Search results for "catalase"

showing 10 items of 165 documents

Study of enzymatic activity in human neuroblastoma cells SH-SY5Y exposed to zearalenone's derivates and beauvericin.

2021

Abstract Beauvericin (BEA), α-zearalenol (α-ZEL) and β-zearalenol (β-ZEL), are produced by several Fusarium species that contaminate cereal grains. These mycotoxins can cause cytotoxicity and neurotoxicity in various cell lines and they are also capable of produce oxidative stress at molecular level. However, mammalian cells are equipped with a protective endogenous antioxidant system formed by no-enzymatic antioxidant and enzymatic protective systems such as glutathione peroxidase (GPx), glutathione S-transferase (GST), catalase (CAT) and superoxide dismutase (SOD). The aim of this study was evaluating the effects of α-ZEL, β-ZEL and BEA, on enzymatic GPx, GST, CAT and SOD activity in huma…

SH-SY5YAntioxidantmedicine.medical_treatmentToxicologymedicine.disease_causeSuperoxide dismutase03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyCell Line TumorDepsipeptidesmedicineHumans030304 developmental biologyEnzyme AssaysGlutathione Transferasechemistry.chemical_classification0303 health sciencesGlutathione PeroxidasebiologySuperoxide DismutaseGlutathione peroxidase04 agricultural and veterinary sciencesGeneral MedicineGlutathioneMycotoxinsCatalase040401 food scienceMolecular biologyBeauvericinchemistryPeroxidasesCatalasebiology.proteinZeranolOxidative stressFood ScienceFood and chemical toxicology : an international journal published for the British Industrial Biological Research Association
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Trx2p-dependent Regulation of Saccharomyces cerevisiae Oxidative Stress Response by the Skn7p Transcription Factor under Respiring Conditions

2013

The whole genome analysis has demonstrated that wine yeasts undergo changes in promoter regions and variations in gene copy number, which make them different to lab strains and help them better adapt to stressful conditions during winemaking, where oxidative stress plays a critical role. Since cytoplasmic thioredoxin II, a small protein with thiol-disulphide oxidoreductase activity, has been seen to perform important functions under biomass propagation conditions of wine yeasts, we studied the involvement of Trx2p in the molecular regulation of the oxidative stress transcriptional response on these strains. In this study, we analyzed the expression levels of several oxidative stress-related…

Saccharomyces cerevisiae ProteinsSaccharomyces cerevisiaeBlotting WesternMolecular Sequence Datalcsh:MedicineWineOxidative phosphorylationSaccharomyces cerevisiaemedicine.disease_causePolymerase Chain ReactionThioredoxinsGene Expression Regulation FungalGene expressionmedicineImmunoprecipitationPhosphorylationlcsh:ScienceTranscription factorHeat-shock responseDNA PrimersRegulation of gene expressionMultidisciplinarybiologyBase Sequencelcsh:RPromoterbiology.organism_classificationCatalasebeta-GalactosidaseYeastGene regulationDNA-Binding ProteinsOxidative StressBiochemistryOxidative stresslcsh:QGene expressionThioredoxinTranscription factorOxidative stressGene DeletionResearch ArticlePlasmidsTranscription FactorsPLoS ONE
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Effect of sodium dodecyl sulfate (SDS) on stress response in the Mediterranean mussel (Mytilus Galloprovincialis): Regulatory volumedecrease (Rvd) an…

2014

In this study the effects of an anionic surfactant, sodium dodecyl sulfate (SDS), are assessed on the Mediterranean mussel (. Mytilus galloprovincialis), exposed for 18 days at a concentration ranging from 0.1. mg/l to 1. mg/l. The effects are monitored using biomarkers related to stress response, such as regulatory volume decrease (RVD), and to oxidative stress, such as reactive oxygen species (ROS), endogenous antioxidant systems and Hsp70 levels. The results demonstrate that cells from the digestive gland of M. galloprovincialis, exposed to SDS were not able to perform the RVD owing to osmotic stress. Further, SDS causes oxidative stress in treated organisms, as demonstrated by the incre…

Settore BIO/07 - EcologiaAntioxidantOsmotic shockHealth Toxicology and Mutagenesismedicine.medical_treatmentEndogenous antioxidantsMytilus galloprovincialiSDS; Regulatory volume decrease; oxidative stressAquatic Sciencemedicine.disease_causeAntioxidantsSuperoxide dismutasechemistry.chemical_compoundOsmoregulationSettore BIO/10 - BiochimicamedicineAnimalsHSP70 Heat-Shock ProteinsSodium dodecyl sulfateSDS (sodium dodecyl sulfate)Settore BIO/06 - Anatomia Comparata E Citologiachemistry.chemical_classificationMytilusReactive oxygen speciesbiologySodium Dodecyl SulfateMolecular biologyOxidative StresschemistryBiochemistryCatalasebiomarkers of oxidative strebiology.proteinOsmoregulationCell volume regulationReactive Oxygen SpeciesOxidative stressBiomarkersWater Pollutants Chemical
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Ecotoxicological Effects of Ibuprofen on Plant Growth of Vigna unguiculata L.

2020

Despite the prevalence of the common pharmaceutical ibuprofen (IBU) in water and sediments worldwide, the effects of IBU on plants are largely unknown. This study was designed to assess the ecotoxicological effects of emerging pharmaceutical pollutant IBU on plant growth and development in a series of toxicity experiments using cowpea (Vigna unguiculata). Plant growth parameters (morphological and physicochemical) were investigated under a series of IBU concentrations (0, 400, 800, 1200, 1600, 2000 ppm IBU). IBU exposure reduced the shoot and root lengths, fresh and dry weights, leaf area, and chlorophyll a and b, carotenoid, total chlorophyll, mineral (K and Mg), glutathione reductase, and…

SodiumGlutathione reductase0211 other engineering and technologiesseed germinationchemistry.chemical_elementIbuprofen02 engineering and technologyPlant Science010501 environmental sciences01 natural sciencesArticleVignachemistry.chemical_compoundpharmaceutical pollutantEnzyme activitiesFood scienceIBU toxicityCarotenoidEcology Evolution Behavior and SystematicsPlant growthibuprofen0105 earth and related environmental scienceschemistry.chemical_classification021110 strategic defence & security studiesEcologybiologyChemistryBotanyfood and beveragesplant growthSeed germinationbiology.organism_classification<i>Vigna unguiculata</i>enzyme activitiesCatalaseGerminationQK1-989ChlorophyllShootbiology.proteinPharmaceutical pollutantVigna unguiculataPlants
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Evaluation of carbamazepine uptake and metabolization by Typha spp., a plant with potential use in phytotreatment

2011

Abstract Phytoremediation technologies such as constructed wetlands have shown higher efficiencies in removal of pharmaceuticals from wastewaters than conventional wastewater treatment processes, and plants seem to have an important role in the removal of some of those compounds. In this context, a study was conducted to assess tolerance, uptake, and metabolism of the epilepsy drug, carbamazepine, by the macrophyte Typha spp. This evaluation was conducted in hydroponic solutions with 0.5–2.0 mg/L of this pharmaceutical for a maximum period of 21 days. The removal of carbamazepine from nutrient solutions by the plants reached values of 82% of the initial contents. Furthermore, a metabolite (…

Spectrometry Mass Electrospray IonizationEnvironmental EngineeringMetaboliteBioengineeringContext (language use)Typhaceaechemistry.chemical_compoundNutrientTandem Mass SpectrometryBotanymedicineTypha spp.Waste Management and DisposalTyphaPhytotreatmentbiologyConstructed wetlandsRenewable Energy Sustainability and the EnvironmentGeneral MedicineCarbamazepinebiology.organism_classificationPhytoremediationPhytoremediationBiodegradation EnvironmentalCarbamazepinechemistryCatalaseOxidative stressEnvironmental chemistrybiology.proteinPharmaceuticalsAnticonvulsantsWater Pollutants ChemicalChromatography Liquidmedicine.drug
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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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Fibrous Nanozyme Dressings with Catalase-Like Activity for H2O2 Reduction To Promote Wound Healing

2017

The concentrations of the redox pair hydrogen peroxide (H2O2) and oxygen (O2) can promote or decelerate the progression and duration of the wound healing process. Although H2O2 can reach critically high concentrations and prohibit healing, a sufficient O2 inflow to the wound is commonly desired. Herein, we describe the fabrication and use of a membrane that can contemptuously decrease H2O2 and increase O2 levels. Therefore, hematite nanozyme particles were integrated into electrospun and cross-linked poly(vinyl alcohol) membranes. Within the dual-compound membrane, the polymeric mesh provides a porous scaffold with high water permeability and the nanozymes act as a catalyst with catalase-li…

Vinyl alcoholMaterials sciencebiologytechnology industry and agriculturefood and beverages02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesRedox0104 chemical sciencesCatalysischemistry.chemical_compoundMembranechemistryPermeability (electromagnetism)CatalaseBiophysicsbiology.proteinGeneral Materials ScienceComposite material0210 nano-technologyWound healingHydrogen peroxideACS Applied Materials &amp; Interfaces
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Vitamin A Inhibits Doxorubicin-Induced Membrane Lipid Peroxidation in Rat Tissues in Vivo

1993

The antioxidant activity of vitamin A against lipid peroxidation induced by doxorubicin in rat tissues in vivo was investigated. A single ip injection of doxorubicin (30 mg/kg body wt) markedly raised the level of peroxidated lipids measured as TBARS and conjugated dienes in heart and brain membrane preparations. Other tissues, such as retina and liver, did not show any increase of lipid peroxides over control values. Pretreatment of rats with two daily subcutaneous injections of retinol palmitate (0.25 g/kg body wt), for 2 days, before injecting doxorubicin, inhibited peroxidation of heart and brain membrane lipids. The antioxidant action of vitamin A does not appear to be mediated by enha…

Vitaminmedicine.medical_specialtyAntioxidantmedicine.medical_treatmentMembrane lipidsBiophysicsBiochemistryLipid peroxidationSuperoxide dismutaseMembrane Lipidschemistry.chemical_compoundInternal medicinemedicineTBARSAnimalsVitamin AMolecular BiologybiologySuperoxide DismutaseChemistryMyocardiumCell MembraneRetinolBrainCatalaseRatsEndocrinologyDoxorubicinCatalasebiology.proteinLipid PeroxidationArchives of Biochemistry and Biophysics
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Vascular oxidative stress, nitric oxide and atherosclerosis.

2014

In the vascular wall, reactive oxygen species (ROS) are produced by several enzyme systems including NADPH oxidase, xanthine oxidase, uncoupled endothelial nitric oxide synthase (eNOS) and the mitochondrial electron transport chain. On the other hand, the vasculature is protected by antioxidant enzyme systems, including superoxide dismutases, catalase, glutathione peroxidases and paraoxonases, which detoxify ROS. Cardiovascular risk factors such as hypercholesterolemia, hypertension, and diabetes mellitus enhance ROS generation, resulting in oxidative stress. This leads to oxidative modification of lipoproteins and phospholipids, mechanisms that contribute to atherogenesis. In addition, oxi…

Xanthine OxidaseAntioxidantNitric Oxide Synthase Type IIImedicine.medical_treatmentMice TransgenicOxidative phosphorylationNitric Oxide Synthase Type Imedicine.disease_causeNitric OxideCardiovascular SystemAntioxidantsNitric oxideSuperoxide dismutasechemistry.chemical_compoundMiceSuperoxidesmedicineAnimalsHumansXanthine oxidasechemistry.chemical_classificationReactive oxygen speciesGlutathione PeroxidaseNADPH oxidasebiologyAryldialkylphosphataseSuperoxide DismutaseNADPH OxidasesAtherosclerosisCatalaseMitochondriaOxidative StresschemistryBiochemistrybiology.proteinCardiology and Cardiovascular MedicineReactive Oxygen SpeciesOxidative stressAtherosclerosis
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Tumoricidal Activity of Endothelial Cells

2001

The mechanism of NO- and H(2)O(2)-induced tumor cytotoxicity was examined during B16 melanoma (B16M) adhesion to the hepatic sinusoidal endothelium (HSE) in vitro. We used endothelial nitric-oxide synthetase gene disruption and N(G)-nitro-l-arginine methyl ester-induced inhibition of nitric-oxide synthetase activity to study the effect of HSE-derived NO on B16M cell viability. Extracellular H(2)O(2) was removed by exogenous catalase. H(2)O(2) was not cytotoxic in the absence of NO. However, NO-induced tumor cytotoxicity was increased by H(2)O(2) due to the formation of potent oxidants, likely ( small middle dot)OH and (-)OONO radicals, via a trace metal-dependent process. B16M cells culture…

biologyEndotheliumChemistryEbselenCell BiologyGlutathioneBiochemistryMolecular biologychemistry.chemical_compoundmedicine.anatomical_structureBiochemistryCatalasebiology.proteinmedicineCytotoxic T cellButhionine sulfoximineViability assayCytotoxicityMolecular BiologyJournal of Biological Chemistry
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