Search results for "DOCOSAHEXAENOIC ACID"

showing 10 items of 112 documents

Dietary polyunsaturated fatty acids reduce retinal stress induced by an elevation of intraocular pressure in rats.

2011

International audience; N-6 and n-3 polyunsaturated fatty acids (PUFAs) have been shown to prevent tissue release of inflammatory molecules. We have shown that a combination of n-6 and n-3 PUFAs is more efficient than single supplementations on the long-term consequences of intraocular pressure elevation. We hypothesized that such an association is also more effective during early retinal stress by modifying retinal proinflammatory prostaglandin and cytokine productions. Rats were supplemented for 3 months with n-6 PUFAs, n-3 PUFAs, or both n-6 and n-3 PUFAs. After 3 months, a surgical elevation of intraocular pressure was induced. Retinal morphometry and glial cell activation were evaluate…

MaleMESH : RNA MessengerMESH: Eicosapentaenoic AcidEndocrinology Diabetes and Metabolismmedicine.medical_treatment[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionInterleukin-1betaMESH: Dietary SupplementsMESH: Rats Sprague-DawleyRats Sprague-Dawleychemistry.chemical_compound0302 clinical medicineEndocrinologyMESH: Interleukin-1betaratMESH: AnimalsProstaglandin E2Prostaglandin E1MESH : Tumor Necrosis Factor-alphaMESH : Intraocular Pressure0303 health sciencesNutrition and DieteticsMESH : RatsMESH : NeurogliaMESH: RetinaMESH: Dinoprostonepression intraoculaireMESH: AlprostadilMESH: Docosahexaenoic AcidsBiochemistryEicosapentaenoic AcidDocosahexaenoic acidlipids (amino acids peptides and proteins)MESH: NeurogliaProstaglandin D2Cell activationNeurogliaMESH : Alprostadilmedicine.drugProstaglandin Emedicine.medical_specialtyMESH : DinoprostoneMESH : Interleukin-6Docosahexaenoic AcidsMESH: RatsMESH : MaleProstaglandinBiologyMESH : Interleukin-1betaDinoprostoneRetinaMESH : Diet03 medical and health sciencesMESH: DietMESH: Intraocular PressureInternal medicinemedicineMESH : Eicosapentaenoic AcidAnimalsMESH : Dietary SupplementsRNA MessengerAlprostadilprostanoids030304 developmental biologyMESH: RNA MessengerInterleukin-6Tumor Necrosis Factor-alphadietary polyunsatured fatty acidretinal stressMESH : RetinaRetinalN-6MESH: Interleukin-6MESH : Rats Sprague-Dawleyeye diseasesMESH: MaleMESH : Docosahexaenoic AcidsDietRatsN-3EndocrinologychemistryMESH: Tumor Necrosis Factor-alphaDietary Supplements030221 ophthalmology & optometryMESH : Animalssense organs[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionintraocular pressure
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Prenatal Omega-6:Omega-3 Ratio and Attention Deficit and Hyperactivity Disorder Symptoms

2019

Supported by the Spanish Institute of Health Carlos III (Co-funded by European Regional Development Fund “A way to make Europe”) (CP14/00108, PI16/00261, MS14/00108 [to J.J.]), the Agència de Gestió d’Ajuts Universitaris i de Recerca, Generalitat de Catalunya - Fons Social Europeu (2017 FI_B 00636 [to N.V-T.]), the Spanish Ministry of Science and Innovation (RYC-2012-10995 [to P.D.] and RYC-2011-08796 [to D.R.]), Obra Social Cajastur/Fundación Liberbank, Universidad de Oviedo, CIBERESP, Department of Health of the Basque Government, the Provincial Government of Gipuzkoa, the municipalities of the study area (Zumarraga, Urretxu, Legazpi, Azkoitia y Azpeitia y Beasain), Generalitat Valenciana…

MaleNeurobiologia del desenvolupamentTrastorns per dèficit d'atenció amb hiperactivitat en els infantsPediatricsmedicine.medical_specialtychildren long-chain polyunsaturated fatty acids neurodevelopment population-based cohortOffspringPopulationÀcids grassosRate ratioLogistic regressionAttention deficit disorder with hyperactivity in childrenlong-chain polyunsaturated fatty acids03 medical and health sciences0302 clinical medicinePregnancyFatty Acids Omega-6030225 pediatricsFatty Acids Omega-3medicineHumansProspective Studiespopulation-based cohortDevelopmental neurobiology030212 general & internal medicineFatty acidsChildeducationPrenatal Nutritional Physiological PhenomenaChildrenSubclinical infectionchemistry.chemical_classificationPregnancyeducation.field_of_studyneurodevelopmentbusiness.industryFetal Bloodmedicine.diseasechemistryAttention Deficit Disorder with HyperactivityDocosahexaenoic acidChild PreschoolPediatrics Perinatology and Child HealthFemalebusinessInfantsPolyunsaturated fatty acidThe Journal of Pediatrics
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Erythrocyte Phospholipid and Polyunsaturated Fatty Acid Composition in Diabetic Retinopathy

2014

Background: Long chain polyunsaturated fatty acids (LCPUFAs) including docosahexaenoic acid and arachidonic acid are suspected to play a key role in the pathogenesis of diabetes. LCPUFAs are known to be preferentially concentrated in specific phospholipids termed as plasmalogens. This study was aimed to highlight potential changes in the metabolism of phospholipids, and particularly plasmalogens, and LCPUFAs at various stages of diabetic retinopathy in humans. Methodology and Principal Findings: We performed lipidomic analyses on red blood cell membranes from controls and mainly type 2 diabetes mellitus patients with or without retinopathy. The fatty acid composition of erythrocytes was det…

MaleOrganes des senslcsh:MedicineType 2 diabetesBiochemistrySeverity of Illness Indexchemistry.chemical_compoundMELLITUS0302 clinical medicineMedicine and Health SciencesMedicineOXIDATIVE STRESSlcsh:ScienceRETINAPhospholipidschemistry.chemical_classification0303 health sciencesCOMPLICATIONSMultidisciplinaryINSULIN SENSITIVITYFatty AcidsDiabetic retinopathyMiddle AgedLipids3. Good healthDocosahexaenoic acid[ SDV.MHEP.OS ] Life Sciences [q-bio]/Human health and pathology/Sensory OrgansFatty Acids UnsaturatedPhosphatidylcholinesRetinal DisordersArachidonic acidlipids (amino acids peptides and proteins)FemalePolyunsaturated fatty acidRetinopathyResearch ArticleEXPRESSIONAdultmedicine.medical_specialtySensory OrgansPlasmalogensPhospholipidMédecine humaine et pathologie030209 endocrinology & metabolism03 medical and health sciencesInternal medicineDiabetes mellitus[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyDiabetes MellitusHumans[SDV.MHEP.OS]Life Sciences [q-bio]/Human health and pathology/Sensory OrgansRetinopathy030304 developmental biologyAgedDiabetic Retinopathybusiness.industryPhosphatidylethanolamineslcsh:RErythrocyte MembraneBiology and Life SciencesDOCOSAHEXAENOIC ACIDmedicine.diseaseLipid MetabolismENDOTHELIAL-CELLSDOCOSAHEXAENOIC ACID;INSULIN SENSITIVITY;ENDOTHELIAL-CELLS;OXIDATIVE STRESS;RETINA;LIPIDS;DEFORMABILITY;COMPLICATIONS;EXPRESSION;MELLITUSOphthalmologyEndocrinologyDiabetes Mellitus Type 1chemistryDiabetes Mellitus Type 2Metabolic DisordersCase-Control Studieslcsh:QHuman health and pathologybusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyDEFORMABILITYPLoS ONE
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Supplementation of polyunsaturated fatty acids, magnesium and zinc in children seeking medical advice for attention-deficit/hyperactivity problems - …

2010

Abstract Background Polyunsaturated fatty acids are essential nutrients for humans. They are structural and functional components of cell membranes and pre-stages of the hormonally and immunologically active eicosanoids. Recent discoveries have shown that the long-chained omega-3 fatty acids eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) also play an important role in the central nervous system. They are essential for normal brain functioning including attention and other neuropsychological skills. Materials and methods In our large observational study we monitored 810 children from 5 to 12 years of age referred for medical help and recommended for consuming polyunsaturated fatt…

MaleParentsSleep Wake Disordersmedicine.medical_specialtyPediatricsAdolescentEndocrinology Diabetes and MetabolismClinical BiochemistryClinical nutritionHyperkinesisBiologyImpulsivityCohort StudiesEndocrinologyFatty Acids Omega-6Surveys and QuestionnairesInternal medicineFatty Acids Omega-3medicineHumansAttention deficit hyperactivity disorderAttentionMagnesiumAffective SymptomsMedical nutrition therapyChildAdverse effectlcsh:RC620-627chemistry.chemical_classificationBiochemistry medicalResearchBiochemistry (medical)medicine.diseaseEicosapentaenoic acidZinclcsh:Nutritional diseases. Deficiency diseasesEndocrinologychemistryAttention Deficit Disorder with HyperactivityDocosahexaenoic acidChild PreschoolDietary SupplementsImpulsive BehaviorPatient ComplianceFemalemedicine.symptomPolyunsaturated fatty acidLipids in Health and Disease
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Lipid composition of the human eye: are red blood cells a good mirror of retinal and optic nerve fatty acids?

2011

International audience; BACKGROUND: The assessment of blood lipids is very frequent in clinical research as it is assumed to reflect the lipid composition of peripheral tissues. Even well accepted such relationships have never been clearly established. This is particularly true in ophthalmology where the use of blood lipids has become very common following recent data linking lipid intake to ocular health and disease. In the present study, we wanted to determine in humans whether a lipidomic approach based on red blood cells could reveal associations between circulating and tissue lipid profiles. To check if the analytical sensitivity may be of importance in such analyses, we have used a do…

MalePathologyErythrocytes[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionBlood lipidsBiochemistryAnalytical Chemistrychemistry.chemical_compound0302 clinical medicineMolecular Cell BiologyPathologychemistry.chemical_classificationAged 80 and overLiquid Chromatography0303 health sciencesChromatographyMultidisciplinaryLipid ClassesQFatty AcidsRLipids3. Good healthChemistrymedicine.anatomical_structureDocosahexaenoic acidAlimentation et NutritionBlood ChemistryOptic nerveMedicineRetinal DisordersArachidonic acidFemalelipids (amino acids peptides and proteins)Fatty AlcoholsCellular TypesPolyunsaturated fatty acidResearch Articlemedicine.medical_specialtySpectrometry Mass Electrospray IonizationScienceGas Chromatography-Mass SpectrometryRetinaGlycerides03 medical and health sciencesDiagnostic MedicineLipidomicsLipid StructuremedicineFood and NutritionHumansBiology030304 developmental biologyAgedGas ChromatographyNutritionRetinaBlood CellsRetinalOptic NerveGlaucomaOphthalmologychemistryMacular Disorders030221 ophthalmology & optometry[SDV.AEN]Life Sciences [q-bio]/Food and NutritionBiomarkersGeneral Pathology
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Docosahexaenoic acid reduces suppressive and migratory functions of CD4CD25 regulatory T-cells

2009

Immunological tolerance is one of the fundamental aspects of the immune system. The CD4(+)CD25(+) regulatory T (Treg) cells have emerged as key players in the development of tolerance to self and foreign antigens. However, little is known about the endogenous factors and mechanisms controlling their suppressive capacity on immune response. In this study, we observed that docosahexaenoic acid (DHA), an n-3 polyunsaturated fatty acid, diminished, in a dose-dependent manner, the capacity of Treg cells to inhibit the CD4(+)CD25(-) effector T-cell proliferation. DHA not only reduced the migration of Treg cells toward chemokines but also downregulated the mRNA expression of CCR-4 and CXCR-4 in Tr…

MaleReceptors CXCR4Chemokineextracellular signal-regulated kinase 1/2Receptors CCR4Docosahexaenoic Acidschemical and pharmacologic phenomenaQD415-436T-Lymphocytes RegulatoryBiochemistryMicehistone desacetylase 7EndocrinologyImmune systemAntigenAntigens CDCell MovementTransforming Growth Factor betaAnimalsCTLA-4 AntigenRNA MessengerIL-2 receptorCells CulturedCell ProliferationDose-Response Relationship DrugbiologySmad7Reverse Transcriptase Polymerase Chain ReactionInterleukin-2 Receptor alpha SubunitFOXP3Forkhead Transcription Factorshemic and immune systemsCell BiologyTransforming growth factor betaInterleukin-10Cell biologyMice Inbred C57BLInterleukin 10Docosahexaenoic acidImmunologybiology.proteinResearch ArticleJournal of Lipid Research
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Retinas of the Diurnal RodentArvicanthis ansorgeiAre Highly Resistant to Experimentally Induced Stress and Degeneration

2011

International audience; PURPOSE. Environmentally induced stress plays a significant role in retinal degeneration and blindness both in animals and in humans. Among such sources of stress, phototoxicity is well studied and has been shown to lead to photoreceptor-specific loss in a number of species. However, the vast majority of studies have been conducted in nocturnal, albino rod-dominant rat and mouse strains, and the pertinence of such findings to human pathology and cone loss is debatable. The authors examined retinal vulnerability to damage in the diurnal murid rodent Arvicanthis ansorgei, a pigmented species with a large number of cones. METHODS. The authors used established protocols …

MaleRetinal degenerationLightRodentsprague dawlayFatty Acids Nonesterifiedbright cyclic lightMicechemistry.chemical_compound0302 clinical medicine[SDV.IDA]Life Sciences [q-bio]/Food engineeringoxidative stressmethyl-N-nitrosoufrea0303 health sciencesbiologymedicine.diagnostic_testmouse retinaRetinal DegenerationMethylnitrosoureaAnatomydocosahexaenoic acidCircadian Rhythmmedicine.anatomical_structureDocosahexaenoic acidRetinal Cone Photoreceptor CellsN-3 fatty acidsPhototoxicityAlkylating Agentsmedicine.medical_specialtylight-induced degeneration03 medical and health sciencesSpecies SpecificityStress Physiologicalbiology.animalInternal medicineElectroretinographymedicineAnimals[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering030304 developmental biologyRetinaRetinalmedicine.diseaseMice Inbred C57BLMuridaeratsTissue DegenerationDisease Models AnimalEndocrinologyrhodopsinchemistryregenerationinduced photoreceptor apoptosis030221 ophthalmology & optometrysense organsElectroretinographyInvestigative Opthalmology & Visual Science
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Intravitreal Docosahexaenoic Acid in a Rabbit Model: Preclinical Safety Assessment

2014

PurposeThe purpose of the present study was to evaluate the retinal toxicity of a single dose of intravitreal docosahexaenoic acid (DHA) in rabbit eyes over a short-term period.MethodsSixteen New Zealand albino rabbits were selected for this pre-clinical study. Six concentrations of DHA (Brudy Laboratories, Barcelona, Spain) were prepared: 10 mg/50 µl, 5 mg/50 µl, 2'5 mg/50 µl, 50 µg/50 µl, 25 µg/50 µl, and 5 µg/50 µl. Each concentration was injected intravitreally in the right eye of two rabbits. As a control, the vehicle solution was injected in one eye of four animals. Retinal safety was studied by slit-lamp examination, and electroretinography. All the rabbits were euthanized one week a…

MaleRetinal degenerationgenetic structuresÀcids grassosPharmacologyBiochemistryMicechemistry.chemical_compoundCorneaMedicine and Health SciencesRatolinsExperimentació animalDegeneració (Patologia)Multidisciplinarymedicine.diagnostic_testQFatty AcidsChromatographic TechniquesRDegeneration (Pathology)Animal ModelsLipidsChemistrymedicine.anatomical_structureNeurologyDocosahexaenoic acidPhysical SciencesMedicineRetinal DisordersRabbitsSafetyAnatomyResearch Articlemedicine.medical_specialtyHistologyDrug Research and DevelopmentDocosahexaenoic AcidsNew Zealand AlbinoScienceOcular AnatomyResearch and Analysis MethodsRetinaInjectionsAqueous HumorModel OrganismsOcular SystemElectroretinographyToxicity Tests AcutemedicineAnimalsFatty acidsGas ChromatographyPharmacologyDose-Response Relationship Drugbusiness.industrySignificant differenceBiology and Life SciencesRetinalmedicine.diseaseSurgeryVitreous BodyOphthalmologychemistryNeuro-OphthalmologyAnimal experimentationRabbit modelClinical MedicinebusinessElectroretinographyPLoS ONE
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Olfactory discrimination ability and brain expression of c-fos, Gir and Glut1 mRNA are altered in n-3 fatty acid-depleted rats

2007

Abstract The long-chain polyunsaturated n  − 3 fatty acids ( n  − 3 PUFA), particularly docosahexaenoic acid (DHA), are abundantly present in the central nervous system and play an important role in cognitive functions such as learning and memory. We, therefore, investigated the effects of n  − 3 PUFA-depletion in rats (F2 generation) on the learning of an olfactory discrimination task, progressively acquired within a four-arm maze, and on the mRNA expression of some candidate genes, i.e., c-fos, Gir and glucose transporter (Glut1), which could reflect the level of cerebral activity. We observed that DHA contents were dramatically decreased in the olfactory bulb, the piriform cortex and the…

MaleTime Factors[SDV]Life Sciences [q-bio]OLFACTORY LEARNINGReceptors G-Protein-CoupledDiscrimination LearningBehavioral Neuroscience0302 clinical medicineDiscrimination PsychologicalPiriform cortexBRAINDiet Fat-Restricted0303 health sciencesGlucose Transporter Type 1NeocortexBehavior AnimalGIRReverse Transcriptase Polymerase Chain ReactionSmellmedicine.anatomical_structureBiochemistryDocosahexaenoic acidN−3 DEFICIENCYOlfactory LearningProto-Oncogene Proteins c-fosmedicine.medical_specialtyN-3 PUFAC-FOSCentral nervous systemOlfactionBiologyAPPRENTISSAGE03 medical and health sciencesInternal medicineFatty Acids Omega-3medicineAnimalsRNA MessengerRats WistarUnsaturated fatty acid030304 developmental biologyAnalysis of VarianceBody WeightDOCOSAHEXAENOIC ACIDOlfactory bulbRatsEndocrinologyGene Expression RegulationRAT030217 neurology & neurosurgeryGLUT1
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Docosahexaenoic acid, but not eicosapentaenoic acid, lowers ambulatory blood pressure and shortens interval QT in spontaneously hypertensive rats in …

2009

International audience; This study was designed to evaluate the effects of individual dietary long-chain n-3 polyunsaturated fatty acids (LCPUFA) on hypertension and cardiac consecutive disorders in spontaneously hypertensive rats (SHR) as compared to Wistar-Kyoto rats (WKY). Rats were fed for 2 months an eicosapentaenoic (EPA)- or docosahexaenoic acid (DHA)-rich diet (240 mg/day) or an n-3 PUFA-free diet. Male SHR (n=6), implanted with cardiovascular telemetry devices, were housed in individual cages for continuous measurements of cardiovascular parameters (blood pressure (BP) and heart rate (HR)) during either activity or rest periods, ECG were recorded during the quiet period. The n-6 PU…

MaleecgClinical BiochemistryBlood Pressure030204 cardiovascular system & hematologyEssential hypertensionRats Inbred WKYElectrocardiographychemistry.chemical_compound0302 clinical medicineRats Inbred SHRmembrane2. Zero hungerchemistry.chemical_classification0303 health sciences[SDV.BA]Life Sciences [q-bio]/Animal biologytelemetryEicosapentaenoic acid3. Good healthshrEicosapentaenoic AcidDocosahexaenoic acidHypertensioncardiovascular systemArachidonic acidlipids (amino acids peptides and proteins)Polyunsaturated fatty aciddietary n-3 lcpufamedicine.medical_specialtyCardiotonic AgentsDocosahexaenoic AcidsLinoleic acidheartBiology03 medical and health sciencesFatty Acids Omega-6Internal medicinemedicineAnimalsUnsaturated fatty acidphospholipid030304 developmental biologyMyocardiumessential hypertensionCell Biologymedicine.diseaseRatsblood pressure monitoringEndocrinologyBlood pressurechemistryEndothelium Vascular[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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