Search results for "Omega 3 fatty acid"

showing 9 items of 9 documents

Decreasing dietary linoleic acid promotes long chain omega-3 fatty acid incorporation into rat retina and modifies gene expression

2011

International audience; Age-related macular degeneration (AMD) may be partially prevented by dietary habits privileging the consumption of ω3 long chain polyunsaturated fatty acids (ω3s) while lowering linoleic acid (LA) intake. The present study aimed to document whether following these epidemiological guidelines would enrich the neurosensory retina and RPE with ω3s and modulate gene expression in the neurosensory retina. Rat progenitors and pups were fed with diets containing low or high LA, and low or high ω3s. After scotopic single flash and 8-Hz-Flicker electroretinography, rat pups were euthanized at adulthood. The fatty acid profile of the neurosensory retina, RPE, liver, adipose tis…

CD36 AntigensMaleMESH : RNA MessengerMESH: 5-Lipoxygenase-Activating ProteinsMESH : Receptors LDLMESH: Electroretinography0302 clinical medicineMESH: Fatty Acids Omega-3MESH: AnimalsMESH : Retinal Ganglion Cellschemistry.chemical_classification0303 health sciencesMESH : Gene Expression RegulationMESH : ElectroretinographyMESH: RetinaMESH: Chromatography GasMESH: Dietary Fats Unsaturateddocosahexaenoic acidpolyunsaturated fatty acidSensory Systems3. Good healthnutritionMESH: Photic StimulationAdipose TissueMESH: Adipose Tissuemedicine.medical_specialtyChromatography Gasmacular degenerationLinoleic acidMESH : Arachidonate 12-LipoxygenaseArachidonate 12-LipoxygenaseMESH : Adipose TissueMESH: Arachidonate 12-Lipoxygenasepufa03 medical and health sciencesMESH : Dietary Fats UnsaturatedlipidElectroretinographyRats Long-EvansRNA MessengerMESH: Linoleic AcidMESH: Antigens CD36MESH : RetinaFatty acidMESH: Retinal Ganglion Cellseye diseasesOphthalmologyEndocrinologychemistryMESH: Receptors LDL030221 ophthalmology & optometryATP-Binding Cassette Transportersn 3MESH: FemalePhotic StimulationMESH: LiverRetinal Ganglion CellsretinaMESH : 5-Lipoxygenase-Activating Proteinsgenetic structures[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionretinal pigment epitheliumelectroretinogramMESH : Photic StimulationAdipose tissueangiogenesischemistry.chemical_compoundMESH : FemaleMESH : Rats Long-Evans2. Zero hungermedicine.diagnostic_testMESH : RatsMESH: Real-Time Polymerase Chain ReactionMESH: Gene Expression RegulationMESH : Antigens CD36medicine.anatomical_structureLiverALOX12BiochemistryMESH: ATP-Binding Cassette TransportersFemaleATP Binding Cassette Transporter 1Polyunsaturated fatty acidMESH : Fatty Acids Omega-3MESH: RatsbrainMESH : Male5-Lipoxygenase-Activating ProteinsMESH : Real-Time Polymerase Chain Reactionrhesus monkeyBiologyReal-Time Polymerase Chain ReactionMESH : Chromatography GasLinoleic AcidCellular and Molecular NeuroscienceDietary Fats UnsaturatedMESH : Linoleic AcidMESH: Rats Long-EvansInternal medicineFatty Acids Omega-3medicineAnimalsMESH : ATP-Binding Cassette TransportersOmega 3 fatty acidMESH: RNA Messenger030304 developmental biologydeficient dietRetinal pigment epitheliumMESH : LiverMESH: MaleRatsGene Expression RegulationReceptors LDLgene expressionMESH : Animalssense organs[SDV.AEN]Life Sciences [q-bio]/Food and NutritionElectroretinographyExperimental Eye Research
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Future perspectives of the pharmacological management of diabetic dyslipidemia

2019

Introduction: Diabetic dyslipidemia is frequent among patients with type 2 diabetes mellitus (T2DM) and is characterized by an increase in triglycerides (TGs), low-density lipoprotein cholesterol (LDL-C), and small-dense (atherogenic) particles, and by a decrease in low high-density lipoprotein cholesterol (HDL-C) and apolipoprotein (Apo) A1 that are strongly related to insulin resistance. The increased flux of free fatty acids from adipose tissue to the liver aggravates hepatic insulin resistance and promotes all of aspects of the dyslipidemic state. Areas covered: Statins are the first-line agents for treatment while other lipid-lowering drugs (ezetimibe, fibrate and proprotein convertase…

medicine.medical_specialtyApolipoprotein Bmedicine.drug_classglucagon like peptide-1 receptor agonist (GLP-1RA)Fibrate030226 pharmacology & pharmacystatins03 medical and health sciences0302 clinical medicineInsulin resistanceEzetimibeInternal medicinemedicineHumansHypoglycemic AgentsPharmacology (medical)General Pharmacology Toxicology and PharmaceuticsOmega 3 fatty acidDyslipidemiasHypolipidemic Agentsfibratebiologybusiness.industrydyslipidemianutritional and metabolic diseasesType 2 Diabetes MellitusGeneral MedicineLipidmedicine.diseasesodium/glucose cotransporter 2 inhibitors (SGLT-2is)LipidsEndocrinologyDiabetes Mellitus Type 2Cardiovascular Diseases030220 oncology & carcinogenesisDipeptidyl peptidase-4 inhibitors (DPP-4is)Dietary Supplementsbiology.proteinKexinlipids (amino acids peptides and proteins)Hydroxymethylglutaryl-CoA Reductase InhibitorHydroxymethylglutaryl-CoA Reductase InhibitorsInsulin ResistancebusinessDyslipidemiamedicine.drugezetimibeproprotein convertase subtilisin/kexin type 9 (PCSK9)
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Stabilization of a nutraceutical omega-3 fatty acid by encapsulation in ultrathin electrosprayed zein prolamine.

2010

Docosahexaenoic acid (DHA) is a long chain polyunsaturated fatty acid of the omega-3 series (omega-3), which exerts strong positive influences on human health. The target of this study was the stabilization by encapsulation of this bioactive ingredient in zein ultrathin capsules produced by electrospraying. The zein ultrathin DHA encapsulation was observed by ATR-FTIR spectroscopy to be more efficient against degradation under both ambient conditions and in a confined space (so-called headspace experiment). In the latter case, that more closely simulates a sealed food packaging situation, the bioactive DHA was considerably more stable. By fitting the degradation data to a specific auto-deco…

Hot TemperatureDocosahexaenoic AcidsZeinPhenylpropanolamineGas Chromatography-Mass SpectrometryIngredientNutraceuticalNanocapsulesFatty Acids Omega-3Spectroscopy Fourier Transform InfraredOmega 3 fatty acidchemistry.chemical_classificationAldehydesVolatile Organic CompoundsChromatographyfood and beveragesFatty acidHumidityElectrochemical TechniquesFood packagingKineticschemistryModels ChemicalDocosahexaenoic acidPlant proteinTasteDietary SupplementsFood TechnologyOxidation-ReductionFood SciencePolyunsaturated fatty acidHalf-LifeJournal of food science
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Eight-week consumption of milk enriched with omega 3 fatty acids raises their blood concentrations yet does not affect lipids and cardiovascular dise…

2014

Adequate concentrations of omega 3 fatty acids (FA) may be maintained by consuming foods naturally rich in or functional foods enriched with those essential FA. We assessed the effects of an 8-week consumption of milk enriched with 400. mg of omega 3 FA on blood lipid levels and selected cardiovascular risk factors in adult healthy volunteers. Participants (n= 157) were randomized to consume - for eight weeks - either 500. mL/day of 1% fat milk providing 150. mg of eicosapentaenoic (EPA), 150. mg of docosahexaenoic (DHA), and 100. mg of α-linolenic (ALA) acids or 500. mL/day of non-enriched 1% fat milk. At week 8, we observed significant increments of blood EPA and DHA in the intervention g…

PharmacologyEicosapentaenoic acidmedicine.diagnostic_testHomocysteineBlood lipidsPhysiologyMilk enriched with fish oilBiologyEicosapentaenoic acidLeukotriene B4Thromboxane B2Thromboxane B2chemistry.chemical_compoundDocosahexaenoic acidchemistryDocosahexaenoic acidHealthy volunteersmedicineDisease riskOmega 3 fatty acidPharmacology (medical)Food scienceLipid profileDocosahexaenoic acid; Eicosapentaenoic acid; Leukotriene B4; Milk enriched with fish oil; Omega 3 fatty acids; Thromboxane B2; Pharmacology; Pharmacology (medical); Food ScienceFood Science
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Dual anti-oxidant and anti-inflammatory actions of the electrophilic cyclooxygenase-2-derived 17-oxo-DHA in lipopolysaccharide- and cigarette smoke-i…

2014

Abstract Background 17-Oxo-DHA is an endogenous electrophilic derivative of the omega-3 fatty acid docosahexaenoic acid (DHA) which is generated in activated macrophages by the action of cyclooxygenase-2. Methods The ability of 17-oxo-DHA to control inflammation and oxidative stress was tested in human macrophages (THP-1) and bronchial epithelial cell line (16HBE) stimulated with cigarette smoke extract (CSE) and lipopolysaccharide (LPS). All data were further confirmed using primary bronchial epithelial cells, alveolar macrophages and peripheral blood mononuclear cells. Results 17-Oxo-DHA was a strong inducer of the anti-oxidant response promoting Nrf2 nuclear accumulation, leading to the …

LipopolysaccharidesLipopolysaccharideDocosahexaenoic Acidsmedicine.drug_classBiophysicsAnti-Inflammatory AgentsInflammationPharmacologymedicine.disease_causeBiochemistryAnti-inflammatoryAntioxidantsCell Linechemistry.chemical_compoundImmune systemmedicineHumansOmega 3 fatty acidMolecular BiologyInflammationChemistryMacrophagesSmokingfood and beveragesEpithelial CellsHeme oxygenaseBiochemistryCyclooxygenase 2Leukocytes Mononuclearlipids (amino acids peptides and proteins)Tumor necrosis factor alphamedicine.symptomOxidative stressBiochimica et biophysica acta
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Prevalence and Determinants of the Use of Lipid-Lowering Agents in a Population of Older Hospitalized Patients: the Findings from the REPOSI (REgistr…

2017

BACKGROUND: Older patients are prone to multimorbidity and polypharmacy, with an inherent risk of adverse events and drug interactions. To the best of our knowledge, available information on the appropriateness of lipid-lowering treatment is extremely limited. AIM: The aim of the present study was to quantify and characterize lipid-lowering drug use in a population of complex in-hospital older patients. METHODS: We analyzed data from 87 units of internal medicine or geriatric medicine in the REPOSI (Registro Politerapie della Società Italiana di Medicina Interna) study, with reference to the 2010 and 2012 patient cohorts. Lipid-lowering drug use was closely correlated with the clinical prof…

Malemedicine.medical_specialtyLogistic ModelLipid-Lowering AgentsPopulationSocio-culturaleOlder Hospitalized Patients030204 cardiovascular system & hematologyGeriatrics and Gerontology; Pharmacology (medical)03 medical and health sciences0302 clinical medicineInternal medicine80 and overPrevalencemedicineHumansPharmacology (medical)030212 general & internal medicineMedical prescriptionIntensive care medicineOmega 3 fatty acideducationAdverse effectAgedHypolipidemic AgentsAged 80 and overPolypharmacyGeriatricseducation.field_of_studyHypolipidemic Agentbusiness.industryGeriatrics and Gerontology Pharmacology (medical)HospitalizationLogistic ModelsCohortPolypharmacyAged; Aged 80 and over; Female; Hospitalization; Humans; Hypolipidemic Agents; Logistic Models; Male; Polypharmacy; Prevalence; Geriatrics and Gerontology; Pharmacology (medical)FemaleGeriatrics and GerontologybusinessAged; Aged 80 and over; Female; Hospitalization; Humans; Hypolipidemic Agents; Logistic Models; Male; Polypharmacy; PrevalenceHumanCohort study
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Perinatal high-fat diet increases hippocampal vulnerability to the adverse effects of subsequent high-fat feeding

2015

Epidemiological observations report an increase in fat consumption associated with low intake of n-3 relative to n-6 polyunsaturated fatty acids (PUFAs) in women of childbearing age. However, the impact of these maternal feeding habits on cognitive function in the offspring is unknown. This study aims to investigate the impact of early exposure to a high-fat diet (HFD) with an unbalanced n-6/n-3 PUFAs ratio on hippocampal function in adult rats. Furthermore, we explored the effects of perinatal HFD combined with exposure to HFD after weaning. Dams were fed a control diet (C, 12% of energy from lipids, n-6/n-3 PUFAs ratio: 5) or HFD (HF, 39% of energy from lipids, n-6/n-3 PUFAs ratio: 39) th…

medicine.medical_specialtyOffspringhippocampusEndocrinology Diabetes and MetabolismWeaningHippocampal formationBiologyDiet High-FatmemoryEndocrinologyPregnancyFatty Acids Omega-6Internal medicineLactation[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyFatty Acids Omega-3medicineAnimalsLactationWeaningwater mazeTaqMan low-density arrayRats WistarMaze LearningOmega 3 fatty acidBiological PsychiatrySpatial Memory2. Zero hungerchemistry.chemical_classificationPerinatal ExposureEndocrine and Autonomic Systemsomega-6 fatty acidomega-3 fatty acidfood and beveragesRatsPsychiatry and Mental healthEndocrinologymedicine.anatomical_structureAnimals NewbornchemistryPrenatal Exposure Delayed Effects[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Omega-6 fatty acidFemale[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]lipids (amino acids peptides and proteins)[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyPolyunsaturated fatty acid
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Lipid profiling following intake of the Omega 3 fatty acid DHA identifies the peroxidized metabolites F-4-Neuroprostanes as the best predictors of at…

2014

International audience; The anti-atherogenic effects of omega 3 fatty acids, namely eicosapentaenoic (EPA) and docosahexaenoic acids (DHA) are well recognized but the impact of dietary intake on bioactive lipid mediat or profiles remains unclear. Such a profiling effort may offer novel targets for future studies into the mechanism of action of omega 3 fatty acids. The present study aimed to determine the impact of DHA supplementation on the profiles of polyunsaturated fatty acids (PUFA) oxygenated metabolites and to investigate their contribution to therosclerosis prevention. A special emphasis was given to the non-enzymatic metabolites knowing the high susceptibility of DHA to free radical…

MouseBlood PressureCardiovascularBiochemistryMice0302 clinical medicineTandem Mass SpectrometryAetiologylcsh:Sciencechemistry.chemical_classificationLiquid0303 health sciences[CHIM.ORGA]Chemical Sciences/Organic chemistryFatty Acidsanti-atherogenic;omega 3 fatty acids;epa;dha;bioactive lipid;atherosclerosis;pufas;effects;molecularLipids3. Good healthFatty Acids UnsaturatedMedicinemedicine.medical_specialtyanti-atherogenicKnockoutAortic DiseasesMédecine humaine et pathologieGas Chromatography-Mass SpectrometryLDLDose-Response RelationshipLipid Mediators03 medical and health sciencesomega 3 fatty acids[ CHIM.ORGA ] Chemical Sciences/Organic chemistryacide gras n 3Complementary and Integrative HealtheffectsBiologybioactive lipidDose-Response Relationship DrugPreventionlcsh:RathéroscléroseEPALipid MetabolismPrevention of disease and conditionsmedicine.diseaseEndocrinologychemistryNeuroprostaneslcsh:QHuman health and pathologyBiomarkersand promotion of well-beinglcsh:Medicine030204 cardiovascular system & hematologymedicine.disease_causeOral and gastrointestinalHeart RateReceptorsBlood plasmaCluster Analysis2.1 Biological and endogenous factorsMice KnockoutUnsaturatedChromatographyMultidisciplinaryFatty liverAnimal ModelsDHALiverBiochemistryDocosahexaenoic acidlipids (amino acids peptides and proteins)DrugResearch ArticlePolyunsaturated fatty acidDocosahexaenoic AcidsClinical Research DesignGeneral Science & TechnologyBiologyModel OrganismsInternal medicinemedicineAnimalsNeuroprostanesAnimal Models of Diseasemolecular3.3 Nutrition and chemopreventionOmega 3 fatty acidNutrition030304 developmental biologyAnalysis of Varianceacide docosahexaénoiqueLipid metabolismAtherosclerosis[SDV.AEN] Life Sciences [q-bio]/Food and NutritionReceptors LDLPUFAs[SDV.AEN]Life Sciences [q-bio]/Food and NutritionOxidative stressChromatography Liquid
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Increasing temperature and productivity change biomass, trophic pyramids and community‐level omega‐3 fatty acid content in subarctic lake food webs

2021

Climate change in the Arctic is outpacing the global average and land-use is intensifying due to exploitation of previously inaccessible or unprofitable natural resources. A comprehensive understanding of how the joint effects of changing climate and productivity modify lake food web structure, biomass, trophic pyramid shape and abundance of physiologically essential biomolecules (omega-3 fatty acids) in the biotic community is lacking. We conducted a space-for-time study in 20 subarctic lakes spanning a climatic (+3.2 degrees C and precipitation: +30%) and chemical (dissolved organic carbon: +10 mg/L, total phosphorus: +45 mu g/L and total nitrogen: +1,000 mu g/L) gradient to test how temp…

liuennut orgaaninen hiili0106 biological sciences010504 meteorology & atmospheric sciencesland&#8208maankäyttöDOCtrophic level01 natural sciencesravintoaineetBiomassland‐use3 HUFAECOSYSTEM SIZEGeneral Environmental ScienceTrophic levelPOLYUNSATURATED FATTY-ACIDSGlobal and Planetary ChangeEcologyPrimary producersEcologyvesiekosysteemitforestryTemperatureomega‐3 HUFAfood web structureBIOACCUMULATIONomega&#8208Food webEUTROPHICATION1181 Ecology evolutionary biologyCOREGONUSPOPULATIONStrophic pyramidFood ChainEcological pyramid010603 evolutionary biologyFISHnutrientsFatty Acids Omega-3PhytoplanktonAnimalsEnvironmental ChemistryDominance (ecology)14. Life underwaterOmega 3 fatty acidCHAIN LENGTH0105 earth and related environmental sciencesilmastonmuutokset15. Life on landomegarasvahapotCLIMATELakesMORPHOMETRY13. Climate actionPhytoplanktonEnvironmental scienceWhole foodmetsänhoitouseravintoverkotGlobal Change Biology
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