Search results for "MITOCHONDRION"

showing 10 items of 491 documents

Insulin-activated Akt rescues Aβ oxidative stress-induced cell death by orchestrating molecular trafficking

2011

Increasing evidence indicates that Alzheimer's disease, one of the most diffused aging pathologies, and diabetes may be related. Here, we demonstrate that insulin signalling protects LAN5 cells by amyloid-β42 (Aβ)-induced toxicity. Aβ affects both activation of insulin receptors and the levels of phospho-Akt, a critical signalling molecule in this pathway. In contrast, oxidative stress induced by Aβ can be antagonized by active Akt that, in turn, inhibits Foxo3a, a pro-apoptotic transcription factor activated by reactive oxygen species generation. Insulin cascade protects against mitochondrial damage caused by Aβ treatment, restoring the mitochondrial membrane potential. Moreover, we show t…

AgingbiologyAmyloid betaInsulinmedicine.medical_treatmentCell BiologyMitochondrionmedicine.disease_causeCell biologyInsulin receptormedicinebiology.proteinPhosphorylationSignal transductionProtein kinase BOxidative stressAging Cell
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Mitochondrial function in liver disease.

2006

Oxidative stress is involved in the pathogenesis and progression of different liver diseases, such as alcoholic liver disease and biliary cirrhosis. The increased mitochondrial production of O2(-) at complexes I and III, and consequently of H2O2 and other reactive oxygen species (ROS), triggered by NADH overproduction seems the major cause of mitochondrial and cellular oxidative stress and damage in chronic alcoholism. The mitochondrial oxidative stress renders hepatocytes susceptible to ethanol- or acetaldehyde-induced mitochondrial membrane permeability transition (MMPT) and apoptosis. Nitrosative stress contributes to cell death by peroxynitrite formation. The expression of the death rec…

Alcoholic liver diseaseProgrammed cell deathBiliary cirrhosisPopulationApoptosisMitochondria LiverMitochondrionmedicine.disease_causechemistry.chemical_compoundmedicineCardiolipinAnimalsHumanseducationLiver Diseases Alcoholicchemistry.chemical_classificationeducation.field_of_studyReactive oxygen speciesLiver Cirrhosis BiliaryLiver Diseasesmedicine.diseaseNADCell biologyRatsOxidative StresschemistryHepatocytesOxidative stressFrontiers in bioscience : a journal and virtual library
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Detection of mitochondrial electron chain carrier redox status by transhepatic light intensity during rat liver reperfusion.

2003

The aim of the study was to investigate mitochondrial electron transfer during rat liver reperfusion after cold storage and hypothermic machine perfusion. Livers from male Brown Norway rats were preserved (UW) for 10h either by cold storage (CS) or by hypothermic oxygenated perfusion extracorporal (HOPE). Transhepatic photometric analysis allowed determination of the redox status of mitochondrial cytochromes during preservation, rewarming and reperfusion. Mitochondrial electron chain carriers were inhibited at different sites with rotenone and cyanide in some experiments. reversed transcriptional polymerase chain reaction (RT-PCR) was performed after reperfusion concerning transcription of …

AnionsMaleTime FactorsCytochromeLightCold storageCaspase 3ElectronsDNA FragmentationMitochondrionGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundSuperoxidesAnimalsCaspase-9CryopreservationCyanidesbiologySuperoxideCaspase 3Reverse Transcriptase Polymerase Chain ReactionTumor Necrosis Factor-alphaJNK Mitogen-Activated Protein KinasesTemperatureNADH DehydrogenaseGeneral MedicineRotenoneDNAOrgan PreservationLipid MetabolismCaspase 9MitochondriaRatsCold TemperatureOxygenLight intensitychemistryBiochemistryElectron Transport Chain Complex ProteinsLiverCaspasesReperfusionbiology.proteinCytochromesLipid PeroxidationMitogen-Activated Protein KinasesGeneral Agricultural and Biological SciencesReactive Oxygen SpeciesOxidation-ReductionCryobiology
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Mitochondrial glutathione depletion by glutamine in growing tumor cells.

2000

The effect of L-glutamine (Gln) on mitochondrial glutathione (mtGSH) levels in tumor cells was studied in vivo in Ehrlich ascites tumor (EAT)-bearing mice. Tumor growth was similar in mice fed a Gln-enriched diet (GED; where 30% of the total dietary nitrogen was from Gln) or a nutritionally complete elemental diet (SD). As compared with non-tumor-bearing mice, tumor growth caused a decrease of blood Gln levels in mice fed an SD but not in those fed a GED. Tumor cells in mice fed a GED showed higher glutaminase and lower Gln synthetase activities than did cells isolated from mice fed an SD. Cytosolic glutamate concentration was 2-fold higher in tumor cells from mice fed a GED ( approximately…

AnionsMalemedicine.medical_specialtyFree RadicalsGlutamineOxidative phosphorylationBiologyMitochondrionMitochondrial Sizemedicine.disease_causeBiochemistryGlutaminase activitychemistry.chemical_compoundMiceAdenosine TriphosphatePhysiology (medical)Internal medicinemedicineAnimalsHumansAmino AcidsCarcinoma Ehrlich TumorGlutaminaseTumor Necrosis Factor-alphaGlutathioneHydrogen-Ion ConcentrationGlutathioneRecombinant ProteinsMitochondriaGlutamineOxidative StressEndocrinologyBiochemistrychemistryOxidative stressFree radical biologymedicine
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Altered Mitochondrial Function and Oxidative Stress in Leukocytes of Anorexia Nervosa Patients

2014

ContextAnorexia nervosa is a common illness among adolescents and is characterised by oxidative stress.ObjectiveThe effects of anorexia on mitochondrial function and redox state in leukocytes from anorexic subjects were evaluated.Design and settingA multi-centre, cross-sectional case-control study was performed.PatientsOur study population consisted of 20 anorexic patients and 20 age-matched controls, all of which were Caucasian women.Main outcome measuresAnthropometric and metabolic parameters were evaluated in the study population. To assess whether anorexia nervosa affects mitochondrial function and redox state in leukocytes of anorexic patients, we measured mitochondrial oxygen consumpt…

Anorexia NervosaEating DisordersMitochondrionmedicine.disease_causeBiochemistryElectron Transport Complex IIIchemistry.chemical_compoundLeukocytesMedicine and Health SciencesEnergy-Producing OrganellesMembrane Potential Mitochondrialchemistry.chemical_classificationeducation.field_of_studyMultidisciplinaryQRGlutathioneMitochondriaAnorexia nervosa (differential diagnoses)MedicineFemaleCellular Structures and Organellesmedicine.symptomResearch ArticleAdultmedicine.medical_specialtyAdolescentSciencePopulationContext (language use)AnorexiaBioenergeticsYoung AdultOxygen ConsumptionInternal medicineMental Health and PsychiatrymedicineHumanseducationReactive oxygen speciesElectron Transport Complex Ibusiness.industryBiology and Life SciencesCell BiologyGlutathioneOxidative StressEndocrinologychemistryMitochondrial SizeReactive Oxygen SpeciesbusinessOxidative stressPLoS ONE
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Neuroprotection by targeting antioxidant γ-glutamylcysteine to mitochondria

2012

AntioxidantChemistryPhysiology (medical)medicine.medical_treatmentmedicinePharmacologyMitochondrionBiochemistryNeuroprotectionFree Radical Biology and Medicine
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Molecular mechanisms of the cardiovascular protective effects of polyphenols

2012

Epidemiological studies have reported a greater reduction in cardiovascular risk and metabolic disorders associated with diets rich in polyphenols. The antioxidant effects of polyphenols are attributed to the regulation of redox enzymes by reducing reactive oxygen species production from mitochondria, NADPH oxidases and uncoupled endothelial NO synthase in addition to also up-regulating multiple antioxidant enzymes. Although data supporting the effects of polyphenols in reducing oxidative stress are promising, several studies have suggested additional mechanisms in the health benefits of polyphenols. Polyphenols from red wine increase endothelial NO production leading to endothelium-depende…

AntioxidantEndotheliummedicine.medical_treatmentMedicine (miscellaneous)MitochondrionPharmacologymedicine.disease_causeAntioxidantsNitric oxidechemistry.chemical_compoundPhenolsmedicineAnimalsHumansFlavonoidschemistry.chemical_classificationReactive oxygen speciesNutrition and DieteticsPolyphenolsfood and beveragesOxidative StressEnzymemedicine.anatomical_structurechemistryCardiovascular DiseasesPolyphenolEndothelium VascularOxidative stressBritish Journal of Nutrition
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Molecular Strategies for Targeting Antioxidants to Mitochondria: Therapeutic Implications

2015

Mitochondrial function and specifically its implication in cellular redox/oxidative balance is fundamental in controlling the life and death of cells, and has been implicated in a wide range of human pathologies. In this context, mitochondrial therapeutics, particularly those involving mitochondria-targeted antioxidants, have attracted increasing interest as potentially effective therapies for several human diseases. For the past 10 years, great progress has been made in the development and functional testing of molecules that specifically target mitochondria, and there has been special focus on compounds with antioxidant properties. In this review, we will discuss several such strategies, …

AntioxidantPhysiologyPlant AlkaloidsCellsAntioxidant propertiesmedicine.medical_treatmentClinical BiochemistryApoptosisContext (language use)Oxidative phosphorylationBiologyMitochondrionBiochemistryCellular redox/oxidative balanceAntioxidantsComprehensive Invited ReviewAutophagymedicineAnimalsHumansRedox activeMolecular BiologyGeneral Environmental ScienceHuman pathologiesAutophagyRedox active moleculesCell BiologyMitochondriaCell biologyBiochemistryGeneral Earth and Planetary SciencesMitochondrial functionTesting of moleculesOxidation-ReductionFunction (biology)Antioxidants & Redox Signaling
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Organic Nitrates and Nitrate Tolerance—State of the Art and Future Developments

2010

The hemodynamic and antiischemic effects of nitroglycerin (GTN) are lost upon chronic administration due to the rapid development of nitrate tolerance. The mechanism of this phenomenon has puzzled several generations of scientists, but recent findings have led to novel hypotheses. The formation of reactive oxygen and nitrogen species in the mitochondria and the subsequent inhibition of the nitrate-bioactivating enzyme mitochondrial aldehyde dehydrogenase (ALDH-2) appear to play a central role, at least for GTN, that is, bioactivated by ALDH-2. Importantly, these findings provide the opportunity to reconcile the two “traditional” hypotheses of nitrate tolerance, that is, the one postulating …

AntioxidantSuperoxideMechanism (biology)medicine.medical_treatmentMitochondrionmedicine.disease_causeHeme oxygenasechemistry.chemical_compoundchemistryNitrateBiochemistrymedicinePeroxynitriteOxidative stress
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Alteration of the Mitochondrial Effects of Ceria Nanoparticles by Gold: An Approach for the Mitochondrial Modulation of Cells Based on Nanomedicine

2020

Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold deposition and by surface functionalization with positive triphenylphosphonium units to selectively target the mitochondria. The antioxidant properties of these nanoparticles can serve as the basis of a new strategy for the treatment of several disorders exhibiting oxidative stress, such as cancer, diabetes or Alzheimer&rsquo

AntioxidantantioxidantGeneral Chemical Engineeringmedicine.medical_treatmentNanoparticleceria nanoparticles02 engineering and technologyMitochondrionmedicine.disease_causeArticlelcsh:Chemistry03 medical and health scienceschemistry.chemical_compoundQUIMICA ORGANICAmitochondrial functionmedicineGeneral Materials ScienceNRF1Gold-supported ceria nanoparticles030304 developmental biology0303 health sciencesChemistryfungigold-supported ceria nanoparticlesfood and beveragestriphenylphosphonium gold-supported ceria nanoparticles021001 nanoscience & nanotechnologylcsh:QD1-999Colloidal goldBiophysicsNanomedicineMitochondrial functionAntioxidant0210 nano-technologyAdenosine triphosphateCeria nanoparticlesOxidative stressTriphenylphosphonium gold-supported ceria nanoparticles
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