0000000000498302

AUTHOR

Tatyana Dizhbite

0000-0002-1503-3142

showing 4 related works from this author

Elucidation of antioxidant properties of wood bark derived saturated diarylheptanoids: a comprehensive (DFT-supported) understanding.

2013

A series of diarylheptanoids, namely 1,7-bis-(3,4-dihydroxyphenyl)-heptan-3-one-5-O-D-xylopyranoside (oregonin), 1,7-bis-(3,4-dihydroxyphenyl)-3-hydroxyheptane-5-O-β-D-xylopyranoside and 1,7-bis-(4-hydroxyphenyl)-heptane-3-one-5-O-β-D-glucopyranoside (platyphylloside), were isolated from the bark of alder family trees, a species widely spread over in Europe. As antioxidants, these natural polyphenols have a promising potential in various fields of application, but their redox reactivity is insufficiently characterized. In this work, their antioxidant activity is described using assays based on DPPH and ABTS(+) radical scavenging, oxygen anion radicals (O2(-)) quenching. The standardized ORA…

ABTSAntioxidantMolecular modelDPPHmedicine.medical_treatmentDiarylheptanoidPlant ScienceGeneral MedicineHorticultureAlnusBiochemistryRedoxWoodAntioxidantschemistry.chemical_compoundStructure-Activity RelationshipchemistryPolyphenolDiarylheptanoidsmedicinePlant BarkOrganic chemistryMolecular BiologyDiarylheptanoidsPhytochemistry
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Design of siliceous lignins – Novel organic/inorganic hybrid sorbent materials

2009

Novel nanoporous lignin(lignocellulose)/SiO2 hybrid materials were designed using the sol–gel process. X-ray photoelectronic spectroscopy, Fourier transform infrared spectroscopy and 29Si and 13C nuclear magnetic resonance spectroscopy were applied to characterize the hybrids’ surface and bulk structure. Nitrogen and water vapor sorption were used for assessment of porous structure parameters and hydrophobization of matrices, respectively. The efficiency of the hybrid materials obtained was proved by adsorption tests with potential inorganic (Cu2+) and organic (2,4-dichlorophenoxyacetic acid) pollutants.

Materials scienceSorbentNanoporousMechanical EngineeringInorganic chemistryMetals and AlloysSorptionCondensed Matter PhysicsAdsorptionMechanics of MaterialsSurface modificationGeneral Materials ScienceFourier transform infrared spectroscopySpectroscopyHybrid materialScripta Materialia
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Oxidative stress and innate immunity status in chickens exposed to high dose of ascorbic acid

2013

The effects of high dose ascorbic acid (10 000 mg·kg–1 in the diet) and the transition metal on the presence of oxidative stress in the internal organs of growing chicks, as well as on the innate immune system status, were investigated. Supplementation with a high dose of ascorbic acid had pro-inflammatory effects on the intestinal mucosa, and lysozyme levels were decreased significantly in all organs studied. High-dose ascorbic acid caused an imbalance between prooxidative and antioxidative activities and was associated with the generation of semiquinone radicals. We observed that ascorbic acid increased iron and cadmium absorption. When a high dose of ascorbic acid was applied, elevated k…

medicine.medical_specialtyKidneyCadmiumInnate immune systemClinical Biochemistrychemistry.chemical_elementCell BiologyGeneral MedicineAscorbic acidmedicine.disease_causeBiochemistrychemistry.chemical_compoundEndocrinologymedicine.anatomical_structureImmune systemBiochemistrychemistryIntestinal mucosaInternal medicinemedicineLysozymeOxidative stressCell Biochemistry and Function
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Characterization of softwood and hardwood lignoboost kraft lignins with emphasis on their antioxidant activity

2014

Fractionation of softwood and hardwood LignoBoost kraft lignins, using sequential extraction with organic solvents of increasing hydrogen-bonding ability (dichloromethane, n-propanol, and methanol), was carried out. Using SEC, analytical pyrolysis, FTIR and UV/VIS spectroscopy, and chemical analytical methods, four fractions were obtained and characterized in terms of their yield, composition, functionality, lignin structural features, and antioxidant properties. In tests with free radicals (ABTS●+, DPPH●, O2●-) and the ORAC (oxygen radical absorbance capacity) assay, the high radical scavenging capacity of the lignin’s soluble fractions was demonstrated. The antioxidant activity of the fra…

ORAC assayEnvironmental EngineeringSoftwoodABTSOxygen radical absorbance capacityLignoBoost kraft ligninDPPHAntioxidant propertieslcsh:Biotechnologytechnology industry and agricultureBioengineeringmacromolecular substancesFractionationDPPH●chemistry.chemical_compoundchemistryABTS●+lcsh:TP248.13-248.65HardwoodOrganic chemistryLigninSolvent fractionationWaste Management and DisposalKraft paperO2●- assays
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