Search results for "free radicals"

showing 10 items of 154 documents

Mechanism of Free Radical Production in Exhaustive Exercise in Humans and Rats; Role of Xanthine Oxidase and Protection by Allopurinol

2000

Exhaustive exercise generates free radicals, However, the source of this oxidative damage remains controversial. The aim of this paper was to study further the mechanism of exercise-induced production of free radicals, Testing the hypothesis that xanthine oxidase contributes to the production of free radicals during exercise, me found not only that exercise caused an increase in blood xanthine oxidase activity in rats but also that inhibiting xanthine oxidase with allopurinol prevented exercise-induced oxidation of glutathione in both rats and in humans. Furthermore, inhibiting xanthine oxidase prevented the increases in the plasma activity of cytosolic enzymes (lactate dehydrogenase, aspar…

AdultMaleXanthine OxidaseFree RadicalsAllopurinolPhysical ExertionClinical BiochemistryAllopurinolOxidative phosphorylationallopurinolPharmacologyMitochondrionmedicine.disease_causeBiochemistrychemistry.chemical_compoundphysical exerciseMalondialdehydeGeneticsmedicineoxidative stressAnimalsHumansAspartate AminotransferasesEnzyme InhibitorsRats WistarMuscle SkeletalXanthine oxidaseCreatine KinaseExerciseMolecular BiologyOxidase testL-Lactate DehydrogenaseFree Radical ScavengersCell BiologyGlutathioneXanthineGlutathioneMitochondriaRatsOxidative StressLiverchemistryBiochemistryxanthine oxidaseOxidative stressmedicine.drugIUBMB Life (International Union of Biochemistry and Molecular Biology: Life)
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Increased plasma xanthine oxidase activity is related to nuclear factor kappa beta activation and inflammatory markers in familial combined hyperlipi…

2010

Abstract Background and aims Xanthine oxidase (XO) has been described as one of the major enzymes producing free radicals in blood. Oxidative stress and inflammatory processes have been implicated in the pathogenesis of endothelial dysfunction and the progression of atherosclerosis but until now, there is little data about the influence of vascular prooxidant systems and inflammation in familial combined hyperlipidemia (FCH). Our goal was to evaluate whether XO activity was altered in FCH and if it was related to the inflammatory process represented by NFkB, IL-6 and hsCRP, and assessing the correlation between XO activity and insulin resistance (IR). Method and results 40 Non-related subje…

AdultMaleXanthine Oxidasemedicine.medical_specialtyFree RadicalsEndocrinology Diabetes and Metabolismmedicine.medical_treatmentHyperlipidemia Familial CombinedMedicine (miscellaneous)Inflammationmedicine.disease_causechemistry.chemical_compoundInsulin resistanceMalondialdehydeInternal medicineHyperlipidemiamedicineHumansXanthine oxidaseInflammationNutrition and Dieteticsmedicine.diagnostic_testInterleukin-6business.industryInsulinNF-kappa BMiddle AgedAtherosclerosismedicine.diseaseLipidsOxidative StressC-Reactive ProteinLogistic ModelsEndocrinologychemistryMultivariate AnalysisUric acidFemaleEndothelium VascularLipid PeroxidationInsulin Resistancemedicine.symptomCardiology and Cardiovascular MedicineLipid profilebusinessBiomarkersOxidative stressNutrition, Metabolism and Cardiovascular Diseases
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Effect of exercise training on in vitro LDL oxidation and free radical-induced hemolysis: the HERITAGE Family Study.

2006

Oxidant stress and overproduction of reactive oxygen species (ROS) contribute to the development of cardiovascular disease. Oxidative modifications of low-density lipoproteins (LDL) are thought to play an early and critical role in atherogenesis. LDL oxidation can be reproduced in vitro, but results usually show a large interindividual variation not entirely explained by the environment. Free radical-induced hemolysis is also proposed to reveal the overall antioxidant capacity. The roles of genetic factors and exercise on the variability of both measures were investigated. The study was conducted in 146 healthy individuals from 28 families participating in a 20-week exercise-training progra…

AdultMalemedicine.medical_specialtyErythrocytesAdolescentFree RadicalsPhysiologyClinical BiochemistryOxidative phosphorylationBiochemistryHemolysisInternal medicineMedicineHumansMolecular BiologyExerciseGeneral Environmental Sciencechemistry.chemical_classificationReactive oxygen speciesbusiness.industryFamily aggregationCell BiologyMiddle Agedmedicine.diseaseLipidsIn vitroHemolysisLipoproteins LDLAntioxidant capacityEpidemiologic StudiesEndocrinologyBiochemistrychemistryHealthy individualsGeneral Earth and Planetary SciencesFemalebusinessOxidation-ReductionAntioxidantsredox signaling
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The significance of sperm DNA oxidation in embryo development and reproductive outcome in an oocyte donation program: a new model to study a male inf…

2008

Objective: One byproduct resulting from free radical damage is the DNA hydroxylation also known as DNA oxidation. Our aim with this work was to determine the relevance of sperm DNA oxidation on embryo quality in oocyte donation cycles. Design: We prospectively studied pairs of oocyte donation cycles, i.e., the same oocyte donors, donating to two recipients, where the only difference between the two treatments was the use of a different sperm sample. Setting: University-affiliated private IVF setting. Patient(s): Infertile male partners from couples undergoing oocyte donation cycles (n=38): 76 semen aliquots analyzed before and after semen processing by swim up. Intervention(s): None. Main O…

AdultMalemedicine.medical_treatmentEmbryonic Developmentembryofree radicalsFertilization in VitroReproductive technologyBiologyspermmale fertilityMale infertilityAndrologyPregnancymedicineHumansProspective StudiesDNA oxidationInfertility MaleSperm motilityOocyte Donationurogenital systemArtificial inseminationPregnancy OutcomeDeoxyguanosineObstetrics and GynecologyEmbryoDNAMiddle AgedPrognosismedicine.diseaseOocyteSpermatozoaSpermmedicine.anatomical_structureReproductive Medicine8-Hydroxy-2'-Deoxyguanosineoocyte donationLinear ModelsFemaleOxidation-ReductionSperm CapacitationBiomarkersEmbryo qualityFertility and Sterility
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Mitochondrial oxidative stress plays a key role in aging and apoptosis

2000

Harman first suggested in 1972 that mitochondria might be the biological clock in aging, noting that the rate of oxygen consumption should determine the rate of accumulation of mitochondrial damage produced by free radical reactions. Later in 1980 Miquel and coworkers proposed the mitochondrial theory of cell aging. Mitochondria from postmitotic cells use O2 at a high rate, hence releasing oxygen radicals that exceed the cellular antioxidant defences. The key role of mitochondria in cell aging has been outlined by the degeneration induced in cells microinjected with mitochondria isolated from fibroblasts of old rats, especially by the inverse relationship reported between the rate of mitoch…

AgingFree RadicalsClinical BiochemistryApoptosisOxidative phosphorylationMitochondrionBiologymedicine.disease_causeDNA MitochondrialBiochemistryLipid peroxidationMicechemistry.chemical_compoundGeneticsmedicineCardiolipinAnimalsHumansMolecular BiologyFree-radical theory of agingchemistry.chemical_classificationReactive oxygen speciesBrainCell BiologyGlutathioneMitochondriaOxygenOxidative StressLiverchemistryBiochemistryCell agingOxidative stress
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Mitochondria, oxidative stress and aging

2000

In the eighties, Miquel and Fleming suggested that mitochondria play a key role in cellular aging. Mitochondria, and specially mitochondrial DNA (mtDNA), are major targets of free radical attack. At present, it is well established that mitochondrial deficits accumulate upon aging due to oxidative damage. Thus, oxidative lesions to mtDNA accumulate with age in human and rodent tissues. Furthermore, levels of oxidative damage to mtDNA are several times higher than those of nuclear DNA. Mitochondrial size increases whereas mitochondrial membrane potential decreases with age in brain and liver. Recently, we have shown that treatment with certain antioxidants, such as sulphur-containing antioxid…

AgingMitochondrial DNAFree RadicalsDNA damageAge FactorsGeneral MedicineOxidative phosphorylationBiologyMitochondrionMitochondrial Sizemedicine.disease_causeBiochemistryAntioxidantsMitochondriaLipid peroxidationOxidative Stresschemistry.chemical_compoundBiochemistrychemistrymedicineReactive Oxygen SpeciesOxidative stressDNA DamageFree-radical theory of agingFree Radical Research
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Biomarkers of oxidative and nitrosative damage in Alzheimer's disease and mild cognitive impairment

2009

Alzheimer's disease (AD) is the most common type of dementia in the elderly. Products of oxidative and nitrosative stress (OS and NS, respectively) accumulate with aging, which is the main risk factor for AD. This provides the basis for the involvement of OS and NS in AD pathogenesis. OS and NS occur in biological systems due to the dysregulation of the redox balance, caused by a deficiency of antioxidants and/or the overproduction of free radicals. Free radical attack against lipids, proteins, sugars and nucleic acids leads to the formation of bioproducts whose detection in fluids and tissues represents the currently available method for assessing oxidative/nitrosative damage. Post-mortem …

AgingPathologymedicine.medical_specialtyFree RadicalsAlzheimer’s disease Mild cognitive impairment Free radicals Nitrosative stress Oxidative stressBioenergeticsDiseaseOxidative phosphorylationmedicine.disease_causeBiochemistryPathogenesisAlzheimer DiseaseHumansMedicineDementiaMolecular BiologyFree-radical theory of agingbusiness.industryMetabolismmedicine.diseaseOxidative StressNeurologyImmunologySettore MED/26 - NeurologiaCognition DisordersReactive Oxygen SpeciesbusinessBiomarkersOxidative stressBiotechnology
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Physical exercise as an epigenetic modulator: Eustress, the "positive stress" as an effector of gene expression.

2012

Physical exercise positively influences epigenetic mechanisms and improves health. Several issues remain unclear concerning the links between physical exercise and epigenetics. There is growing concern about the negative influence of excessive and persistent physical exercise on health. How an individual physically adapts to the prevailing environmental conditions might influence epigenetic mechanisms and modulate gene expression. In this article, we put forward the idea that physical exercise, especially long-term repetitive strenuous exercise, positively affects health, reduces the aging process, and decreases the incidence of cancer through induced stress and epigenetic mechanisms. We pr…

AgingPhysical Therapy Sports Therapy and RehabilitationPhysical exerciseFree radicalsDevelopmental psychologyDNA methylation; Free radicals; Histones; Muscle damage; Oxidative stress;Epigenesis GeneticHistonesMuscle damageNeoplasmsGene expressionHumansOrthopedics and Sports MedicineEpigeneticsExercise physiologyExerciseLife StyleEustressEpigenesisDNA methylationEffectorGeneral MedicineAdaptation PhysiologicalLifestyle factorsOxidative stressPsychologyNeuroscienceJournal of strength and conditioning research
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Ring splitting of azetidin-2-ones via radical anions

2012

The radical anions of azetidin-2-ones, generated by UV-irradiation in the presence of triethylamine, undergo ring-splitting via N-C4 or C3-C4 bond breaking, leading to open-chain amides. This reactivity diverges from that found for the neutral excited states, which is characterised by alpha-cleavage. The preference for beta-cleavage is supported by DFT theoretical calculations on the energy barriers associated with the involved transition states. Thus, injection of one electron into the azetidin-2-one moiety constitutes a complementary activation strategy which may be exploited to produce new chemistry.

AnionsAZETIDINESFree RadicalsUltraviolet RaysElectronVINYL ETHERSRing (chemistry)PhotochemistryBiochemistryPolarizable continuum modelchemistry.chemical_compoundN-(ARYLIDENE(OR ALKYLIDENE)AMINO)-2-AZETIDINONESQUIMICA ORGANICAMoietyReactivity (chemistry)BETA-LACTAM RINGPhysical and Theoretical ChemistryTriethylamineDNA PHOTOLYASEMolecular StructureSTEREOCONTROLLED SYNTHESISOrganic ChemistryTransition stateSTEREOSELECTIVE-SYNTHESISchemistryPOLARIZABLE CONTINUUM MODELExcited stateQuantum TheoryPHOTOCHEMICAL-REACTIONSBUILDING-BLOCKS
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ESR and electrochemical studies of 2-acylpyridines and 6,6'-diacyl-2,2'-bipyridines.

2005

Abstract The ESR spectra of radicals obtained by electrolytic reduction of 2-acylpyridines and 6,6′-diacyl-2,2′-bipyridines were measured in dimethylsulfoxide (DMSO) and analyzed by quantum chemical calculations. The electrochemistry of these compounds was characterized using cyclic voltammetry, in DMSO solvent. The results showed a two step reduction mechanism, first wave was assigned to the generation of the correspondent free radical species, and the second wave was assigned to the dianion derivatives. AM1 and DFT calculations were performed to obtain the optimized geometries, theoretical hyperfine constants, and spin distributions, respectively. The theoretical results are in complete a…

AnionsFree RadicalsPyridinesRadicalAcylationElectrolyteElectrochemistryAnalytical Chemistrylaw.inventionComputational chemistrylawElectrochemistryDimethyl SulfoxidePhysics::Chemical PhysicsSpin (physics)Electron paramagnetic resonanceInstrumentationHyperfine structureElectrodesSpectroscopyMolecular StructureChemistryElectron Spin Resonance SpectroscopyAtomic and Molecular Physics and OpticsSolventPhysical chemistryCyclic voltammetrySpectrochimica acta. Part A, Molecular and biomolecular spectroscopy
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