Search results for "Pea protein"

showing 10 items of 13 documents

Influence of different sources of vegetable, whey and microalgae proteins on the physicochemical properties and amino acid profile of fresh pork saus…

2019

Abstract The purpose of this study was to evaluate changes in the physicochemical properties and amino acid profiles of pork sausages prepared by including vegetable protein sources (beans, peas, and lentils), microalgae (Chlorella and Spirulina) or whey, as compared with a control (soy protein). Significant differences were found for all the studied parameters. The protein content was significantly lower in sausages made with pea protein compared with the control. Colour parameters changed significantly after the incorporation of microalgae proteins. Moreover, significant differences among treatments were observed in the amino acid profile. The inclusion of Spirulina proteins resulted in a…

0106 biological sciencesLentils[SDV.BIO]Life Sciences [q-bio]/BiotechnologyBeans01 natural sciencesProtein content0404 agricultural biotechnology010608 biotechnologyChiorella and Spirulina[SDV.IDA]Life Sciences [q-bio]/Food engineeringSpirulina (dietary supplement)Food science[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Amino acid contenttextural traitsSoy proteinComputingMilieux_MISCELLANEOUS2. Zero hungerchemistry.chemical_classificationbiologyPea proteinfood and beverages[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biology04 agricultural and veterinary sciencesbiology.organism_classificationSeaweed040401 food scienceAmino acid[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]ChlorellachemistryChewiness[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceColour parameters
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Characterisation of odour active compounds along extraction process from pea flour to pea protein extract

2013

International audience; Pisum sativum, rich in proteins, represents a main interest for human food. Nevertheless, pea products are underused because of their organoleptic characteristics. The extraction process of the proteins can partly explain the development of the typical flavour.The objective of the present study was to identify odour active compounds and to follow their evolution during four steps of the process (from pea flour to pea protein).Firstly, volatile compounds were extracted by Solvent Assisted Flavour Evaporation from each step and analysed by Gas Chromatography coupled with Mass Spectrometry and Olfactometry. Secondly, the volatile compounds, identified as odour active in…

030309 nutrition & dieteticsFlavourOrganolepticPisum03 medical and health sciences0404 agricultural biotechnologyProtein purification[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyProtein extractionOdour-active compoundsLegumePisum sativum2. Zero hunger0303 health sciencesChromatographybiologyPea proteinExtraction (chemistry)fungifood and beverages04 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceSAFEGC–OGas chromatography[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood Science
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Protein aggregation induced by phase separation in a pea proteins–sodium alginate–water ternary system

2012

Abstract The physicochemical properties of a native, globular plant protein–linear anionic polysaccharide aqueous system at 20 °C were investigated in conditions where biopolymers carry a net negative charge (pH 7.2, 0.1 M NaCl). The pea proteins–sodium alginate mixtures showed a phase separation mainly by thermodynamic incompatibility, characterized at both the macroscopic and microscopic scale. Phase diagram was established and confocal laser scanning microscopy (CLSM) provided accurate data on the microstructure morphology of the system, regarding its phase behavior. In admixture, sodium alginate induced a protein aggregation, certainly by a local depletion of the polysaccharide. Protein…

Aqueous solutionTernary numeral systemChemistryGeneral Chemical EngineeringPea proteinAnalytical chemistryGeneral ChemistryProtein aggregationengineering.materialChemical engineeringPhase (matter)Volume fractionengineeringBiopolymerPhase inversionFood ScienceFood Hydrocolloids
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Properties of spray-dried food flavours microencapsulated with two-layered membranes: Roles of interfacial interactions and water

2012

International audience; Engineering the interface of oil-in-water emulsion droplets with biopolymers that modify its permeability could provide a novel technique to improve flavour retention in dry powders. The objective of this study was to determine if volatile compounds were more retained in dry emulsions stabilized by pea protein isolate (PPI)/pectin complex than that stabilized by PPI alone. The retention of ethyl esters during spray-drying increased with decreasing volatility of the encapsulated compound and ranged from 28% to 40%. The addition of pectin to feed emulsions was quite effective in markedly improving the retention of the three studied flavour compounds. In our previous wo…

Chromatographyfood.ingredientPectinWater activityChemistryPea proteinFlavourSpray-dryingfood and beveragesGeneral MedicineFood chemistrycomplex mixturesMultilayer emulsionsAnalytical ChemistryfoodMembraneSpray dryingReleaseEmulsionFlavours[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringMicroencapsulationFood ScienceWater activity
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Improvement of the techno-functional properties of pea proteins by microfluidization

2017

The use of pea (Pisum sativum (L.)) proteins in the food industry is still limited despite their good environmental sustainability, heath-oriented composition, reliable origin and stable price. However, one of the most important limitations is their low solubility which determines a number of their techno-functional properties. Microfluidization is a non-thermal emerging technology that may modify the structure and the techno-functional properties of pea proteins. Microfluidization combines high shear forces due to the stream speed and direction; impact forces from collisions with the walls and with the fluid itself; and turbulence inside the chamber. The objective of this work was to evalu…

Dynamic high pressureSolubilityPea proteins[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyTechno-functional propertiesMicrofluidization
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Effect of high methoxyl pectin on pea protein in aqueous solution and at oil/water interface

2010

International audience; The effect of the addition of high methoxyl pectin on the stability of pea protein isolate emulsions was investigated. Except for low pectin concentrations at acidic pHs where bridging flocculation occurred the addition of pectin improved emulsion stability to pH changes and depletion flocculation induced by maltodextrin addition. The mechanism of pectin induced stability was probed by measuring protein-pectin complex formation in solution, zeta potential of the emulsions droplets and the change in surface viscoelasticity on pectin addition. The phase diagrams of pectin-pea protein isolate in solution and pectin-pea protein-stabilized emulsions were established based…

Flocculationanimal structuresfood.ingredientPolymers and PlasticsPectinEmulsion stabilitymacromolecular substancescomplex mixtureschemistry.chemical_compoundfood[SDV.IDA]Life Sciences [q-bio]/Food engineeringMaterials ChemistryZeta potential[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringAqueous solutionChromatographyInterfacial complexationPea proteindigestive oral and skin physiologyOrganic Chemistryfood and beveragesComplex formationMaltodextrinPectinPhase diagramInterfacial elasticitychemistryChemical engineeringPlant proteinPea proteinEmulsionCarbohydrate Polymers
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A chemometric approach to evaluate the impact of pulses, Chlorella and Spirulina on proximate composition, amino acid, and physicochemical properties…

2019

Changes in physicochemical parameters, proximate composition, amino acid and taste profiles of turkey burgers enriched at 1% with soy (control), pulses, Chlorella and Spirulina proteins were studied. Results: Color parameters, pH, ash content, total, essential and non-essential amino acids were significantly different among the different type of turkey burgers prepared. In this regard, turkey burgers made with pea protein presented the highest values for pH and lightness, whereas the samples prepared with broad bean showed the highest redness. The inclusion of bean and seaweed produced a marked increase of glutamic acid, lysine and aspartic acid. However, the taste profile was similar in th…

LightnessTasteTurkeys030309 nutrition & dieteticsFood HandlingLysineChlorellaturkey burger03 medical and health sciences0404 agricultural biotechnologytaste profileSettore AGR/13 - CHIMICA AGRARIAAspartic acidSpirulinaAnimalsHumansFood scienceAmino Acidscolor parameters2. Zero hungerSpirulina (genus)chemistry.chemical_classification0303 health sciencesNutrition and DieteticsbiologyChemistryPea proteinfood and beveragesFabaceae04 agricultural and veterinary sciencesConsumer Behaviorbiology.organism_classification040401 food scienceAmino acidMeat ProductsseaweedsChlorellatextural propertiesTasteFood AdditivesAgronomy and Crop ScienceFood ScienceBiotechnology
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Study of the interactions and physicochemical properties of pea and egg white protein mixtures : from the colloidal to the gelled state.

2022

In recent years, due to the growth of world population, people's consumption of animal protein has increased, leading to the increase of greenhouse gas emissions and land occupation. Therefore, it is necessary to partially replace animal protein with vegetable protein to increase the proportion of vegetable protein in daily consumption and developing mixed food systems seems to be one adequate solution. Pea proteins as a source of plant proteins have good nutritional properties but with limited functional properties while egg white (EW) has good functional properties such as gelling and foaming. Thereby, the physicochemical interactions from mixtures of both types of protein needs to be und…

Propriétés thermiquesThermal properties.InteractionFonctionnalitéPea proteinsGelation propertiesPropriétés de gélification[SDE.ES] Environmental Sciences/Environmental and SocietyEgg proteinsFunctionalityProtéines d'oeufProtéines de pois
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Utilisation of pectin coating to enhance spray-dry stability of pea protein-stabilised oil-in-water emulsions

2010

International audience; In this study, development of pea (Pisum sativum) protein stabilised dry and reconstituted emulsions is presented. Dry emulsions were prepared by spray-drying liquid emulsions in a laboratory spray-dryer. The effect of drying on the physical stability of oil-in-water emulsions containing pea protein-coated and pea protein/pectin-coated oil droplets has been studied. Oil-in-water emulsions (5 wt.% Miglyol 812 N, 0.25 wt.% pea protein, 11% maltodextrin, pH 2.4) were prepared that contained 0 (primary emulsion) or 0.2 wt.% pectin (secondary emulsion). The emulsions were then subjected to spray-drying and reconstitution (pH 2.4). The stability of the emulsions to dry pro…

Steric effectsfood.ingredientPectinSpray-dryingAnalytical Chemistrychemistry.chemical_compoundAgeing stabilityfoodPH sensitivity[SDV.IDA]Life Sciences [q-bio]/Food engineeringZeta potential[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringChromatographyChemistryPea proteinfood and beveragesGeneral MedicineMaltodextrinPectinCreamingOil dropletSpray dryingEmulsionPea proteinEmulsionsFood Science
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Influence de l'état protéique sur la dynamique de séparation de phase et de gélification dans un système ternaire aqueux à base de protéines de pois …

2012

Two aqueous systems at 20°C in 0.1 M NaCl and pH 7.2 containing globular pea proteins and sodium alginate were investigated in this study. First, phase behavior of (i) either low-denatured mixed globulins or (ii) their thermally pre-aggregated counterparts - alginate mixtures was compared using a multi-scale approach, by means of phase diagram and microstructure analysis by confocal microscopy. Thermodynamic incompatibility was the main driving force leading to phase separation within the mixtures, which presented according to their initial biopolymer composition both different morphological and time-evolution features of coexisting phases. Thereafter, a cold-set gelation for each system wa…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesGelationGlobular pea proteins[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionAlginatePhase separationNetworkIncompatibilité[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]RéseauRhéologie[SDV.AEN] Life Sciences [q-bio]/Food and NutritionAggregationProtéines globuliares de poisGélification[CHIM.OTHE] Chemical Sciences/OtherSéparation de phase[ CHIM.OTHE ] Chemical Sciences/OtherAgrégationIncompatibilityRheologyMicrostructure[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciences
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