Search results for "Unsaponifiable"

showing 5 items of 5 documents

Does unsaponifiable fraction of grape seed oil attenuate nitric oxide production, oxidant and cytotoxicity activities.

2019

Triterpenoids, tocopherols, and phytosterols presented in unsaponifiable fraction of grape seed oil have several beneficial effects comprising antioxidant, anti-inflammatory, and antitumor capacities. In this study, the unsaponifiable fraction of three Tunisian grape seed varieties (Vitis vinifera L.), namely Merlot, Carignan, and Syrah, was investigated. The identified compounds were two triterpenic compounds (β-amyrin, lanosterol), six phytosterols (campesterol, ∆7 -avenasterol, stigmasterol, β-sitosterol, β-sitostanol, cholesterol), and three tocopherols (α, β, and γ tocopherols). The unsaponifiable fraction had significant protection against oxidative damage by modulating NO production …

Antioxidantfood.ingredient030309 nutrition & dieteticsCell SurvivalCampesterolmedicine.medical_treatmentBiophysicsFraction (chemistry)AvenasterolNitric OxideGrape seed oil03 medical and health scienceschemistry.chemical_compoundMice0404 agricultural biotechnologyfoodmedicineAnimalsVitisFood sciencePharmacology0303 health sciencesStigmasterolGrape Seed ExtractMacrophagesfood and beverages04 agricultural and veterinary sciencesCell BiologyOxidants040401 food scienceRAW 264.7 CellschemistryUnsaponifiableComposition (visual arts)BiomarkersFood ScienceJournal of food biochemistry
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Composition, industrial processing and applications of rice bran γ-oryzanol

2009

Abstract Rice bran oil (RBO) (20–25 wt% in rice bran) is a unique rich source of commercially-important bioactive phytochemicals, most of them of interest in nutrition, pharmacy and cosmetics. The unsaponifiable constituents of RBO include mainly tocols (vitamin E, 0.10–0.14%) and γ-oryzanol (esters of trans- ferulic acid with sterols and triterpenic alcohols, 0.9–2.9%). The following topics concerning γ-oryzanol are reviewed: analytical methods for characterisation and determination; influence of genetic and environmental factors on the composition of rice bran; extraction approaches, including supercritical CO 2 and subcritical water; and biomedical and industrial applications, including …

Branbusiness.industryPhytosterolRice bran oilfood and beveragesFood composition dataFood technologyGeneral MedicineAnalytical ChemistryFerulic acidchemistry.chemical_compoundVegetable oilchemistryUnsaponifiableFood sciencebusinessFood ScienceFood Chemistry
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Classification of vegetable oils according to their botanical origin using n-alkane profiles established by GC-MS.

2013

n-Alkane profiles established by gas chromatography-mass spectrometry (GC-MS) were used to classify vegetable oils according to their botanical origin. The n-alkanes present in corn, grapeseed, hazelnut, olive, peanut and sunflower oils were isolated by means of alkaline hydrolysis followed by silica gel column chromatography of the unsaponifiable fractions. The n-alkane fraction was constituted mainly of n-alkanes in the range C8-C35, although only those most abundant (15 n-alkanes, from 21 to 35 carbon No.) were used as original variables to construct linear discriminant analysis (LDA) models. Ratios of the peak areas selected by pairs were used as predictors. All the oils were correctly …

ChromatographySilica gelFraction (chemistry)General MedicineAlkaline hydrolysis (body disposal)SunflowerGas Chromatography-Mass SpectrometryAnalytical Chemistrychemistry.chemical_compoundColumn chromatographychemistryUnsaponifiableAlkanesPlant OilsGas chromatographyGas chromatography–mass spectrometryFood ScienceFood chemistry
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Analysis of pecan nut ([i]Carya illinoinensis[/i]) unsaponifiable fraction. Effect of ripening stage on phytosterols and phytostanols composition

2014

Changes in 4-desmethylsterol, 4-monomethylsterol, 4,4-dimethylsterol and phytostanol composition were quantitatively and qualitatively investigated during the ripening of three varieties of Tunisian-grown pecan nuts (Mahan, Moore and Burkett). These components have many health benefits, especially in lowering LDL-cholesterol and preventing heart disease. The phytosterol composition of whole pecan kernel was quantified by Gas Chromatography-Flame Ionisation Detection (GC-FID) and identified by Gas Chromatography-Mass Spectrometry (GC-MS). Fifteen phytosterols and one phytostanol were quantified. The greatest amount of phytosterols (2852.5 mg/100 g of oil) was detected in Mahan variety at 20 …

Nut4-DimethylsterolsCampesterol4-Desmethylsterols4Fraction (chemistry)Gas Chromatography-Mass SpectrometryAnalytical Chemistrychemistry.chemical_compoundRipening stagefood[ CHIM.OTHE ] Chemical Sciences/Other[SDV.IDA]Life Sciences [q-bio]/Food engineeringNutsPlant OilsFood scienceCaryaPecan nutsFlame IonizationPhytosterol[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringPhytosterolsCarya illinoinensisRipeningGeneral MedicineStanolsfood.foodUnsaponifiablechemistryComposition (visual arts)[CHIM.OTHE]Chemical Sciences/OtherFood Science4-Monomethylsterols
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Improving the Frying Performance and Oxidative Stability of Refined Soybean Oil by Tocotrienol-Rich Unsaponifiable Matters of Kolkhoung (Pistacia khi…

2018

Increasing consumer awareness for all natural products has quickly led to growing research on new resources of potent and profitable natural antioxidants. In this context, for the first time, the Kolkhoung hull oil (KHO) (Pistacia khinjuk)-unsaponifiable matters (USM) (UHO) (100, 200, and 400 mg kg−1) were incorporated into refined soybean oil (RSO) and the oxidative stability of prepared oils was measured during 32 hours of frying. Then, the obtained results (oxidative stability) were compared to the samples containing tert-butyl hydroquinone (TBHQ) (100 mg kg−1) as a common synthetic antioxidant. According to the results of oxidative stability assays of acid values, conjugated diene value…

Unsaponifiable matterfood.ingredientTocotrienolGeneral Chemical Engineering010401 analytical chemistryOrganic Chemistry04 agricultural and veterinary sciencesAntioxidant compoundTotal polar compound040401 food science01 natural sciencesSoybean oil0104 chemical scienceschemistry.chemical_compound0404 agricultural biotechnologyfoodchemistryUnsaponifiableConjugated diene valueChemical Engineering (all)Pistacia khinjukTocotrienolFood scienceKolkhoung hull oilJournal of the American Oil Chemists' Society
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