaseGammaridaebehavioural manipulationParasitology
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Density-dependent effects on parasite growth and parasite-induced host immunodepression in the larval helminth Pomphorhynchus laevis.

2011

SUMMARYLarval helminths exploit the physiology of their intermediate hosts: first, as a resource for energy and space and second by altering the immune system activity to ensure their survival. Whereas the growth pattern under parasite competition has been investigated, the effect of multiple infections on the level of parasite-induced immunodepression in a trophically transmitted helminth has been neglected. In this study, amphipodsGammarus pulexwere infected in the laboratory by the acanthocephalanPomphorhynchus laevisto investigate how parasite density in the intermediate host affected (i) cystacanth growth and (ii) the level of parasite-induced alterations of the host immune defences, t…

Male[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologymedia_common.quotation_subjectZoologyphenoloxidaseCompetition (biology)030308 mycology & parasitologyAcanthocephalaHost-Parasite Interactionsparasite intensity03 medical and health sciencesImmunocompromised HostImmune systemImmune Tolerance[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisHelminthsParasite hostingAnimalsAmphipoda[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologylarval helminth growthParasite Egg Count030304 developmental biologymedia_common0303 health sciences[ SDE.BE ] Environmental Sciences/Biodiversity and EcologybiologyHost (biology)Intermediate hostbiology.organism_classificationacanthocephalanGammarus pulexInfectious DiseasesLarvaImmunologyAnimal Science and ZoologyParasitologyPomphorhynchus laevisFemale[SDE.BE]Environmental Sciences/Biodiversity and Ecologycompetitionexploitationimmunodepression[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Is there a role for antioxidant carotenoids in limiting self-harming immune response in invertebrates?

2007

Innate immunity relies on effectors, which produce cytotoxic molecules that have not only the advantage of killing pathogens but also the disadvantage of harming host tissues and organs. Although the role of dietary antioxidants in invertebrate immunity is still unknown, it has been shown in vertebrates that carotenoids scavenge cytotoxic radicals generated during the immune response. Carotenoids may consequently decrease the self-harming cost of immunity. A positive relationship between the levels of innate immune defence and circulating carotenoid might therefore be expected. Consistent with this hypothesis, we show that the maintenance and use of the prophenoloxidase system strongly cor…

MaleantioxidantMESH : Immunity Natural[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunologyAntioxidantsMESH: Linear ModelsMESH: AmphipodaHemolymphMESH : Linear ModelsHemolymphMESH: AnimalsMESH : FemaleCarotenoidchemistry.chemical_classificationbiologyEffectorMonophenol Monooxygenasefood and beveragesProphenoloxidaseMESH : AmphipodaAgricultural and Biological Sciences (miscellaneous)MESH : Monophenol Monooxygenase[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunologyMESH : AntioxidantsFemaleGeneral Agricultural and Biological SciencesResearch ArticleMESH: Monophenol MonooxygenaseMESH : Maleimmune costsecological immunologyMESH : Hemolymph[ SDV.BBM.BM ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyImmune systemImmunityAnimalsAmphipodaMESH: Immunity NaturalMESH : CarotenoidsInnate immune systemMESH: HemolymphMESH: Antioxidants[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologybiochemical phenomena metabolism and nutritionbiology.organism_classificationCarotenoidsImmunity InnateMESH: MaleGammarus pulexchemistryImmunologyMESH: CarotenoidsLinear ModelsbacteriaMESH : AnimalsMESH: Female
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