Search results for "fatty-acid-composition"

showing 5 items of 5 documents

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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Modulation of brain PUFA content in different experimental models of mice.

2016

International audience; The relative amounts of arachidonic acid (AA) and docosahexaenoic acid (DHA) govern the different functions of the brain. Their brain levels depend on structures considered, on fatty acid dietary supply and the age of animals. To have a better overview of the different models available in the literature we here compared the brain fatty acid composition in various mice models (C57BL/6J, CD1, Fat-1, SAMP8 mice) fed with different n-3 PUFA diets (deficient, balanced, enriched) in adults and aged animals. Our results demonstrated that brain AA and DHA content is 1) structure-dependent; 2) strain-specific; 3) differently affected by dietary approaches when compared to gen…

0301 basic medicineMaleAgingClinical Biochemistryfat-1 miceHippocampuschemistry.chemical_compoundMice0302 clinical medicineCerebellumDocosahexaenoic acid (DHA)fatty-acid-compositionFood science2. Zero hungerchemistry.chemical_classificationCerebral CortexArachidonic Acidanxiety-like behaviordocosahexaenoic acidaccelerated mouse samBiochemistryDocosahexaenoic acidArachidonic acid (AA)Arachidonic acidFemaleFatty acid compositionSAMP8 miceBrain regionsPolyunsaturated fatty acidN-3 PUFAdiet-induced obesityDocosahexaenoic AcidsHypothalamusPrefrontal CortexBiology03 medical and health sciencesrat-brainDietary Fats UnsaturatedGenetic modelAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyN 3 pufaBrain Chemistryage-related-changesFatty acidCell BiologyModels Theoreticalgene-expressiondepressive-like behaviorMice Inbred C57BL030104 developmental biologychemistry030217 neurology & neurosurgeryBrain StemProstaglandins, leukotrienes, and essential fatty acids
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Chemical and Microbiological Characterization for PDO Labelling of Typical East Piedmont (Italy) Salami

2015

This study is focused on the characterisation of typical salami produced in Alessandria province (North West of Italy). Seventeen small or medium salami producers from this area were involved in the study and provided the samples investigated. The aim is double and consists in obtaining a screening of the characteristics of different products and following their evolution along ripening. The study involved five types of typical salami that were characterised for aroma components and nutritional features. This approach could provide a basis for a possible PDO or PGI label request. Principal Component Analysis and cluster analysis were used as multivariate statistical tools for data treatment…

Article SubjectVOLATILE COMPOUNDSCHROMATOGRAPHY MASS-SPECTROMETRYBIOGENIC-AMINESData treatmentFATTY-ACID-COMPOSITIONlcsh:ChemistryCHIM/01 - CHIMICA ANALITICALabellingMILANO SALAMIFood scienceDRY FERMENTED SAUSAGESAromaCURED SAUSAGEbiologyChemistrybusiness.industryGeneral Chemistrybiology.organism_classificationBiotechnologyMEAT-PRODUCTSlcsh:QD1-999North westMultivariate statisticalGC-MSbusinessSENSORY ATTRIBUTESJournal of Chemistry
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Complementary methods assessing short and long-term prey of a marine top predator ‒ Application to the grey seal-fishery conflict in the Baltic Sea.

2019

The growing grey seal (Halichoerus grypus) population in the Baltic Sea has created conflicts with local fisheries, comparable to similar emerging problems worldwide. Adequate information on the foraging habits is a requirement for responsible management of the seal population. We investigated the applicability of available dietary assessment methods by comparing morphological analysis and DNA metabarcoding of gut contents (short-term diet; n = 129/125 seals, respectively), and tissue chemical markers i.e. fatty acid (FA) profiles of blubber and stable isotopes (SIs) of liver and muscle (mid- or long-term diet; n = 108 seals for the FA and SI markers). The methods provided complementary inf…

Baltic StatespredatorsMolecular biologyTroutSeals EarlessMarine and Aquatic SciencesPredationSocial Sciencespredator populationMolecular biology assays and analysis techniquesFATTY-ACID-COMPOSITIONDIET COMPOSITIONPsychologyForagingpetokannatMammalssaaliseläimetSealsEcologyAnimal BehaviorNucleic acid analysisDatabase and informatics methodsFatty AcidsQSequence analysisREukaryotaTrophic InteractionsCommunity EcologyOsteichthyesVertebrates1181 Ecology evolutionary biologyMedicinepreyHALICHOERUS-GRYPUSDNA analysisFOOD-WEBResearch Articlegrey sealBioinformaticsECOLOGICAL REGIME SHIFTSScienceFisheriesMarine BiologyPHOCA-HISPIDA-BOTNICAfisherypetoeläimetGeneticsAnimalsGenetikMarine MammalsDNA sequence analysisEcosystemRINGED SEALSEkologiBehaviorSTABLE-ISOTOPE ANALYSISDNA-analyysiBLUBBEREcology and Environmental SciencesOrganismsBiology and Life SciencesCARBON ISOTOPESResearch and analysis methodskalatalousMolecular biology techniquesFishAmniotesEarth Sciences1182 Biochemistry cell and molecular biologyhalli (hylkeet)ZoologyPLoS ONE
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Terrestrial carbohydrates support freshwater zooplankton during phytoplankton deficiency

2016

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zooplankton0106 biological sciencesAQUATIC FOOD-WEBFood ChainLow proteinCarbohydratesFresh Water010603 evolutionary biology01 natural sciencesDaphniaZooplanktonArticleZooplanktonWHOLE-LAKE EXPERIMENTSFATTY-ACID-COMPOSITIONHERBIVOROUS ZOOPLANKTONSTABLE-ISOTOPESDissolved organic carbonBotanyPhytoplanktonAnimalsDISSOLVED ORGANIC-CARBONFatty acidsfreshwaterchemistry.chemical_classificationMultidisciplinaryLAND-USEbiology010604 marine biology & hydrobiologyFatty AcidsfungiTEMPERATE LAKESPlant litterbiology.organism_classificationALLOCHTHONOUS CARBON6. Clean waterLakesDaphniachemistryterrestrial carbohydrates1181 Ecology evolutionary biologyphytoplanktonta1181Freshwater ecologyCarbohydrate MetabolismSEASONAL SHIFTSDietary CarbohydratesPolyunsaturated fatty acidScientific Reports
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