Search results for "pero"

showing 10 items of 3365 documents

Aging Negatively Affects Estrogens-Mediated Effects on Nitric Oxide Bioavailability by Shifting ERα/ERβ Balance in Female Mice

2011

AIMS: Aging is among the major causes for the lack of cardiovascular protection by estrogen (E2) during postmenopause. Our study aims to determine the mechanisms whereby aging changes E2 effects on nitric oxide (NO) production in a mouse model of accelerated senescence (SAM). METHODS AND RESULTS: Although we found no differences on NO production in females SAM prone (SAMP, aged) compared to SAM resistant (SAMR, young), by either DAF-2 fluorescence or plasmatic nitrite/nitrate (NO2/NO3), in both cases, E2 treatment increased NO production in SAMR but had no effect in SAMP. Those results are in agreement with changes of eNOS protein and gene expression. E2 up-regulated eNOS expression in SAMR…

AgingAnatomy and Physiologylcsh:MedicineEstrogen receptorFluorescent Antibody TechniqueCardiovascularCardiovascular SystemBiochemistrychemistry.chemical_compoundMiceEndocrinologyEnosMolecular Cell BiologyMembrane Receptor Signalinglcsh:ScienceReceptorMultidisciplinarybiologySuperoxideNeurochemistryHormone Receptor SignalingReceptors EstrogenDNA methylationCirculatory PhysiologyMedicineFemaleNeurochemicalsResearch ArticleSignal TransductionSenescencemedicine.medical_specialtymedicine.drug_classBlotting WesternEndocrine SystemNitric OxideReal-Time Polymerase Chain ReactionCardiovascular PharmacologyNitric oxideInternal medicinemedicineCardiovascular Diseases in WomenAnimalsBiologyEndocrine Physiologylcsh:RNADPH OxidasesEstrogensDNA Methylationbiology.organism_classificationHormonesEndocrinologychemistryEstrogenWomen's Healthlcsh:QNeurosciencePLoS ONE
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Cocoa polyphenols and their potential benefits for human health.

2012

This paper compiles the beneficial effects of cocoa polyphenols on human health, especially with regard to cardiovascular and inflammatory diseases, metabolic disorders, and cancer prevention. Their antioxidant properties may be responsible for many of their pharmacological effects, including the inhibition of lipid peroxidation and the protection of LDL-cholesterol against oxidation, and increase resistance to oxidative stress. The phenolics from cocoa also modify the glycemic response and the lipid profile, decreasing platelet function and inflammation along with diastolic and systolic arterial pressures, which, taken together, may reduce the risk of cardiovascular mortality. Cocoa polyph…

AgingAntioxidantmedicine.medical_treatmentBiological AvailabilityInflammationReview ArticlePharmacologyBiologymedicine.disease_causeBiochemistryAntioxidantsProinflammatory cytokineLipid peroxidationchemistry.chemical_compoundmedicineAnimalsHumansDiseaselcsh:QH573-671CacaoCancer preventionmedicine.diagnostic_testlcsh:Cytologyfood and beveragesPolyphenolsCell BiologyGeneral MedicineBiochemistrychemistryHealthChemoprotectivemedicine.symptomLipid profileOxidative stressOxidative medicine and cellular longevity
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Induction of Mitochondrial Changes Associated with Oxidative Stress on Very Long Chain Fatty Acids (C22:0, C24:0, or C26:0)-Treated Human Neuronal Ce…

2012

In Alzheimer's disease, lipid alterations point towards peroxisomal dysfunctions. Indeed, a cortical accumulation of saturated very long chain fatty acids (VLCFAs: C22:0, C24:0, C26:0), substrates for peroxisomalβ-oxidation, has been found in Alzheimer patients. This study was realized to investigate the effects of VLCFAs at the mitochondrial level since mitochondrial dysfunctions play crucial roles in neurodegeneration. On human neuronal SK-NB-E cells treated with C22:0, C24:0, or C26:0 (0.1–20 μM; 48 h), an inhibition of cell growth and mitochondrial dysfunctions were observed by cell counting with trypan blue, MTT assay, and measurement of mitochondrial transmembrane potential (Δψm) with…

AgingArticle SubjectMitochondrionBiologymedicine.disease_causeBiochemistryMitochondrial apoptosis-induced channelchemistry.chemical_compoundSuperoxidesCell Line TumormedicineHumanslcsh:QH573-671Cell ShapeCell ProliferationMembrane Potential MitochondrialNeuronslcsh:CytologySuperoxideFatty AcidsNeurodegenerationCell BiologyGeneral MedicinePeroxisomeFlow Cytometrymedicine.diseaseMolecular biologyMitochondriaCell biologyOxidative StressProtein SubunitsMicroscopy FluorescencechemistryMultiprotein ComplexesDNAJA3ATP–ADP translocaseOxidative stressResearch ArticleOxidative Medicine and Cellular Longevity
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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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Correlation between superoxide dismutase, glutathione peroxidase and catalase in isolated rat hepatocytes during fetal development

1981

Abstract Superoxide dismutase, glutathione peroxidase and catalase activities were determined in isolated fetal rat hepatocytes of various ages and compared with the values of neonatal and adult cells. The developmental pattern of superoxide dismutase and glutathione peroxidase were very similar with a low constant activity in the fetal cells and a postnatal burst. On the contrary catalase begins to increase already since the 18th day of the fetal life. The results suggest a functional correlation of superoxide dismutase and glutathione peroxidase in the antioxidative enzyme defense of liver cells.

AgingGPX3BiophysicsGestational AgeAntioxidative enzymeSettore BIO/09BiochemistryGPX5GPX6Superoxide dismutaseFetusPregnancyAnimalsMolecular Biologychemistry.chemical_classificationGlutathione PeroxidaseFetusbiologySuperoxide DismutaseChemistryGlutathione peroxidaseRats Inbred StrainsCell BiologyCatalaseRatsAnimals NewbornLiverPeroxidasesBiochemistryCatalasebiology.proteinFemaleBiochemical and Biophysical Research Communications
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Effects of ageing on peroxidase activity and localization in radish (Raphanus sativus L.) seeds.

2010

Peroxidase activity was assayed in crude extracts of integument, cotyledons and embryo axis of radish seeds, deteriorated under accelerated ageing conditions. Over five days of ageing, in which germination decreased from 100 to 52%, the enzyme activity in integument was higher than that in other seed parts, increasing in the first days of ageing and then decreasing sharply in extremely aged seeds. Polyacrylamide gel electrophoresis analysis showed four peroxidase isoenzymes with MM of 98, 52.5, 32.8 and 29.5 kDa in the embryo axis of unaged seeds, and only the 32.8 and 29.5 kDa MM isoforms in the integument and cotyledons. In these parts of the seed, only the 29.5 kDa MM isoenzyme increased…

AgingHistologyBiophysicsRaphanusGerminationRaphanusSettore BIO/01 - Botanica Generaleistochimicalcsh:QH301-705.5PeroxidaseinvecchiamentobiologyHistocytochemistryElectric Conductivityfood and beveragesRaphanus sativusEmbryoCell Biologybiology.organism_classificationMolecular biologyEnzyme assayIsoenzymesAgeingBiochemistrylcsh:Biology (General)SpectrophotometryGerminationAgeingSeedsbiology.proteinCytochemistryCytochemistrymorfologia del semeElectrophoresis Polyacrylamide GelIntegumentperossidasianlisi di immaginePeroxidase
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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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BAG3 and friends: co-chaperones in selective autophagy during aging and disease.

2011

There is a reciprocal change in the expression of two members of the BAG (Bcl-2-associated athanogen) family, BAG1 and BAG3, during cellular aging and under acute stress ("BAG1-BAG3-switch"). BAG3 was recently described as a mediator of a novel macroautophagy pathway that uses the specificity of heat shock protein 70 (HSP70) to misfolded proteins and also involves other protein partners, such as HSPB8. Also crucial for induction and execution of autophagy are sequestosome-1/p62 (SQSTM1/p62) and LC3, an autophagosome-associated protein. In this novel pathway, BAG3 mediates the targeting and transport of degradation-prone substrates into aggresomes via the microtubule-motor dynein. Interestin…

AgingProteasome Endopeptidase ComplexDyneinBAG3Models BiologicalJUNQ and IPODUbiquitinAutophagyAnimalsDiseaseMolecular BiologyAdaptor Proteins Signal TransducingbiologyAutophagyUbiquitinationSignal transducing adaptor proteinDyneinsCell BiologyAdaptation PhysiologicalCell biologyHsp70DNA-Binding ProteinsAggresomeBiochemistrybiology.proteinMolecular ChaperonesTranscription FactorsAutophagy
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Chaperonopathies of senescence and the scrambling of interactions between the chaperoning and the immune systems.

2010

Aging entails progressive deterioration of molecules and supramolecular structures, including Hsp chaperones and their complexes, paralleled by functional decline. Recent research has changed our views on Hsp chaperones. They work inside and outside cells in many locations, alone or forming teams, interacting with cells, receptors, and molecules that are not chaperones, in roles that are not typically attributed to chaperones, such as protein folding. Hsp chaperones form a physiological system with a variety of functions and interactions with other systems, for example, the immune system. We propose that chaperone malfunctioning due to structural damage or gene dysregulation during aging ha…

AgingProtein Foldingchaperonopathies by mistakeSettore BIO/16 - Anatomia Umanachaperoning systemImmune Systemchaperoning system interactionchaperonopathieCarrier Proteinschaperonotherapy Hsp60Molecular ChaperonesAnnals of the New York Academy of Sciences
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HSF1-controlled and age-associated chaperone capacity in neurons and muscle cells of C. elegans.

2010

Protein stability under changing conditions is of vital importance for the cell and under the control of a fine-tuned network of molecular chaperones. Aging and age-related neurodegenerative diseases are directly associated with enhanced protein instability. Employing C. elegans expressing GFP-tagged luciferase as a reporter for evaluation of protein stability we show that the chaperoning strategy of body wall muscle cells and neurons is significantly different and that both are differently affected by aging. Muscle cells of young worms are largely resistant to heat stress, which is directly mediated by the stress response controlled through Heat Shock Transcription Factor 1. During recover…

AgingProteomeGreen Fluorescent Proteinslcsh:MedicineBiologyBiochemistryBiochemistry/Protein FoldingAnimals Genetically ModifiedHeat shock proteinAnimalsMyocyteHeat shockCaenorhabditis elegansCaenorhabditis elegans ProteinsHSF1lcsh:ScienceDNA PrimersNeuronsMultidisciplinaryBase SequenceMuscleslcsh:RCell Biology/Cellular Death and Stress ResponsesMolecular biologyCell biologyHeat shock factorMicroscopy FluorescenceChaperone (protein)biology.proteinProtein foldinglcsh:QProtein stabilizationResearch ArticleMolecular ChaperonesTranscription FactorsPLoS ONE
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