Search results for "seed oil"

showing 10 items of 41 documents

Microencapsulation of healthier oils to enhance the physicochemical and nutritional properties of deer pâté

2020

The influence of pork backfat substitution by microencapsulated healthier oils on physicochemical and nutritional properties of deer pate was assessed. Four different treatments were elaborated: control with 100% of pork backfat and the other ones with 50% of pork backfat was replaced by microencapsulated oils (tigernut, chia and linseed oils). These fat replacements were accompanied by a significant (P lt 0.001) decrease in fat and cholesterol contents. The inclusion of vegetable oils resulted in a significant (P lt 0.001) modification of colour parameters, being tigernut batches which presented the highest redness and yellowness values. Moreover, softer textures were observed in reformula…

0106 biological sciences2. Zero hungerLinseed oilfood.ingredientChemistryfood and beveragesTigernut oil04 agricultural and veterinary sciences040401 food science01 natural sciences0404 agricultural biotechnologyfoodLinseed oilTechnological properties010608 biotechnologyHealthy pateChia seed oilFood scienceFood ScienceLWT
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Comparative Chemical Composition and Bioactivity of Opuntia ficus‐indica Sanguigna and Surfarina Seed Oils Obtained by Traditional and Ultrasound‐Ass…

2018

This study investigates the seed oils obtained from two different varieties of Opuntia ficus-indica (Sanguigna and Surfarina) growing in Sicily, Italy. Soxhlet and ultrasound-assisted extraction procedures are used to obtain the seed oils. The fatty acid profile, γ-tocopherols, carotenoid content, and the bioactivity in terms of the antioxidant effects (using ABTS, DPPH, FRAP, and β-carotene bleaching tests), and carbohydrate-hydrolysing enzyme inhibitory activity (α-amylase and α-glucosidase) are determined. The extraction procedure does not significantly affect the fatty acid composition of the oil, but it does affect the tocopherol and carotenoid contents, as well as the antioxidant and …

0301 basic medicine030109 nutrition & dieteticsChromatographyOpuntia ficusExtraction (chemistry)Opuntia ficus-indica seed oilSettore CHIM/06 - Chimica Organica04 agricultural and veterinary sciencesGeneral ChemistryBiologyultrasound extractionUltrasound assisted040401 food scienceIndustrial and Manufacturing Engineering03 medical and health sciences0404 agricultural biotechnologySoxhlet extractionvegetable by-productshypoglycaemicChemical compositionFood ScienceBiotechnologyEuropean Journal of Lipid Science and Technology
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Sicilian Opuntia ficus‐indica Seed Oil: Fatty Acid Composition and Bio‐Economical Aspects

2017

The fatty acid composition of the seed oil from the yellow fruit of Opuntia ficus-indica widely grown in Sicily shows several distinctive features. The oil obtained comprises significant amounts of vaccenic acid along with several other unsaturated fatty acids showing several health benefits, including linolenic, trans-13-octadecenoic, gondoic, 7Z,10Z-hexadecadienoic, and gadoleic acid. The economic analysis shows the significant advantage of carrying out the extraction from fruits considered unfit for consumption. Practical applications: The fatty acid composition of Sicilian Opuntia ficus-indica seed oil is similar to that of fruits grown in Tunisia, while it has a completely different pr…

0301 basic medicineLinoleic acidOpuntia ficus-indicaGadoleic acidCactus pear; Linoleic acid; Opuntia ficus-indica; Seed oil; Sicily; Biotechnology; Food Science; Chemistry (all); Industrial and Manufacturing EngineeringLinoleic acidVaccenic acidmacromolecular substancesBiologyIndustrial and Manufacturing EngineeringIngredientchemistry.chemical_compound03 medical and health sciences0404 agricultural biotechnologyNutraceuticalBotanyFood scienceSicilyCactus pear030109 nutrition & dieteticsExtraction (chemistry)Chemistry (all)food and beverages04 agricultural and veterinary sciencesGeneral Chemistry040401 food sciencechemistryComposition (visual arts)Fatty acid compositionSeed oilFood ScienceBiotechnologyEuropean Journal of Lipid Science and Technology
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Diversity of Sterol Composition in Tunisian Pistacia lentiscus Seed Oil

2016

International audience; Pistacia lentiscus L. seed oil is used in some Mediterranean forest area for culinary and medicinal purposes. In this study, we aim to examine, for the first time, the effect of growing area on sterol content of Pistacia lentiscus seed oil. Fruits were harvested from 13 different sites located in northern and central Tunisia. Gas chromatography-flame-ionization detection (GC-FID) was used to quantify sterols and gas chromatography/mass spectrometry (GC/MS) was used to identify them. The major sterol identified was b-sitosterol with a value ranging from 854.12 to 1224.09 mg/kg of oil, thus making up more than 54% of the total sterols. The other two main sterols were c…

0301 basic medicineMediterranean climateChromatography GasTunisiasunflower[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMolecular ConformationphytosterolsBioengineeringnetherlandscancer riskBiochemistryMass Spectrometry03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyfoodsPlant OilsMolecular BiologyDiversity030109 nutrition & dieteticsbiologyPhytosterol04 agricultural and veterinary sciencesGeneral ChemistryGeneral Medicinefruitbiology.organism_classification040401 food scienceSunflowerSterolHorticultureSterolschemistryPistacia lentiscusPistaciaSeedsCycloartenolMolecular MedicineComposition (visual arts)lipids (amino acids peptides and proteins)Gas chromatographyaccumulationdiet[SDV.AEN]Life Sciences [q-bio]/Food and NutritionSeed oilPistacia lentiscus
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Chemical characterization of a variety of cold-pressed gourmet oils available on the Brazilian market

2018

Different specialty extra virgin oils, produced by cold-pressing fruits/nuts (olive, pequi, palm, avocado, coconut, macadamia and Brazil nut) and seeds (grapeseed and canola), and retailed in the Brazilian region of Minas Gerais, were chemically characterized. Specifically, for each type of oil, the fatty acid composition was elucidated by GC-FID, the contents of selected polyphenols and squalene were determined respectively by UHPLC-MS and UHPLC-PDA, whereas minerals were explored by means of ICP-MS. Olive oil was confirmed to have the highest MUFA content due to a valuable level of oleic acid, while oils from grapeseed, Brazil nut and canola were marked by nutritionally important PUFA lev…

0301 basic medicineSettore CHIM/10 - Chimica Degli AlimentiFood HandlingPalm Oilsqualenecold-pressingFatty Acids MonounsaturatedSqualenechemistry.chemical_compoundNutsVitisFood scienceCanolaChromatography High Pressure LiquidFlame Ionization2. Zero hungerCoconut oilmineralsSeedsCoconut OilFruit/nut oils Seed oils Cold-pressing Chemical characterization Fatty acids Polyphenols Squalene Minerals.fruit/nut oilsBrazilseed oilsSpectrometry Mass Electrospray IonizationChromatography Gasfood.ingredientfatty acids03 medical and health sciencesfoodPlant OilsOlive OilFruit/nut oils Seed oils Cold-pressing Chemical characterization Fatty acids Polyphenols Squalene Mineralspolyphenols030109 nutrition & dieteticschemical characterizationPerseafruit/nut oils; seed oils; cold-pressing; chemical characterization; fatty acids; polyphenols; squalene; mineralsLauric acidfood.foodTyrosolOleic acidchemistryMacadamiaBertholletiaHydroxytyrosolRapeseed OilFood AnalysisFood ScienceBrazil nut
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Shelf life study of healthy pork liver pate with added seaweed extracts from Ascophyllum nodosum, Fucus vesiculosus and Bifurcaria bifurcata

2018

The effect of the addition of seaweed extracts from three brown algae species [Ascophyllum nodosum (AN), Fucus vesiculosus (FV) and Bifurcaria bifurcata (BB which are a great source of natural antioxidants, on the oxidative stability of refrigerated low-fat pork liver pates was studied. In the studied pates, half of pork fat was replaced with a mixture consisting of canola and high-oleic sunflower oil (75:25, v/v), thus improving their fatty acid profile in terms of polyunsaturated fatty acids (PUFA). In order to avoid the oxidation of PUFA in the new samples, seaweed extracts (500 ppm) were added. In addition, some samples were formulated with a synthetic antioxidant (BHT at 50 ppm) (BHT) …

0301 basic medicineTime FactorsAntioxidantBifurcaria bifurcatamedicine.medical_treatmentSus scrofaAntioxidantsRefrigerationHealthy pateSunflower OilFood scienceDiet Fat-RestrictedAscophyllumchemistry.chemical_classificationbiologyChemistryAscophyllum nodosumFucus vesiculosus04 agricultural and veterinary sciences040401 food scienceMeat ProductsVolatile compoundsNutritive ValueOxidation-ReductionPolyunsaturated fatty acidfood.ingredientSeaweed extractsFucus vesiculosusShelf life03 medical and health sciences0404 agricultural biotechnologyfoodFood PreservationmedicineTBARSAnimalsOxidative stabilityVolatile Organic Compounds030109 nutrition & dieteticsSunflower oilFatty acidSeaweedbiology.organism_classificationRed MeatFucusFood MicrobiologyFood PreservativesRapeseed OilAscophyllumFood Science
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Tunisian Milk Thistle: An Investigation of the Chemical Composition and the Characterization of Its Cold-Pressed Seed Oils

2017

In this study, milk thistle seeds growing in different areas in Tunisia were cold pressed and the extracted oils were examined for their chemical and antioxidant properties. The major fatty acids were linoleic acid (C18:2) (57.0%, 60.0%, and 60.3% for the milk thistle seed oils native to Bizerte, Zaghouan and Sousse, respectively) and oleic acid (C18:1) (15.5%, 21.5%, and 22.4% for the milk thistle seed oils originating from Bizerte, Zaghouan and Sousse, respectively). High performance liquid chromatography (HPLC) analysis showed the richness of the milk thistle seed oils (MTSO) in α-tocopherol. The highest content was recorded for that of the region of Zaghouan (286.22 mg/kg). The total ph…

0301 basic medicineTunisiaAntioxidantmedicine.medical_treatmentLinoleic acidalpha-Tocopherolfatty acidsHigh-performance liquid chromatographyAntioxidantsArticleCatalysislcsh:ChemistryInorganic Chemistry03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyHydroxybenzoatesmedicineVanillic acidMilk ThistlePlant OilsFood scienceGallic acidPhysical and Theoretical Chemistrylcsh:QH301-705.5milk thistle seed oil; fatty acids; phenolic acids; tocopherols; differential scanning calorimetryMolecular BiologyChemical compositionSpectroscopy030109 nutrition & dieteticsCalorimetry Differential ScanningMilk Thistlemilk thistle seed oilOrganic Chemistryfood and beverages04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceComputer Science ApplicationsOleic acidlcsh:Biology (General)lcsh:QD1-999chemistrySeedsdifferential scanning calorimetryphenolic acidstocopherolsChromatography LiquidInternational Journal of Molecular Sciences
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Digestion and absorption rates of [3H]-oleic acid and [14C]-triolein do not differ in rats fed heated (-) and (+) gossypol cottonseed and soybean flo…

1998

This study was conducted to compare in vivo the acute effects of heated (+) and (-) gossypol cottonseed flours with those of soybean flour on lipid digestion and absorption in growing rats. Rats were fed by gastric intubation mixed [ 3 H]-oleic acid and [ 14 C]-triolein with heated flours or without flour (control). Lipid digestion and absorption were determined for 6 h after meal intubation. Both radioactivities recovered in gastrointestinal tract were significantly higher in rats fed (+) gossypol cottonseed flour than in all other groups. The majority of both recovered radioactivities was found in stomach contents, then in stomach wall and finally in intestinal wall. The distribution of b…

Absorption (pharmacology)MaleHot TemperatureCottonseed OilMedicine (miscellaneous)BiologyFatty Acids NonesterifiedTritiumCottonseedchemistry.chemical_compoundAnimalsTrioleinFood scienceCarbon RadioisotopesIntestinal MucosaRats WistarIntubation GastrointestinalTriglyceridesGastrointestinal tractNutrition and DieteticsfungiGossypolfood and beveragesRatsOleic acidKineticschemistryBiochemistryIntestinal AbsorptionGossypollipids (amino acids peptides and proteins)DigestionSoybeansDigestionLipid digestionTrioleinOleic AcidThe Journal of nutrition
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Nano-magnetic potassium impregnated ceria as catalyst for the biodiesel production

2019

Abstract The main objective of this work comprises the investigation of biodiesel production from rapeseed oil using potassium impregnated Fe3O4-CeO2 nanocatalyst. The various concentration of potassium impregnated Fe3O4-CeO2 was screened for catalytic conversion of rapeseed oil to triglyceride methyl ester. The 25 wt % potassium impregnated Fe3O4-CeO2 nanocatalyst showed best biodiesel production. Nanocatalyst was characterized by FTIR, XRD, SEM, TEM, BET and Hammett indicator for basicity test. The characterization of biodiesel was performed with GC-MS, 1H and 13C NMR. Moreover, the optimum reaction parameters such as catalyst amount (wt %), oil to methanol ratio, reaction time and reacti…

Acid valuekasviöljyt020209 energyPotassiumchemistry.chemical_elementbiodiesel02 engineering and technologyrapeseed oilCatalysischemistry.chemical_compoundkatalyytit0202 electrical engineering electronic engineering information engineering0601 history and archaeologyta116ta215ta218Biodiesel060102 archaeologyRenewable Energy Sustainability and the Environment06 humanities and the artsTransesterificationtransesterificationchemistryYield (chemistry)Biodiesel productionoksiditnanohiukkasetMethanolFe3O4-CeO2 nanocatalystrapsiöljyNuclear chemistryRenewable Energy
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Antifungal activity of the carrot seed oil and its major sesquiterpene compounds.

2005

Carrot seed oil is the source of the carotane sesquiterpenes carotol, daucol and β-caryophyllene. These sesquiterpenic allelochemicals were evaluated against Alternaria alternata isolated from the surface of carrot seeds cultivar Perfekcja, a variety widely distributed in horticultural practise in Poland. Alternaria alternata is one of the most popular phytotoxic fungi infesting the carrot plant. The strongest antifungal activity was observed for the main constituent of carrot seed oil, carotol, which inhibited the radial growth of fungi by 65% at the following concentration.

AntifungalAntifungal Agentsmedicine.drug_classcarrot seeds oilSesquiterpeneAlternaria alternataGeneral Biochemistry Genetics and Molecular BiologyCarotolchemistry.chemical_compoundBotanymedicinePlant OilsCultivarAllelopathybiologyantifungal activityAlternariaCarrot seed oilbiology.organism_classificationDaucus carotaRadial growthchemistrycarotolSeedsdaucolSesquiterpenesZeitschrift fur Naturforschung. C, Journal of biosciences
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