Search results for "alpha-Linolenic acid"

showing 10 items of 15 documents

CLA-Enriched Diet Containing t10,c12-CLA Alters Bile Acid Homeostasis and Increases the Risk of Cholelithiasis in Mice

2011

International audience; Mice fed a mixture of CLA containing t10,c12-CLA lose fat mass and develop hyperinsulinemia and hepatic steatosis due to an accumulation of TG and cholesterol. Because cholesterol is the precursor in bile acid (BA) synthesis, we investigated whether t10,c12-CLA alters BA metabolism. In Expt. 1, female C57Bl/6J mice were fed a standard diet for 28 d supplemented with a CLA mixture (1 g/100 g) or not (controls). In Expt. 2, the feeding period was reduced to 4, 6, and 10 d. In Expt. 3, mice were fed a diet supplemented with linoleic acid, c9,t11-CLA, or t10,c12-CLA (0.4 g/100 g) for 28 d. In Expt. 1, the BA pool size was greater in CLA-fed mice than in controls and the …

Enterohepatic circulationmedicine.medical_specialtymedicine.drug_classLinoleic acid[SDV]Life Sciences [q-bio]Blotting WesternMedicine (miscellaneous)030209 endocrinology & metabolismCholesterol 7 alpha-hydroxylasePolymerase Chain ReactionBile Acids and SaltsMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineRisk FactorsCholelithiasisInternal medicineHyperinsulinémiemedicineHyperinsulinemiaAnimalsHomeostasisEnterohepatic circulation030304 developmental biology0303 health sciencesNutrition and DieteticsBile acidintegumentary systemCholesterolalpha-Linolenic Acidfood and beveragesmedicine.diseaseDietary FatsBile Salt Export PumpMice Inbred C57BLCholesterol 7-alpha hydroxylaseCholesterolEndocrinologyMetabolismLiverchemistryNutrient physiologyFemalelipids (amino acids peptides and proteins)Steatosis[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Comparison of Diatoms and Dinoflagellates from Different Habitats as Sources of PUFAs

2019

Recent studies have clearly shown the importance of omega-3 (&omega

0106 biological sciencesALPHA-LINOLENIC ACIDrasvahapotPharmaceutical ScienceFresh Water01 natural sciencesFATTY-ACID-COMPOSITIONchemistry.chemical_compoundDrug DiscoveryFood sciencefreshwaterlcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)chemistry.chemical_classification0303 health sciencespanssarilevätFRESH-WATERalpha-Linolenic acidmicroalgaeFatty AcidsFish oilEicosapentaenoic acid6. Clean waterDHADocosahexaenoic acidEUTROPHICATIONDinoflagellidaGROWTHdinoflagellatesbrackishPolyunsaturated fatty acidpolyunsaturated fatty acidsTOXINBiologyPROFILEArticlediatoms03 medical and health sciencesFish OilsFISHFatty Acids Omega-3PhytoplanktonpiilevätQUALITYSaline WatersEcosystem030304 developmental biologyBrackish water010604 marine biology & hydrobiologyfungita1183ta1182Fatty acidmarineEPAmikrolevätluonnonaineetomegarasvahapotmerivesilcsh:Biology (General)chemistry416 Food Science13. Climate actionmakea vesiMarine Drugs
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Pathway of alpha-linolenic acid through the mitochondrial outer membrane in the rat liver and influence on the rate of oxidation. Comparison with lin…

1989

The movement of alpha-linolenic acid (C18:3, n-3) through the mitochondrial outer membrane to oxidation sites was studied in rat liver and compared with the movement of linoleic acid (C18:2, n-6) and oleic acid (C18:1, n-9). All differ in the degree of unsaturation, but have the same chain length and the same position of the first double bond when counted from the carboxyl end. The following results were obtained. (1) The overall beta-oxidation in total mitochondria was in the order C18:3, n-3 greater than C18:2, n-6 greater than C18:1, n-9, independent of the amount of albumin in the medium. (2) The rate of formation of acylcarnitine from acyl-CoA was higher with oleoyl-CoA than with linol…

MaleLinolenic AcidsLinoleic acidPotassiumchemistry.chemical_elementMitochondria LiverOleic AcidsMitochondrionIn Vitro TechniquesBiochemistryLinoleic Acidchemistry.chemical_compoundCarnitinemedicineAnimalsCarnitineMolecular BiologyDegree of unsaturationCarnitine O-PalmitoyltransferaseChemistryalpha-Linolenic acidBiological TransportRats Inbred StrainsCell BiologyIntracellular MembranesPeroxisomeRatsOleic acidBiochemistryLinoleic Acidslipids (amino acids peptides and proteins)Acyl Coenzyme AOxidation-Reductionmedicine.drugOleic AcidResearch ArticleThe Biochemical journal
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Incorporation and metabolism of dietary trans isomers of linolenic acid alter the fatty acid profile of rat tissues

2000

To study the influence on lipid metabolism and platelet aggregation of the fatty acid isomerization that occurs during heat treatment, weanling rats were fed for 8 wk a diet enriched with 5% isomerized (experimental group) or normal (control group) canola oil. Geometrical isomers of alpha-linolenic acid representing 0.2 g/100 g of the experimental diet were incorporated into liver, platelets, aorta and heart, at the expense of their cis homologue and of 18:2(n-6). The major isomer, 9c,12c,15t-18:3, was also metabolized to 5c,8c,11c,14c,17t-20:5 and to an unknown compound, found in liver, platelets and aorta, which has been identified tentatively as 7c, 10c,13c,16c,19t-22:5. The greater 20:4…

Blood PlateletsMalePlatelet Aggregation030309 nutrition & dieteticsLinolenic acidMedicine (miscellaneous)WeanlingWeaningBiologyFatty Acids Monounsaturated03 medical and health sciencesDietary Fats UnsaturatedIsomerismAnimalsPlateletRats WistarComputingMilieux_MISCELLANEOUS030304 developmental biologychemistry.chemical_classification0303 health sciencesNutrition and DieteticsMyocardiumBody WeightFatty Acidsalpha-Linolenic AcidFatty acidLipid metabolismMetabolismRats[SDV.AEN] Life Sciences [q-bio]/Food and NutritionLiverBiochemistrychemistryRATRapeseed OilCollagenIsomerization[SDV.AEN]Life Sciences [q-bio]/Food and NutritionCis–trans isomerism
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Effects of the flavonol quercetin and α-linolenic acid on n-3 PUFA status in metabolically healthy men and women: a randomised, double-blinded, place…

2017

AbstractIncreased dietary intake and tissue status of the long-chainn-3 PUFA, EPA and DHA, is associated with cardiovascular benefits. Epidemiological and animal studies suggest that concomitant nutritive intake of flavonoids may increase the conversion ofα-linolenic acid (ALA) to longer-chainn-3 fatty acids EPA and DHA. We investigated the effects of increased ALA intake on fatty acid composition of serum phospholipids and erythrocytes in metabolically healthy men and women and whether fatty acid profiles and ALA conversion were affected by regular quercetin intake or sex. Subjects (n74) were randomised to receive at least 3·3 g/d ALA with either 190 mg/d quercetin (ALA+quercetin) or place…

0301 basic medicineAdultMalemedicine.medical_specialtyErythrocytesDocosahexaenoic AcidsMedicine (miscellaneous)PlaceboPlacebos03 medical and health scienceschemistry.chemical_compoundDouble-Blind MethodInternal medicineFatty Acids Omega-3MedicineHumansN 3 pufaPhospholipidsα-linolenic acidchemistry.chemical_classification030109 nutrition & dieteticsNutrition and DieteticsCross-Over Studiesbusiness.industryFatty AcidsFatty acidalpha-Linolenic AcidCrossover studyDietEndocrinologychemistryBiochemistryEicosapentaenoic AcidDietary SupplementsBody Compositionlipids (amino acids peptides and proteins)FemaleQuercetinAnimal studiesbusinessQuercetinPolyunsaturated fatty acidThe British journal of nutrition
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Nutrient intakes of children aged 1-2 years as a function of milk consumption, cows' milk or growing-up milk.

2012

AbstractObjectiveTo evaluate the nutritional adequacy of diets in early childhood as a function of milk intake, cows’ milk (CM) or growing-up milk (GUM).DesignFrom a cross-sectional food consumption survey, two groups of children aged 1–2 years were defined: Group CM fed exclusively on CM ≥ 250 ml/d and Group GUM fed on GUM ≥ 250 ml/d. Proportions of children at risk of nutrient excess or insufficiency were estimated relative to the French Recommended Daily Allowances, Estimated Average Requirements or Adequate Intakes.SettingParents participating in the survey were recruited from all regions of France by a polling organization. Distribution was adjusted to that of the French population.Sub…

VitaminAdultParentsIronPopulationMedicine (miscellaneous)Ascorbic AcidReference Daily IntakeDiet SurveysNutrition PolicyLinoleic Acidchemistry.chemical_compoundAnimal scienceRisk FactorsVitamin D and neurologyMedicineAnimalsHumansNutrition and HealthVitamin Deducationeducation.field_of_studyNutrition and DieteticsVitamin Calpha-Linolenic acidbusiness.industryPublic Health Environmental and Occupational HealthNutritional RequirementsInfantalpha-Linolenic AcidVitaminsAscorbic acidDietary FatsDietTrace ElementsCross-Sectional StudiesMilkNutrition AssessmentchemistryDietary Reference IntakeChild PreschoolFood FortifiedCattleDietary ProteinsFrancebusinessDeficiency DiseasesEnergy IntakeIron DietaryPublic health nutrition
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Inhibition of fatty acid delta 6- and delta 5-desaturation by cyclopropene fatty acids in rat liver microsomes.

1993

delta 6-Desaturation of linoleic acid and delta 5-desaturation of dihomo-gamma-linolenic acid were measured in liver microsomes from rats fed fresh Baobab seed oil containing cyclopropene fatty acids (malvalic acid and sterculic acid) or heated Baobab seed oil practically devoid of these fatty acids or control oil. The presence of cyclopropene fatty acids in the fresh Baobab oil diet highly depressed both desaturations, but delta 6- more than delta 5-desaturation. The decreased capacity of microsomes to desaturate was reflected in the lower arachidonic acid content in microsomal phospholipids from rats fed this oil. However it was also lower in rats fed heated oil although in vitro delta 6-…

CyclopropanesMaleLinoleic acidMalvalic acidBiophysicsPhospholipidArachidonic AcidsCyclopropeneBiochemistryFatty Acids Monounsaturatedchemistry.chemical_compoundEndocrinologyAnimalsPlant OilsRats Wistarchemistry.chemical_classificationalpha-Linolenic acidBody WeightFatty AcidsFatty acidalpha-Linolenic AcidOrgan SizeDietary FatsRatschemistryBiochemistryMicrosomeMicrosomes LiverArachidonic acidBiochimica et biophysica acta
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Fatty Acids of Microbial Origin in the Perirenal Fat of Rats (Rattus norvegicus domestica) and Guinea Pigs (Cavia porcellus) Fed Various Diets.

2020

Guinea pigs are assumed to practice caecotrophy to a higher degree than rats. Studies from leporids suggest that through the practice of caecotrophy, hindgut fermenting species could build up microbial fatty acids (FA) in body tissues. We hypothesized that microbial FA would be detectable in the body tissue of guinea pigs and rats, and this to a higher degree in guinea pigs. Twenty-four rats and guinea pigs were fed with four different pelleted diets (lucerne-, meat-, meat-bone-, insect-based) in groups of six animals for 8 weeks. Perirenal adipose tissue differed in FA composition between the species in spite of the common diets. FA typically associated with microbial activity (saturated F…

0301 basic medicineFA10253 Department of Small Animals1303 BiochemistryRodentGuinea PigsCaviaAdipose tissuePerirenal fatBiochemistryGuinea pig1307 Cell Biology03 medical and health scienceschemistry.chemical_compoundAnimal scienceSpecies SpecificityRuminantbiology.animalCoprophagiaIsoAnimals2. Zero hunger030109 nutrition & dieteticsbiology630 AgricultureCaecotrophyalpha-Linolenic acidMicrobiotaOrganic ChemistryFatty AcidsHindgutCell BiologyRat.biology.organism_classificationGuinea pigAnimal FeedDietRats030104 developmental biologychemistryAdipose TissueDocosahexaenoic acidMicrobial fatty acids570 Life sciences; biology1605 Organic ChemistryLipidsReferences
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Revisiting delta-6 desaturase regulation by C18 unsaturated fatty acids, depending on the nutritional status.

2009

Dietary polyunsaturated fatty acids (PUFA) play a key role in regulating delta-6 desaturase (D6D), the key enzyme for long-chain PUFA biosynthesis. Nevertheless, the extent of their effects on this enzyme remains controversial and difficult to assess. It has been generally admitted that C18 unsaturated fatty acids (UFAs) regulate negatively delta-6 desaturase (D6D). This inhibition has been evidenced in regard to a high glucose/fat free (HG/FF) diet used in reference. However, several nutritional investigations did not evidence any inhibition of desaturases when feeding fatty acids. Because the choice of the basal diet appeared to be of primary importance in such experiments, our goal was t…

chemistry.chemical_classificationalpha-Linolenic acidLinoleic acidGeneral MedicineBiologyBiochemistryDietary FatsLinoleoyl-CoA DesaturaseDelta-6-desaturaseRatschemistry.chemical_compoundOleic acidVegetable oilBiochemistrychemistryBiosynthesisGene Expression RegulationFatty Acids Omega-3Fatty Acids UnsaturatedAnimalsHumansSpecific activityFood scienceRats WistarPolyunsaturated fatty acidBiochimie
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Early Low-Fat Diet Enriched With Linolenic Acid Reduces Liver Endocannabinoid Tone and Improves Late Glycemic Control After a High-Fat Diet Challenge…

2016

International audience; Evidence suggests that alterations of glucose and lipid homeostasis induced by obesity are associated with the elevation of endocannabinoid tone. The biosynthesis of the two main endocannabinoids, N-arachidonoylethanolamine and 2-arachidonoyl-glycerol, which derive from arachidonic acid, is influenced by dietary fatty acids (FAs). We investigated whether exposure to n-3 FA at a young age may decrease tissue endocannabinoid levels and prevent metabolic disorders induced by a later high-fat diet (HFD) challenge. Three-week-old mice received a 5% lipid diet containing lard, lard plus safflower oil, or lard plus linseed oil for 10 weeks. Then, mice were challenged with a…

Blood Glucose0301 basic medicinemedicine.medical_specialty[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEndocrinology Diabetes and MetabolismMice TransgenicCarbohydrate metabolismBiologyDiet High-FatMice03 medical and health scienceschemistry.chemical_compoundInternal medicineInternal MedicinemedicineAnimalsHomeostasisObesityDiet Fat-RestrictedGlycemic2. Zero hungerdiabetesalpha-Linolenic acidBody WeightFatty liveralpha-Linolenic AcidLipid metabolismLipid Metabolismmedicine.diseaseEndocannabinoid system3. Good healthFatty LiverMice Inbred C57BL[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition030104 developmental biologyEndocrinologyLiverchemistryendocananbinoid systemCarbohydrate MetabolismArachidonic acidlipids (amino acids peptides and proteins)Metabolic syndrome[SDV.AEN]Life Sciences [q-bio]/Food and NutritionEndocannabinoids
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