Search results for "Emulsifying activity"

showing 2 items of 2 documents

Effect of iron chelates on oil–water interface, stabilized by milk proteins: The role of phosphate groups and pH. Prediction of iron transfer from aq…

2010

International audience; Iron incorporated into food systems induces oxidation and precipitation. The consequences are reduced bioavailability and a functional modification of other food components such as proteins. The iron-chelates such as ferrous bisglycinate represent a possibility to avoid side effects, since the iron is protected. The aim of this study is to investigate the effects of iron-chelates compounds on the properties of an oil/water interface stabilized by caseinate or β-lacotoglobulin, under environmental conditions at 20 °C. Analyses were performed using dynamic drop tensiometry during 5000 s. The aqueous bulk phase is an imidazole/acetate buffer (0.1 M), containing 0.4 × 10…

030309 nutrition & dieteticsGeneral Chemical EngineeringInorganic chemistryIron fortificationSurface tension03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyOil-in-water emulsion[SDV.IDA]Life Sciences [q-bio]/Food engineeringChelationBeta-lactoglobulin2. Zero hunger0303 health sciencesAqueous solutionChromatographybiologyChemistryAqueous two-phase systemEmulsifying activityProteins04 agricultural and veterinary sciencesGeneral ChemistryPhosphate040401 food scienceEmulsionPhosphate groupsbiology.proteinChemical stabilityFood ScienceFood Hydrocolloids
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High pressure processing of food-grade emulsion systems: Antimicrobial activity, and effect on the physicochemical properties

2019

Abstract The use of high pressure processing (HPP) for development of stable emulsion-based delivery systems has been recently increased. Under adequate conditions, application of high pressures modifies the functionality of protein and polysaccharide molecules and significantly promotes the emulsifying activities. Application of high pressures also modulates the emulsion microstructure without any destabilization and gelation of protein molecules. The lipid oxidation in HPP-treated emulsions can be accelerated, particularly with higher pressure levels, while the HPP utilization on emulsions in acidic conditions can highly inhibit the growth of spoilage and pathogenic microorganisms. In thi…

chemistry.chemical_classification010304 chemical physicsChemistryGeneral Chemical EngineeringFood spoilageFood grade04 agricultural and veterinary sciencesGeneral ChemistryAntimicrobialPolysaccharide040401 food science01 natural scienceshigh pressure processing ; emulsion delivery systems ; emulsifying activity ; stability ; rheology ; antibacterial activityPascalization0404 agricultural biotechnologyLipid oxidationRheologyChemical engineering0103 physical sciencesEmulsionFood ScienceFood Hydrocolloids
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