Search results for "MESH : Diet"

showing 10 items of 13 documents

Obesity interferes with the orosensory detection of long-chain fatty acids in humans

2014

Background: The association between the orosensory detection of lipids, preference for fatty foods, and body mass index (BMI; in kg/m 2 ) is controversial in humans. Objective: We explored the oral lipid-sensing system and the orosensory-induced autonomic reflex system in lean and obese subjects. Design: Lean (BMI: 19 to ,25; n = 30) and obese (BMI .30; n = 29) age-matched men were enrolled. Their oral threshold sensitivity to linoleic acid (LA) was determined by using a 3-alternative forced-choice ascending procedure, and their eating habits were established by the analysis of 4 consecutive 24-h food-consumption diaries. The effect of brief oral lipid stimulations on plasma triglyceride [(…

Blood GlucoseMaleobesityChemical PhenomenaMESH : Insulin[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionCholesterol VLDLMedicine (miscellaneous)MESH: Food HabitsStimulationMESH: Energy IntakeMESH : TasteMESH : FastingBody Mass Indexchemistry.chemical_compoundMESH: Cholesterol VLDLMESH: Diet RecordsInsulinMESH: ObesityMESH : Physicochemical PhenomenaCompletely randomized designMESH : Food HabitsCross-Over StudiesMESH: Middle AgedMESH : Food PreferencesNutrition and DieteticsFastingMiddle AgedDiet RecordsMESH : TriglyceridesSensory ThresholdsTasteMESH : ObesityMESH: Triglyceridesmedicine.medical_specialtyMESH : MaleLinoleic acidMESH: FastingMESH: InsulinMESH: Cross-Over StudiesMESH: Body Mass IndexLinoleic AcidMESH : Diet RecordsFood PreferencesBMIMESH : Linoleic AcidInternal medicineAutonomic reflexmedicineHumansMESH : Middle AgedhumanMESH: Food PreferencesTriglyceridesMESH : Cholesterol VLDLMESH: Linoleic AcidMESH: HumansCholesterolbusiness.industryMESH : HumansMESH : Energy IntakeFeeding BehaviorMESH : Blood GlucoseMESH : Cross-Over Studiesmedicine.diseaseCrossover studyObesityMESH: Malefat taste[SDV.AEN] Life Sciences [q-bio]/Food and NutritionMESH: Physicochemical PhenomenaMESH : Body Mass IndexEndocrinologychemistryMESH: Blood GlucoseMESH: Tastefood preferenceMESH: Sensory ThresholdsEnergy Intakebusiness[SDV.AEN]Life Sciences [q-bio]/Food and NutritionBody mass indexMESH : Sensory ThresholdsThe American Journal of Clinical Nutrition
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Obesity alters the gustatory perception of lipids in the mouse: plausible involvement of lingual CD36. : Obesity decreases the fat preference

2013

International audience; A relationship between orosensory detection of dietary lipids, regulation of fat intake, and body mass index was recently suggested. However, involved mechanisms are poorly understood. Moreover, whether obesity can directly modulate preference for fatty foods remains unknown. To address this question, exploration of the oral lipid sensing system was undertaken in diet-induced obese (DIO) mice. By using a combination of biochemical, physiological, and behavioral approaches, we found that i) the attraction for lipids is decreased in obese mice, ii) this behavioral change has an orosensory origin, iii) it is reversed in calorie-restricted DIO mice, revealing an inverse …

CD36 AntigensCD36[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionAdipose tissueMESH : Behavior AnimalBiochemistryCalcium in biologyMice0302 clinical medicineEndocrinologyMESH : Calcium SignalingMESH: Behavior AnimalMESH: ObesityMESH: AnimalsLingual papillaResearch Articles2. Zero hunger0303 health sciencesMESH : Food PreferencesBehavior AnimalMESH : TongueMESH : Diet High-FatMESH: TongueTaste Perceptiontaste sensitivityMESH : Antigens CD36calcium imagingAdipose TissueHealthMESH: Dietary FatsMESH : ObesityFat tasteMESH: Adipose Tissuemedicine.medical_specialtyFood behavior030209 endocrinology & metabolismMESH : Mice Inbred C57BLQD415-436BiologyDiet High-FatMESH: Calcium SignalingMESH : Adipose TissueFood Preferences03 medical and health sciencesCalcium imagingTongueDownregulation and upregulationMESH: Mice Inbred C57BLInternal medicineMESH : MicemedicineAnimalsCalcium SignalingObesityFatty acidsMESH: Food PreferencesMESH: Mice030304 developmental biologyNutritionlong-chain fatty acidsMESH: Antigens CD36MESH : Taste PerceptionCell Biologymedicine.diseaseDietary FatsObesityMice Inbred C57BLMESH: Diet High-FatEndocrinologyMESH: Taste Perceptionbiology.proteinMESH : AnimalsBody mass index[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Dietary Fats
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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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Monotonous consumption of fibre-enriched bread at breakfast increases satiety and influences subsequent food intake

2012

Research report; International audience; This study aimed to observe the influence of the monotonous consumption of two types of fibre-enriched bread at breakfast on hedonic liking for the bread, subsequent hunger and energy intake. Two groups of unrestrained normal weight participants were given either white sandwich bread (WS) or multigrain sandwich bread (MG) at breakfast (the sensory properties of the WS were more similar to the usual bread eaten by the participants than those of the MG). In each group, two 15-day cross-over conditions were set up. During the experimental condition the usual breakfast of each participant was replaced by an isocaloric portion of plain bread (WS or MG). D…

Dietary FiberMaleFood intakeHunger030309 nutrition & dietetics[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH: Energy IntakeMESH: EatingEating0302 clinical medicineWeight lossMESH: Food FortifiedMESH : FemaleFood scienceGeneral PsychologyMathematics2. Zero hunger0303 health sciencesMESH : Food PreferencesCross-Over StudiesNutrition and Dieteticsdigestive oral and skin physiologyfood and beveragesBreadMESH : AdultMESH: HungerFood FortifiedFemaleMESH : Food Fortifiedmedicine.symptomAdultMESH : EatingMESH : Male030209 endocrinology & metabolismSatiationMESH: Cross-Over StudiesMESH: BreadFood Preferences03 medical and health sciencesMESH : HungerDecreased energymedicineHumansMESH: Food PreferencesConsumption (economics)MESH: HumansMESH: SatiationMESH : HumansDietary fibreMESH : Energy IntakeMESH: AdultMESH : Cross-Over StudiesMESH: MaleNormal weightMESH: Dietary FiberMESH : Dietary FiberEnergy IntakeMESH : BreadMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : SatiationAppetite
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Influence of substrate oxidation on the reward system, no role of dietary fibre.

2011

International audience; It has been suggested that a high intake of dietary fibre helps regulate energy intake and satiety. The present study aimed to examine whether dietary fibre influenced the liking and wanting components of the food reward system, the metabolic state or subsequent intake. Five sessions involving 32 normal-weight subjects (16 men and 16 women, 30.6 ± 7.6 year) were held. The sessions differed in the composition of the bread eaten during breakfasts (dietary fibre content varied from 2.4 to 12.8 g/100 g). Several factors such as the palatability, weight, volume, energy content and macronutrient composition of the breakfasts were adjusted. Energy expenditure, the respirato…

Dietary FiberMaleMESH: Oxidation-ReductionMESH: Dietary Carbohydrates030309 nutrition & dietetics[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionsatietyAppetiteMESH: Food HabitsMESH: Energy IntakeChoice BehaviorMESH: EatingEatingIngestionMESH : FemaleFood sciencePalatabilityMESH : Body WeightGeneral PsychologyMESH : Food Habitsmedia_commonMorning2. Zero hunger0303 health sciencesMESH : Food PreferencesNutrition and Dieteticsdietary fibre05 social sciencesdigestive oral and skin physiologyMESH: Energy MetabolismMESH : Feeding BehaviorBreadMESH : AdultMESH : Dietary Carbohydratesreward systemMESH: Young AdultMESH: Feeding BehaviorFemalePsychologyOxidation-Reductionfood preferencesMESH : AppetiteAdultMESH : EatingMESH : Malemedia_common.quotation_subjectMESH : Young AdultSatiationMESH: Choice BehaviorMESH: BreadYoung Adult03 medical and health sciencesReward systemsensation de faimMESH : Choice BehaviorDietary CarbohydratesHumans0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyMESH: Food PreferencesMESH : Oxidation-ReductionMESH: HumansMESH: SatiationMESH : HumansBody WeightDietary fibreMESH : Energy IntakeAppetiteMESH: AdultFeeding BehaviorMESH: MaleMESH: Body WeightMESH : Energy MetabolismRespiratory quotientMESH: Dietary FiberEnergy densityMESH: AppetiteMESH : Dietary FiberEnergy IntakeEnergy MetabolismMESH : BreadmetabolismMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Satiation
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Immune Cell Toll-like Receptor 4 Mediates the Development of Obesity- and Endotoxemia-Associated Adipose Tissue Fibrosis

2014

International audience; Adipose tissue fibrosis development blocks adipocyte hypertrophy and favors ectopic lipid accumulation. Here, we show that adipose tissue fibrosis is associated with obesity and insulin resistance in humans and mice. Kinetic studies in C3H mice fed a high-fat diet show activation of macrophages and progression of fibrosis along with adipocyte metabolic dysfunction and death. Adipose tissue fibrosis is attenuated by macrophage depletion. Impairment of Toll-like receptor 4 signaling protects mice from obesity-induced fibrosis. The presence of a functional Toll-like receptor 4 on adipose tissue hematopoietic cells is necessary for the initiation of adipose tissue fibros…

LipopolysaccharidesMESH: Signal TransductionMESH: InflammationMESH : Toll-Like Receptor 4Adipose tissueMESH : AdipocytesMESH : LipopolysaccharidesMicechemistry.chemical_compoundFibrosisAdipocyteAdipocytes[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyMESH: ObesityMESH: Animalslcsh:QH301-705.5Mice Inbred C3HToll-like receptorMESH : Diet High-FatMESH: Toll-Like Receptor 43. Good healthMESH: Insulin ResistanceAdipose TissueMESH: FibrosisMESH : Fibrosis[SDV.IMM]Life Sciences [q-bio]/ImmunologyMESH : ObesityMESH : Insulin ResistanceMESH: Adipose TissueSignal Transductionmedicine.medical_specialty[SDV.IMM] Life Sciences [q-bio]/ImmunologyAdipose tissue macrophagesBiologyDiet High-FatMESH : Adipose TissueGeneral Biochemistry Genetics and Molecular BiologyImmune systemMESH : Mice Inbred C3HInternal medicineMESH : MicemedicineAnimalsHumansObesityMESH: Mice Inbred C3HMESH: MiceMESH: AdipocytesInflammationMESH : Signal TransductionMESH : InflammationMESH: HumansMESH : EndotoxemiaMESH : Humans3T3-L1medicine.diseaseFibrosisMESH : Disease Models AnimalEndotoxemiaToll-Like Receptor 4Disease Models AnimalMESH: Diet High-FatEndocrinologylcsh:Biology (General)chemistryMESH: EndotoxemiaMESH : AnimalsInsulin ResistanceMESH: Disease Models AnimalMESH: LipopolysaccharidesAdipocyte hypertrophyCell Reports
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Apelin treatment increases complete Fatty Acid oxidation, mitochondrial oxidative capacity, and biogenesis in muscle of insulin-resistant mice.

2012

Both acute and chronic apelin treatment have been shown to improve insulin sensitivity in mice. However, the effects of apelin on fatty acid oxidation (FAO) during obesity-related insulin resistance have not yet been addressed. Thus, the aim of the current study was to determine the impact of chronic treatment on lipid use, especially in skeletal muscles. High-fat diet (HFD)-induced obese and insulin-resistant mice treated by an apelin injection (0.1 μmol/kg/day i.p.) during 4 weeks had decreased fat mass, glycemia, and plasma levels of triglycerides and were protected from hyperinsulinemia compared with HFD PBS-treated mice. Indirect calorimetry experiments showed that apelin-treated mice…

MESH: Oxidation-Reduction[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEndocrinology Diabetes and MetabolismGlucose uptakeAMP-Activated Protein KinasesInbred C57BLMice0302 clinical medicineAMP-activated protein kinaseMESH : Lipid MetabolismHyperinsulinemiaMESH: AnimalsMESH: AMP-Activated Protein KinasesMESH : Muscle SkeletalMESH : Fatty AcidsBeta oxidationMESH: Lipid Metabolism0303 health sciencesMESH: Muscle SkeletalbiologyMESH : Diet High-FatFatty AcidsMESH: Energy MetabolismMESH : AMP-Activated Protein KinasesMESH: Mitochondria MuscleSkeletal3. Good healthApelinMitochondriaMESH: Fatty AcidsMESH : Cyclic AMP-Dependent Protein KinasesMESH: Insulin ResistanceAlimentation et NutritionApelinIntercellular Signaling Peptides and ProteinsMuscleMESH : Insulin ResistanceOxidation-Reductionmedicine.medical_specialtyMESH : Mitochondria Muscle030209 endocrinology & metabolismMESH : Mice Inbred C57BLMESH: Cyclic AMP-Dependent Protein KinasesDiet High-Fat03 medical and health sciencesInsulin resistanceAdipokinesMESH: Mice Inbred C57BLInternal medicineMESH : MiceInternal MedicinemedicineFood and NutritionAnimalsMuscle SkeletalMESH: Intercellular Signaling Peptides and ProteinsMESH: MiceMESH : Intercellular Signaling Peptides and Proteins030304 developmental biologyMESH : Oxidation-ReductionAMPKmedicine.diseaseLipid MetabolismCyclic AMP-Dependent Protein KinasesMitochondria MuscleDietMice Inbred C57BLMESH : Energy Metabolism[SDV.AEN] Life Sciences [q-bio]/Food and NutritionAMP-Activated Protein Kinases;Animals;Cyclic AMP-Dependent Protein Kinases;Diet;High-Fat;Energy Metabolism;Fatty Acids;Insulin Resistance;Intercellular Signaling Peptides and Proteins;Lipid Metabolism;Mice;Inbred C57BL;Mitochondria;Muscle;Skeletal;Oxidation-ReductionHigh-FatMESH: Diet High-FatMetabolismEndocrinologyMitochondrial biogenesisbiology.proteinMESH : AnimalsInsulin ResistanceEnergy Metabolism[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Carotenoid trade-off between parasitic resistance and sexual display: an experimental study in the blackbird (Turdus merula).

2008

Many parasites depress the expression of the carotenoid-based colour displays of their hosts, and it has been hypothesized that animals face a trade-off in carotenoid allocation between immune functions and ‘degree of ornamentation’. While numerous correlative studies suggest that parasite infection decreases the intensity of carotenoid-based colour displays, the existence of this trade-off has never been demonstrated experimentally in a host–parasite model. In this study, we used the blackbird ( Turdus merula ) and Isospora (an intestinal parasite) to assess whether this trade-off does indeed exist. Blackbirds were supplemented with carotenoids while simultaneously being exposed to parasi…

MaleMESH : Host-Parasite InteractionsMESH : Analysis of VarianceTrade-offmedicine.disease_causeSongbirds[ SDV.BBM.BC ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM][ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisParasite hostingbill colourCarotenoidGeneral Environmental Sciencetrade-offchemistry.chemical_classificationPigmentationMESH : PigmentationBeakcarotenoidsfood and beveragesMESH : IsosporaGeneral MedicineIsosporaBeakGeneral Agricultural and Biological SciencesResearch Article[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMESH : MaleZoologyIntestinal parasiteBiologyParasitic infectionGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite InteractionsCoccidiaBotanymedicineAnimalsBody Weights and MeasuresMESH : Dietary SupplementsMESH : SongbirdsMESH : CarotenoidsAnalysis of VarianceIsosporaGeneral Immunology and Microbiologyorganic chemicalscoccidiaMESH : Body Weights and Measuresbiology.organism_classificationMESH : Beakchemistryexperimental infectionDietary SupplementsMESH : Animals
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Grape seed and skin extract reduces pancreas lipotoxicity, oxidative stress and inflammation in high fat diet fed rats.

2016

IF 2.326; International audience; Obesity is related to an elevated risk of diabetes and the mechanisms whereby fat adversely affects the pancreas are poorly understood. We studied the effect of a high fat diet (HFD) on pancreas steatosis, oxidative stress and inflammation as well as the putative protection afforded by grape seed and skin extract (GSSE). HFD induced body weight gain, without affecting insulinemia, nor glycemia and dropped adiponectemia. HFD also provoked the ectopic deposition of cholesterol and triglyceride, and an oxidative stress characterized by increased lipoperoxidation and carbonylation, inhibition of antioxidant enzyme activities such as CAT, GPx and SOD, depletion …

MaleMESH : Oxidative Stress0301 basic medicineMESH: InflammationAntioxidantmedicine.medical_treatmentMESH: Grape Seed Extractmedicine.disease_causeAntioxidantschemistry.chemical_compound0302 clinical medicineMESH: ObesityVitisMESH: AnimalsMESH : Pancreas2. Zero hungerMESH: Oxidative StressMESH : Grape Seed ExtractMESH : RatsMESH : Diet High-Fatfood and beveragesGeneral MedicineMESH: Pancreas3. Good healthLipotoxicity030220 oncology & carcinogenesisSeedsMESH : AntioxidantsMESH : Obesitymedicine.symptommedicine.medical_specialtyGrape seed and skin extractMESH: RatsMESH : MaleInflammationBiologyDiet High-FatMESH : Rats WistarMESH: VitisMESH : Vitis03 medical and health sciencesDiabetes mellitusInternal medicinemedicineAnimalsObesityRats WistarPancreasPharmacologyInflammationMESH : InflammationGrape Seed ExtractTriglycerideCholesterolMESH: Antioxidants[ SDV.SP.PHARMA ] Life Sciences [q-bio]/Pharmaceutical sciences/PharmacologyMESH: Rats Wistarmedicine.diseaseMESH : SeedsMESH: MaleRatsMESH: Diet High-Fat030104 developmental biologyEndocrinologychemistryMESH: SeedsOxidative stress[SDV.SP.PHARMA]Life Sciences [q-bio]/Pharmaceutical sciences/PharmacologyMESH : AnimalsSteatosisOxidative stress
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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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