Search results for " omega-3"

showing 10 items of 87 documents

Moderate intake of n-3 fatty acids is associated with stable erythrocyte resistance to oxidative stress in hypertriglyceridemic subjects.

2001

Background The important triacylglycerol-lowering capacity of n-3 fatty acids is counterbalanced by their inherent sensitivity to oxidation. Inconsistent results about the latter have been reported in hypertriglyceridemic individuals. After incorporation into cell membranes, n-3 fatty acids may alter membrane-related functions. In view of the distinct composition of hypertriglyceridemic membranes and the prooxidant status in this condition, it can be surmised that cell enrichment with the oxidizable n-3 fatty acids will be associated with an increased hemolytic process. Objective We sought to evaluate the effect of fish oil consumption on n-3 fatty acid incorporation into erythrocyte membra…

AdultMalemedicine.medical_specialtyErythrocytesmedicine.medical_treatmentPhospholipidAmidinesMedicine (miscellaneous)BiologyHemolysischemistry.chemical_compoundInternal medicineFatty Acids Omega-3medicineHumansUnsaturated fatty acidChromatography High Pressure Liquidchemistry.chemical_classificationHypertriglyceridemiaNutrition and DieteticsCholesterolVitamin EHypertriglyceridemiaErythrocyte MembraneFatty acidMiddle AgedFish oilmedicine.diseaseHemolysisOxidative StressEndocrinologychemistryFemaleThe American journal of clinical nutrition
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Increased erythrocytes n-3 and n-6 polyunsaturated fatty acids is significantly associated with a lower prevalence of steatosis in patients with type…

2011

Summary Background & aims Non-alcoholic fatty liver disease (NAFLD) is commonly associated with obesity, metabolic syndrome and type 2 diabetes. Although dietary fat contributes substantially to the accumulation of liver fat, the role of individual fatty acids in this accumulation is unclear. Objective In this study, we set out to determine whether liver fat content (LFC), was associated with red blood cell fatty acid (RBC-FA) composition in people with type 2 diabetes. Design, settings, and participants One hundred and sixty-two type 2 diabetic patients were included in this study. LFC was measured using 1H-MR Spectroscopy. RBC-FA composition was measured by gas chromatography. Results One…

Malemedicine.medical_specialtyErythrocytesPalmitic AcidCritical Care and Intensive Care MedicineFatty Acids Monounsaturatedchemistry.chemical_compoundNon-alcoholic Fatty Liver DiseaseFatty Acids Omega-6Internal medicineFatty Acids Omega-3PrevalencemedicineHumansPalmitoleic acidProspective StudiesTriglyceridesAgedchemistry.chemical_classificationNutrition and Dieteticsbusiness.industryFatty liverFatty acidMiddle Agedmedicine.diseaseDietary FatsFatty LiverCross-Sectional StudiesEndocrinologyDiabetes Mellitus Type 2chemistryDocosahexaenoic acidDietary SupplementsSaturated fatty acidFemaleArachidonic acidSteatosisbusinessPolyunsaturated fatty acidClinical Nutrition
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Prevention of 7-Ketocholesterol-Induced Overproduction of Reactive Oxygen Species, Mitochondrial Dysfunction and Cell Death with Major Nutrients (Pol…

2020

The brain, which is a cholesterol-rich organ, can be subject to oxidative stress in a variety of pathophysiological conditions, age-related diseases and some rare pathologies. This can lead to the formation of 7-ketocholesterol (7KC), a toxic derivative of cholesterol mainly produced by auto-oxidation. So, preventing the neuronal toxicity of 7KC is an important issue to avoid brain damage. As there are numerous data in favor of the prevention of neurodegeneration by the Mediterranean diet, this study aimed to evaluate the potential of a series of polyphenols (resveratrol, RSV

eicosapentaenoic acidPharmaceutical ScienceResveratrolDiet Mediterraneanmedicine.disease_causequercetinAnalytical ChemistryMicechemistry.chemical_compound0302 clinical medicineDrug Discoveryoxidative stressKetocholesterolsNeuronschemistry.chemical_classification0303 health sciencesCell Deathfood and beveragesdocosahexaenoic acidEicosapentaenoic acidMitochondriaBiochemistryChemistry (miscellaneous)Docosahexaenoic acid030220 oncology & carcinogenesisMolecular Medicineα-linolenic acidN2a cellsArticlelcsh:QD241-44103 medical and health sciencesresveratrol.lcsh:Organic chemistryCell Line TumorMediterranean dietFatty Acids Omega-3medicineAnimalsPropidium iodidePhysical and Theoretical Chemistry7-ketocholesterol030304 developmental biologyapigeninReactive oxygen speciesOrganic ChemistryNeurotoxicityPolyphenolsmedicine.diseaseOleic acidoleic acidchemistryReactive Oxygen SpeciesOxidative stressMolecules
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Effect of Dietaryn-3Polyunsaturated Fatty Acids on Oxidant/Antioxidant Status in Macrosomic Offspring of Diabetic Rats

2014

The aim of this work was to determine the effect of dietaryn-3PUFA on oxidant/antioxidant status,in vitrovery low and low density lipoprotein (VLDL-LDL), and VLDL-LDL-fatty acid composition in macrosomic pups of diabetic mothers. We hypothesized thatn-3PUFA would improve oxidative stress in macrosomia. Diabetes was induced in female Wistar rats fed with the ISIO diet (control) or with the EPAX diet (enriched inn-3PUFAs), by streptozotocin. The macrosomic pups were killed at birth (day 0) and at adulthood (day 90). Lipid parameters and VLDL-LDL-fatty acid composition were investigated. The oxidant/antioxidant status was determined by measuring plasma oxygen radical absorbance capacity (ORAC)…

Malemedicine.medical_specialtyAntioxidantArticle SubjectOxygen radical absorbance capacitymedicine.medical_treatmentlcsh:Medicinemedicine.disease_causedigestive systemAntioxidantsGeneral Biochemistry Genetics and Molecular BiologyDiabetes Mellitus ExperimentalFetal Macrosomiachemistry.chemical_compoundInternal medicineDiabetes mellitusFatty Acids Omega-3medicineAnimalsRats Wistarchemistry.chemical_classificationGeneral Immunology and Microbiologylcsh:Rnutritional and metabolic diseasesLipid metabolismGeneral MedicineOxidantsStreptozotocinmedicine.diseaseDietary FatsRatsOxidative StressEndocrinologychemistryLow-density lipoproteinFemalelipids (amino acids peptides and proteins)Oxidation-ReductionOxidative stressResearch Articlemedicine.drugPolyunsaturated fatty acidBioMed Research International
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N-3 fatty acids modulate antioxidant status in diabetic rats and their macrosomic offspring.

2006

We investigated the role of dietary n-3 polyunsaturated fatty acids (n-3 PUFA) in the modulation of total antioxidant status in streptozotocin (STZ)-induced diabetic rats and their macrosomic offspring. Female wistar rats, fed on control diet or n-3 PUFA diet, were rendered diabetic by administration of five mild doses of STZ on day 5 and were killed on days 12 and 21 of gestation. The macrosomic (MAC) pups were killed at the age of 60 and 90 days. Lipid peroxidation was measured as the concentrations of plasma thiobarbituric acid reactive substances (TBARS), and the total antioxidant status was determined by measuring (i) plasma oxygen radical absorbance capacity (ORAC), (ii) plasma vitami…

Vitaminmedicine.medical_specialtyAntioxidantErythrocytesOxygen radical absorbance capacityEndocrinology Diabetes and Metabolismmedicine.medical_treatmentPregnancy in DiabeticsMedicine (miscellaneous)Ascorbic AcidThiobarbituric Acid Reactive SubstancesAntioxidantsDiabetes Mellitus ExperimentalFetal MacrosomiaLipid peroxidationchemistry.chemical_compoundPregnancyInternal medicineFatty Acids Omega-3TBARSmedicineDiabetes MellitusAnimalsVitamin ERats WistarVitamin Achemistry.chemical_classificationGlutathione PeroxidaseNutrition and DieteticsVitamin CTriglycerideChemistrySuperoxide DismutaseFatty AcidsFree Radical ScavengersLipidsRatsEndocrinologyAnimals NewbornDiabetes Mellitus Type 2FemaleLipid PeroxidationBiomarkersPolyunsaturated fatty acidInternational journal of obesity (2005)
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Omega-3 PUFAs and gut microbiota: A preventive approach for colorectal cancer

2021

The influence of diet on the composition of the intestinal microbiota and related pathologies has been known for some time. Some classes of nutrients, such as fatty acids belonging to the omega 3 series, have particular effects on the bacteria that make up the intestinal microbiota. ω-3 PUFAs affect the gut microbiota in three different ways: by modulating the type and abundance of intestinal bacteria, by regulate SCFAs levels, and by alter the levels of proinflammatory mediators. Through these modalities, ω-3 PUFAs could be useful for the prevention of intestinal diseases such as Colorectal Cancer (CRC). The ability of ω-3 PUFAs to modulate the intestinal inflammatory response, to preserve…

chemistry.chemical_classificationω-3 PUFAsgut microbiotabiologyQH301-705.5Colorectal cancerbusiness.industryBiochemistry (medical)colorectal cancerPlant ScienceGut florabiology.organism_classificationmedicine.diseaseBioinformaticsdigestive systemGeneral Biochemistry Genetics and Molecular BiologyMucosal Associated Lymphatic Tissue (MALT)preventionchemistrymedicineBiology (General)businesscolorectale cancer prevention gut microbiota mucosal associated lymphatic tissue omega-3 PUFAsPolyunsaturated fatty acidJournal of Biological Research - Bollettino della Società Italiana di Biologia Sperimentale
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N-3 polyunsaturated fatty acids: An innovative strategy against obesity and related metabolic disorders, intestinal alteration and gut microbiota dys…

2019

Obesity is now widely recognized to be associated with low-grade systemic inflammation. It has been shown that high-fat feeding modulates gut microbiota which strongly increased intestinal permeability leading to lipopolysaccharide absorption causing metabolic endotoxemia that triggers inflammation and metabolic disorders. N-3 polyunsaturated fatty acids (PUFAs) have been shown associated with anti-obesity properties, but results still remain heterogeneous and very few studies underlined the metabolic pathways involved. Thus, the use of Fat-1 transgenic mice allows to better understanding whether endogenous n-3 PUFAs enrichment contributes to obesity and associated metabolic disorders preve…

0301 basic medicine[SDV]Life Sciences [q-bio]PopulationGut floradigestive systemBiochemistry03 medical and health sciencesMiceMetabolic DiseasesFatty Acids Omega-3medicineAnimalsHumansObesityeducation2. Zero hungerchemistry.chemical_classificationeducation.field_of_studyIntestinal permeability030102 biochemistry & molecular biologybiologyAkkermansiaGeneral Medicinebiology.organism_classificationmedicine.disease3. Good healthGastrointestinal MicrobiomeMetabolic pathway030104 developmental biologychemistryImmunologyDysbiosisMetabolic syndromeDysbiosisPolyunsaturated fatty acid
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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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A review of recent evidence in human studies of n-3 and n-6 PUFA intake on cardiovascular disease, cancer, and depressive disorders: does the ratio r…

2015

AbstractPolyunsaturated fatty acids (PUFAs) have been considered of great interest for human health due to their potential anti-inflammatory action that may protect from a number of chronic-degenerative diseases with an inflammatory pathogenesis. This review aimed to report the most updated evidence of both n-3 and n-6 PUFAs effect on cardiovascular disease, cancer, and depression in humans. Attention has been also paid to those studies exploring the effects of the ratio intake. Results from pooled analyses of human studies reported a general positive effect of n-3 PUFAs intake on all outcomes considered. In contrast, the role of n-6 PUFAs on human health needs to be better assessed in orde…

medicine.medical_specialtyN 6 pufachronic diseases inflammation polyunsaturated fatty acidsDiseaseBiologyBioinformaticsHuman healthInternal medicineFatty Acids Omega-6NeoplasmsFatty Acids Omega-3medicineHumansSettore MED/49 - Scienze Tecniche Dietetiche ApplicateDepression (differential diagnoses)chemistry.chemical_classificationDepressive DisorderHuman studiesfood and beveragesCancermedicine.diseaseEndocrinologychemistryCardiovascular Diseaseslipids (amino acids peptides and proteins)Food AnalysisFood SciencePolyunsaturated fatty acidInternational journal of food sciences and nutrition
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Crypthecodinium cohnii Growth and Omega Fatty Acid Production in Mediums Supplemented with Extract from Recycled Biomass

2022

Crypthecodinium cohnii is a marine heterotrophic dinoflagellate that can accumulate high amounts of omega-3 polyunsaturated fatty acids (PUFAs), and thus has the potential to replace conventional PUFAs production with eco-friendlier technology. So far, C. cohnii cultivation has been mainly carried out with the use of yeast extract (YE) as a nitrogen source. In the present study, alternative carbon and nitrogen sources were studied: the extraction ethanol (EE), remaining after lipid extraction, as a carbon source, and dinoflagellate extract (DE) from recycled algae biomass C. cohnii as a source of carbon, nitrogen, and vitamins. In mediums with glucose and DE, the highest specific biomass gr…

QH301-705.5omega-3 fatty acidPharmaceutical Sciencefood and beveragesCrypthecodinium cohnii<i>Crypthecodinium cohnii</i>Article<i>Crypthecodinium cohnii</i>; omega-3 fatty acid; biomass recycling; dinoflagellate extract; FTIR spectroscopybiomass recyclingFTIR spectroscopyDrug Discoverydinoflagellate extractBiology (General)Pharmacology Toxicology and Pharmaceutics (miscellaneous)Marine Drugs
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