Search results for "radical"

showing 10 items of 1401 documents

Theoretical Determination of the pK a Values of Betalamic Acid Related to the Free Radical Scavenger Capacity: Comparison Between Empirical and Quant…

2015

Health benefits of dietary phytochemicals have been suggested in recent years. Among 1000s of different compounds, Betalains, which occur in vegetables of the Cariophyllalae order (cactus pear fruits and red beet), have been considered because of reducing power and potential to affect redox-modulated cellular processes. The antioxidant power of Betalains is strictly due to the dissociation rate of the acid moieties present in all the molecules of this family of phytochemicals. Experimentally, only the pK a values of betanin were determined. Recently, it was evidenced it was evidenced as the acid dissociation, at different environmental pHs, affects on its electron-donating capacity, and fur…

AntioxidantPyridinesmedicine.medical_treatmentBetalainsHealth Informatics010402 general chemistry01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyAcid dissociation constantAntioxidantschemistry.chemical_compoundComputational chemistryBetalamic Acid antioxidants pKa predictions empirical methods DFTmedicineOrganic chemistryA valueMoleculeBetaninQuantum chemical010405 organic chemistryFree Radical ScavengersFree radical scavengerSettore CHIM/08 - Chimica Farmaceutica0104 chemical sciencesComputer Science ApplicationschemistryModels ChemicalBetalamic acid
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Ionic liquid gels and antioxidant carbon nanotubes: Hybrid soft materials with improved radical scavenging activity

2019

Hypothesis: Performances of materials are frequently affected by the action of radicals that can induce their degradation. To overcome the above issue, natural antioxidants (AOs) can be added during manufacturing. Considering the high instability of AOs, they have been adsorbed on carbon nanomaterials surface. However, the inclusion of functionalized carbon nanomaterials into gel matrix could enhance the antioxidant efficiency and represent an easy way to disperse and handle the active species.Experiments: Carboxypropyl functionalized carbon nanotubes (f-CNT), pure or with physically adsorbed alpha-tocopherol (f-CNT-VE) and quercetin (f-CNT-Q), were incorporated in some ionic liquid gels (I…

AntioxidantRadicalmedicine.medical_treatmentNatural antioxidants02 engineering and technologyCarbon nanotubeIonic liquid010402 general chemistry01 natural sciencesCarbon nanotubelaw.inventionNatural antioxidantBiomaterialschemistry.chemical_compoundColloid and Surface ChemistryAdsorptionRheologylawmedicineThin filmChemistrySettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCoating materialChemical engineeringIonic liquidHybrid ionic liquid gelDegradation (geology)0210 nano-technologyJournal of Colloid and Interface Science
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Nanosponges for the protection and release of the natural phenolic antioxidants quercetin, curcumin and phenethyl caffeate

2020

The inclusion of polyphenols into nanoporous materials may significantly improve their application as radical trapping agents for therapeutic purposes. In the present work, nanosponges based on hypercross- linked cyclodextrins and calixarenes (NS1–NS3) were used as carriers of three natural phenolic antioxidants: quercetin (Que), curcumin (Cur) and phenethyl caffeate (Phec). Good w/w loadings, namely 7.3% for the Que–NS1 composite, 17.3% for Cur–NS2 and 12.9% for Phec–NS3, were achieved. The release kinetics and the inhibition rate constants (kinh) of the reaction with alkylperoxyl radicals (ROO.) in 0.1 M phosphate buffer solutions at pH 7.4 were studied and indicated better antioxidant ac…

AntioxidantRadicalmedicine.medical_treatmentnanosponges02 engineering and technology010402 general chemistryrelease01 natural scienceschemistry.chemical_compoundReaction rate constantmedicineOrganic chemistryGeneral Materials SciencePhenolspolyphenolsSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnologyControlled release0104 chemical scienceschemistryChemistry (miscellaneous)PolyphenolCurcuminquercitin curcumin phenethyl caffeate nanosponges antioxidant activity0210 nano-technologyQuercetin
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Extraction of polyphenols in Himanthalia elongata and determination by high performance liquid chromatography with diode array detector prior to its …

2016

Abstract Several studies have demonstrated the antioxidant capacity of seaweeds, which can be used for the development of biopharmaceuticals with extensive medical application. Antioxidant therapies appear to attenuate the organic deterioration originated by an excessive oxidative stress, which could prevent the harmful effects of various injuries such as ischemia-reperfusion (I/R) among others. Marine brown seaweeds play a significant role, as they are the only organisms on earth producing phlorotannins, which are polyphenols that exhibit important biological activity. To ensure obtaining an extract with the greatest antioxidant activity, some variables that affect the extraction of polyph…

AntioxidantTime Factorsmedicine.medical_treatmentClinical BiochemistryPhaeophytaBiochemistryAntioxidantsAnalytical Chemistrychemistry.chemical_compound0404 agricultural biotechnologyChlorogenic acidLimit of DetectionmedicineCaffeic acidGallic acidGentisic acidChromatography High Pressure LiquidChromatography Reverse-PhaseChromatographyTemperaturefood and beveragesPolyphenolsReproducibility of ResultsCatechin04 agricultural and veterinary sciencesCell BiologyGeneral MedicineFree Radical ScavengersSeaweed040401 food scienceOxidative StresschemistryPolyphenolCalibrationMyricetinJournal of chromatography. B, Analytical technologies in the biomedical and life sciences
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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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Accelerated Solvent Extraction and Pulsed Electric Fields for Valorization of Rainbow Trout (Oncorhynchus mykiss) and Sole (Dover sole) By-Products: …

2021

Fishery by-products are rich in biologically active substances and the use of green and efficient extraction methods to recover these high-added-value compounds is of particular importance. In this study, head, skin and viscera of rainbow trout and sole were used as the target matrices and accelerated solvent extraction (ASE) (45–55 °C, 15 min, pH 5.2–6.8, 103.4 bars) and pulsed electric fields (PEF) (1–3 kV/cm, 123–300 kJ/kg, 15–24 h) were applied as extraction technologies. The results showed that ASE and PEF significantly increased the protein extract efficiency of the fish by-products (p < 0.05) by up to 80%. SDS-PAGE results showed that ASE and PEF treatments changed the molecular size…

AntioxidantantioxidantTime FactorsOxygen radical absorbance capacityFood Handlingmedicine.medical_treatmentPharmaceutical ScienceChemical Fractionation01 natural sciencesAntioxidantschemistry.chemical_compoundDover soleElectricityDrug DiscoveryFood sciencelcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)Polyacrylamide gel electrophoresisABTSTemperature04 agricultural and veterinary sciencesHydrogen-Ion Concentration040401 food science6. Clean waterOncorhynchus mykissFlatfishesMolar mass distributionElectrophoresis Polyacrylamide GelAntioxidantFish Proteinsanimal structuresFish by-productsArticleASE0404 agricultural biotechnologyfoodmedicinePressureAnimals14. Life underwaterWaste Productsfish by-productsOxygen Radical Absorbance CapacityProtein010401 analytical chemistryExtraction (chemistry)PEFfood.food0104 chemical sciencesMolecular Weightlcsh:Biology (General)chemistrySeafoodSolventsRainbow troutproteinSDS-PAGE
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The role of glutathione in protection against DNA damage induced by rifamycin SV and copper(II) ions.

1993

Incubation of calf thymus DNA in the presence of rifamycin SV induces a decrease in the absorbance of DNA at 260 nm. The effect, was found to be proportional to the antibiotic concentration and enhanced by copper(II) ions. In the presence of rifamycin SV and copper(II), a significant increase in thiobarbituric acid-reactive (TBA-reactive) material is also observed. This effect is inhibited to different degrees by the following antioxidants: catalase 77%; thiourea 72%; glutathione (GSH) 62%; ethanol 52%; and DMSO 34%, suggesting that both hydrogen peroxide (H2O2) and hydroxyl radicals (OH.) are involved in DNA damage. Rifamycin SV-copper(II) mixtures were also found to induce the production …

AntioxidantbiologyEthanolChemistryDNA damagemedicine.medical_treatmentRadicalThioureaRifamycinGlutathioneDNABiochemistryGlutathioneRifamycinsThiobarbituric Acid Reactive Substanceschemistry.chemical_compoundOxygen ConsumptionDeoxyriboseBiochemistryCatalasebiology.proteinmedicineHydrogen peroxideCopperDNA DamageFree radical research communications
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Antiproliferative activities of resveratrol and related compounds in human hepatocyte derived HepG2 cells are associated with biochemical cell distur…

2008

International audience; Resveratrol is a well known polyphenol largely produced in grapevine. It is a strong antioxidant and a free radical scavenger. It exhibits several beneficial effects for health including cancer. Resveratrol antioxidant activity is essential in the prevention of chemical-induced cancer by inhibiting initiation step of carcinogenesis process but it is also considered to inhibit cancer promotion and progression steps. While the effects of resveratrol on cancer cells are widely described, the data available on the antiproliferative potential of resveratrol derivatives remain weak. Nevertheless, resveratrol analogs could exhibit stronger potentials than the parent molecul…

Antioxidantendocrine system diseasesmedicine.medical_treatmentCell3-ViniferinResveratrolBiochemistryAntioxidants03 medical and health scienceschemistry.chemical_compound0302 clinical medicinePhenolsAcetate derivativesCell Line TumorStilbenesmedicineHumans[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biologyskin and connective tissue diseases[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular Biology030304 developmental biologyCell ProliferationCell uptake0303 health sciencesCell growthorganic chemicalsfood and beveragesGeneral MedicineFree radical scavenger3. Good healthmedicine.anatomical_structurechemistryBiochemistryCell culturePolyphenolResveratrol030220 oncology & carcinogenesisCancer cellAutofluorescenceHepatocytesNADPBiochimie
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In vitro bioaccessibility, transepithelial transport and antioxidant activity of Urtica dioica L. phenolic compounds in nettle based food products

2016

Nettle (Urtica dioica L.) is a well-known plant with a wide historical background use of stems, roots and leaves. Nettle leaves are an excellent source of phenolic compounds, principally 3-caffeoylquinic acid (3-CQA), caffeoylmalic acid (CMA) and rutin. The aim of this work was to evaluate the bioaccessibility (BAC), the bioavailability (BAV) and the antioxidant activity of nettle phenolic compounds present in foods and supplements. The BAC of nettle phenolics was evaluated with an in vitro dynamic digestion of real food matrices: the type of food matrix and chemical characteristic affected the kinetics of release and solubilization, with the highest BAC after duodenal digestion. A study of…

Antioxidantfood.ingredientFree Radicalsmedicine.medical_treatmentphenolicsBiological AvailabilityAntioxidantsNOchemistry.chemical_compoundRutinnettle phenolics HPLC-MS0404 agricultural biotechnologyfoodSuperoxidesmedicineHumansFood scienceUrtica dioicaUrticaUrtica dioicaBiological Transport04 agricultural and veterinary sciencesGeneral Medicinenettle040401 food scienceCaffeoylmalic acidBioavailabilityHPLC-MSBiochemistrychemistryFermentationCaco-2 CellsDigestionFood AnalysisFood Science
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Antioxidant reactions of all-trans retinol in phospholipid bilayers: effect of oxygen partial pressure, radical fluxes, and retinol concentration.

1997

Lipoperoxyl radical-scavenging activity of retinol in unilamellar soybean phosphatidylcholine liposomes was studied under a variety of conditions to appreciate to what extend retinol may be considered an effective antioxidant. Peroxidation, initiated by 2 mM 2,2'-azobis(amidino-propane)hydrochloride (AAPH), was carried out at 160 torr O2 or at 15 torr O2, in the absence or in the presence of 10 to 40 mM retinol. As evaluated by the length of the inhibition periods, t(inh), and by the ratio between the inhibition and propagation rate, R(inh)/R(p), the antioxidant activity of retinol was higher at 15 torr O2 than at 160 torr O2. The consumption rate of retinol was markedly faster at 160 torr …

Antioxidantgenetic structuresFree Radicalsmedicine.medical_treatmentLipid BilayersBiophysicsPhospholipidchemistry.chemical_elementPhotochemistryBiochemistryOxygenAntioxidantschemistry.chemical_compoundLipid oxidationPhosphatidylcholinemedicineButylated hydroxytolueneAll trans retinolVitamin AMolecular BiologyPhospholipidsChromatographyRetinolFree Radical ScavengersCarbonOxygenchemistryLiposomesRetinaldehydeDiterpenesArchives of biochemistry and biophysics
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