Search results for "hydrogen peroxide"

showing 10 items of 321 documents

Effect of sodium borohydride and hydrogen peroxide pretreatments on soda pulping of sugar maple (Acer saccharum)

2021

For recovering value-added wood-based organic material prior to delignification, sodium borohydride (NaBH4) and hydrogen peroxide (H2O2) pretreatments under alkaline conditions were performed before soda pulping of sugar maple (Acer saccharum) chips with sodium hydroxide (NaOH). In this investigation, it was determined whether the pulp yield could be increased by partly stabilizing the hemicelluloses by these pretreatments, and simultaneously obtains lower pulp kappa numbers. The results indicated that when aiming to the same kappa numbers (i.e., kappa numbers 14.3-20.5), roughly 3% higher pulp yield could be achieved if the chips were pretreated with alkaline 0.5% NaBH4 solutions, compared…

General Chemical EngineeringAcer saccharumengineering.material/dk/atira/pure/sustainabledevelopmentgoals/responsible_consumption_and_productionchemistry.chemical_compoundSodium borohydridestomatognathic systemGeneral Materials ScienceSugarHydrogen peroxide/dk/atira/pure/sustainabledevelopmentgoals/industry_innovation_and_infrastructureInnovationSodium borohydrideMapleChemistrySoda cookingGeneral ChemistryPulp and paper industryHydrogen peroxidestomatognathic diseasesSugar mapleSoda pulpingengineeringand InfrastructureSDG 9 - Industry Innovation and InfrastructureSDG 12 - Responsible Consumption and ProductionSDG 9 - IndustryPretreatmentJournal of Wood Chemistry and Technology
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Electrochemical performance of activated screen printed carbon electrodes for hydrogen peroxide and phenol derivatives sensing

2019

Screen-printed carbon electrodes (SPCEs) are widely used for the electroanalysis of a plethora of organic and inorganic compounds. These devices offer unique properties to address electroanalytical chemistry challenges and can successfully compete in numerous aspects with conventional carbon-based electrodes. However, heterogeneous kinetics on SPCEs surfaces is comparatively sluggish, which is why the electrochemical activation of inks is sometimes required to improve electron transfer rates and to enhance sensing performance. In this work, SPCEs were subjected to different electrochemical activation methods and the response to H2O2 electroanalysis was used as a testing probe. Changes in to…

General Chemical EngineeringElectrochemical activationchemistry.chemical_element02 engineering and technology010402 general chemistryElectrochemistry01 natural sciencesAnalytical Chemistrychemistry.chemical_compoundElectrochemistryQuímica FísicaScreen-printed carbon electrodesSensorHydroquinoneSulfuric acidChronoamperometryHydrogen peroxide021001 nanoscience & nanotechnologyPhenolic compounds0104 chemical sciencesDielectric spectroscopychemistryChemical engineeringElectrodeSurface modificationCyclic voltammetry0210 nano-technologyCarbonJournal of Electroanalytical Chemistry
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Redox regulation of genome stability by effects on gene expression, epigenetic pathways and DNA damage/repair

2015

Reactive oxygen and nitrogen species (e.g. H2O2, nitric oxide) confer redox regulation of essential cellular signaling pathways such as cell differentiation, proliferation, migration and apoptosis. In addition, classical regulation of gene expression or activity, including gene transcription to RNA followed by translation to the protein level, by transcription factors (e.g. NF-κB, HIF-1α) and mRNA binding proteins (e.g. GAPDH, HuR) is subject to redox regulation. This review will give an update of recent discoveries in this field, and specifically highlight the impact of reactive oxygen and nitrogen species on DNA repair systems that contribute to genomic stability. Emphasis will be placed …

Genome instabilityRedox signalingRNA UntranslatedEpigenetic regulation of neurogenesisDNA RepairHuR mRNA-binding protein in the 3′-untranslated regionClinical BiochemistryHDAC histone deacetylaseReview ArticleAP-1 activator protein 1BiochemistryApe-1 apurinic/apyrimidinic endonuclease 1GPx-1 glutathione peroxidase-1Epigenesis GeneticHistonesTrx thioredoxinPHD prolylhydroxylaseBER base excision repairlcsh:QH301-705.5HO-1 heme oxygenase-1EpigenomicsGeneticsRegulation of gene expressionNox member of the NADPH oxidase familylcsh:R5-920JmjC Jumonji C domain-containing histone demethylasesHIF-1α hypoxia inducible factor-1α5-hmC 5-hydroxymethylcytosineddc:Cell biologyMMP matrix metalloproteinaseGrx glutaredoxinGAPDH glyceraldehyde-3-phosphate dehydrogenaseNrf2 nuclear factor erythroid related factor 2DNA methylationEpigeneticslcsh:Medicine (General)Oxidation-ReductionSignal Transduction5-mC 5-methylcytosineDNA repairDNA damageNF-κB nuclear factor-κBBiologyGenomic InstabilityRNS reactive nitrogen speciesROS reactive oxygen speciesNER nucleotide excision repairSOD superoxide dismutaseOxyR transcription factor (hydrogen peroxide-inducible genes activator)HumansEpigeneticsOrganic ChemistryPETN pentaerithrityl tetranitrateGene regulationOxidative StressDNMT DNA methyltransferaseGene Expression Regulationlcsh:Biology (General)AREs AU-rich elementsHAT histone acetyltransferaseKeap1 kelch-like ECH-associated protein 1BiomarkersCOPD chronic obstructive pulmonary disorderDNA DamageRedox Biology
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Mangiferin glycethosomes as a new potential adjuvant for the treatment of psoriasis

2020

[EN] Mangiferin, a natural compound isolated from Mangifera indica L, was incorporated in glycerosomes, ethosomes and alternatively in glycerol-ethanol phospholipid vesicles (glycethosomes). Actually, only glycethosomes were able to stably incorporate the mangiferin that was loaded at increasing concentrations (2, 4, 6, 8 mg/mL). The morphology, size distribution, rheological properties, surface charge and entrapment efficiency of prepared vesicles were deeply measured. All vesicles were mainly spherical, oligolamellar, small in size (similar to 145 nm) and negatively charged (similar to-40 mV), as confirmed by cryo-TEM observation and dynamic laser light scattering measurements. The higher…

GlycerolAntioxidantDrug CompoundingXanthonesmedicine.medical_treatmentPharmaceutical Science02 engineering and technologyAdministration Cutaneous030226 pharmacology & pharmacyMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivoPhospholipid vesiclesGlycerolmedicineAnimalsHumansPsoriasisTissue DistributionMangiferinHydrogen peroxidePhospholipidsSkin permeationAdjuvants PharmaceuticDrug CarriersWound HealingMangiferaEthanolVesicle3T3 CellsHydrogen Peroxide021001 nanoscience & nanotechnologyIn vitroDisease Models AnimalchemistryBiophysicsMangiferinGlycethosomesTetradecanoylphorbol AcetateFemaleAntioxidantEpidermis0210 nano-technologyDrug carrierInternational Journal of Pharmaceutics
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A Universal Approach to Quantify Overpotential-Dependent Selectivity Trends for the Competing Oxygen Evolution and Peroxide Formation Reactions : A C…

2021

In this article, we study the competing oxygen evolution and hydrogen peroxide (H2O2) formation reactions for periodic models of graphene with different active-site concentrations by means of densi...

GrapheneOxygen evolutionChemie02 engineering and technologyOverpotential010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciencesPeroxide3. Good health0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionchemistry.chemical_compoundGeneral EnergychemistrylawElectrodePhysical and Theoretical Chemistry0210 nano-technologySelectivityHydrogen peroxide
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DNA damage by bromate: Mechanism and consequences

2005

Abstract Exposure of mammalian cells to bromate (BrO3−) generates oxidative DNA modifications, in particular 7,8-dihydro-8-oxo-guanine (8-oxoG). The damaging mechanism is quite unique, since glutathione, which is protective against most oxidants and alkylating agents, mediates a metabolic activation, while bromate itself does not react directly with DNA. Neither enzymes nor transition metals are required as catalysts in the activation. The ultimate DNA damaging species has not yet been established, but experiments under cell-free conditions suggest that neither molecular bromine nor reactive oxygen species such as superoxide, hydrogen peroxide or singlet oxygen are involved. Rather bromine …

GuanineCell SurvivalDNA damageHypochloriteToxicologymedicine.disease_causeMicechemistry.chemical_compoundCricetulusCell Line TumorCricetinaemedicineAnimalsHydrogen peroxideMicronuclei Chromosome-Defectivechemistry.chemical_classificationReactive oxygen speciesMicronucleus TestsDose-Response Relationship DrugBromatesSinglet oxygenSuperoxideBromatechemistryBiochemistryReactive Oxygen SpeciesOxidative stressDNA DamageMutagensToxicology
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Role of endothelial cell stress in the pathogenesis of chronic heart failure.

2009

Endothelial cells are key modulators of diverse physiological processes, and their impaired function is a cause of numerous cardiovascular diseases. Under physiologic condition, the reactive oxygen and nitrogen mediators in endothelia lead to the signal propagation of the initial stimulus, by forming molecules with a longer half-life like hydrogen peroxide. Hydrogen peroxide is the focus of growing attention in endothelial biology, and consequently the enzymes involved in its generation and clearance are viewed as novel mediators of great importance. In particular, among peroxidases, myeloperoxidase is recognized as a key enzyme, capable of impairing intracellular NO reservoirs as well as p…

Heart FailureEndotheliumbiologyEndothelial cells Myeloperoxidase Hydrogen Peroxide Oxidative Stress Enos Nitric Oxide Superoxide ROS RNS 3-Chlorotyrosine 3-Nitrotyrosine Nitrosylaton ReviewSuperoxideSettore BIO/16 - Anatomia UmanaOxidative phosphorylationmedicine.disease_causeNitric oxideCell biologyEndothelial stem cellchemistry.chemical_compoundOxidative Stressmedicine.anatomical_structurechemistryMyeloperoxidaseChronic Diseasemedicinebiology.proteinHumansEndothelium VascularReactive Oxygen SpeciesOxidative stressIntracellularPeroxidaseFrontiers in bioscience (Landmark edition)
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Oxidation of melatonin by oxoferryl hemoglobin: A mechanistic study

2002

Reaction of melatonin with the hypervalent iron centre of oxoferryl hemoglobin, produced in aqueous solution from methemoglobin and H2O2, has been investigated at 37 degrees C and pH 7.4, by absorption spectroscopy. The reaction results in reduction of the oxoferryl moiety with formation of a heme-ferric containing hemoprotein. Stopped-flow spectrophotometric measurements provide evidence that the reduction of oxoferryl-Hb by melatonin is first-order in oxoferryl-Hb and first-order in melatonin. The bimolecular reaction constant at pH 7.4 and 37 degrees C is 112 +/- 1.0 M(-1) s(-1). Two major oxidation products from melatonin have been found by gas chromatography-mass spectroscopy: the cycl…

HemeproteinMagnetic Resonance SpectroscopyTime FactorsKynuraminePhotochemistryBiochemistryMethemoglobinGas Chromatography-Mass SpectrometryMelatoninHemoglobinsReaction rate constantmedicineAnimalsMethemoglobinMelatoninIndole testCyclic compoundChemistryOxidesGeneral MedicineHydrogen PeroxideKineticsYield (chemistry)CattleSpectrophotometry UltravioletHemoglobinChlorineOxidation-Reductionmedicine.drug
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Protein Tyrosine Nitration Induced by Heme/Hydrogen Peroxide: Inhibitory Effect of Hydroxycinnamoyl Conjugates

2006

The present study was designed to optimize the experimental conditions that govern the heme-catalyzed nitration of protein tyrosine residues by nitrite, and, within this framework, to study the effects of 3,5-dicaffeoylquinic acid and its methyl ester, both of which have been previously reported to be antioxidants and inhibitors of leukocyte functions. Although the presence of hydrogen peroxide is essential in cell-free systems, an excess of this compound was found to be detrimental, so much so that an increase in hemin concentration actually resulted in an inverse effect on the reaction, depending on the levels of fixed hydrogen peroxide. Unlike previous reports on nitrite-induced albumin …

HemeproteinsCoumaric AcidsBicarbonatePharmaceutical ScienceHemeAsteraceaeCatalysisAnalytical ChemistryInhibitory Concentration 50chemistry.chemical_compoundNitrationDrug DiscoveryLeukocytesHumansTyrosineNitriteHydrogen peroxideHemePharmacologyNitratesOrganic ChemistryHydrogen PeroxideHydrogen-Ion ConcentrationXanthoproteic reactionComplementary and alternative medicinechemistryBiochemistryTyrosineMolecular MedicinePhytotherapyHeminPlanta Medica
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Selective photocatalytic oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxaldehyde by polymeric carbon nitride-hydrogen peroxide adduct

2018

Abstract Polymeric carbon nitride-hydrogen peroxide adduct (PCN-H2O2) has been prepared, thoroughly characterised and its application for selective photocatalytic conversion of 5-hydroxymethylfurfural (HMF) to 2,5-furandicarboxaldehyde (FDC) in aqueous suspension has been studied. The PCN-H2O2 adduct is stable in aqueous suspension under UV and solar irradiation up to 100 °C. It is also stable up to 200 °C if heated in air, while at temperatures close to 300 °C its decomposition takes place. Based on the obtained characterisation data it has been proposed that H2O2 attaches to the non-polymerised carbon nitride species and to the heptazine nitrogen atoms, thus producing strong hydrogen bond…

HeptazineCarbon nitridechemistry.chemical_element02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesPeroxideCatalysisCatalysiCatalysisAdductchemistry.chemical_compoundPhotocatalysiPhysical and Theoretical ChemistryHydrogen peroxideCarbon nitride5-Hydroxymethylfurfural021001 nanoscience & nanotechnologySelective photo-oxidation0104 chemical scienceschemistry25-FurandicarboxaldehydePhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyCarbonJournal of Catalysis
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