Matches in SemOpenAlex for { <https://semopenalex.org/work/W2017497519> ?p ?o ?g. }
- W2017497519 endingPage "15" @default.
- W2017497519 startingPage "9" @default.
- W2017497519 abstract "Globular whey proteins and lipids are used in food technology for their structure-forming properties and also as matrix carriers of lipophilic bioactive compounds. Their structural properties are heat- and high-pressure sensitive, making their functional properties greatly dependant on food processing conditions. The aim of this study was to identify and quantify structural factors involved in the production of food-grade nanoparticles (100 nm to 500 nm) designed as matrix carriers of α-tocopherol (model of heat- and oxygen-sensitive lipophilic compound). Matrix carriers consisting of whey protein aggregates, alone (PV300 and PV1200) or stabilising oil-in-water hydrogenated palm oil nanoemulsions (EV300 and EV1200) were produced using a two-step hot homogenisation procedure (ultra dispersion at 65 °C followed by high-pressure homogenisation (HPH) at 300 or 1200 bar for 12 cycles). The processing treatment applied formed lower size particles accompanied by higher vitamin degradation (by 30%) in PV300 and PV1200 than in EV300 and EV1200 (less than 5% and 15%, respectively). Under storage for 8 weeks, EV1200 and PV300 presented much less vitamin protection (45% degradation) instead of around 22% and 33% for EV300 and EV1200, respectively. Physical structure characterization showed that increasing the time–intensity of HPH treatments was accompanied by i) a decreasing in the overall protein conformation stability in parallel with an increasing in protein- and vitamin molecular interactions, ii) formation of smaller size lipid droplets in oil-in-water emulsions in parallel with more protein adsorption to lipid droplets and less crystalline fat content and high energy polymorphs. These mechanisms could explain why application of increasing mechanical treatment intensity for longer physical stability against coalescence is accompanied by hindered shelf-life of resulting low size vitamin-loaded particles formed in protein-stabilised nanoemulsions." @default.
- W2017497519 created "2016-06-24" @default.
- W2017497519 creator A5030185615 @default.
- W2017497519 creator A5074670550 @default.
- W2017497519 creator A5074927095 @default.
- W2017497519 date "2014-09-01" @default.
- W2017497519 modified "2023-10-11" @default.
- W2017497519 title "Encapsulation of labile compounds in heat- and high-pressure treated protein and lipid nanoparticles" @default.
- W2017497519 cites W1579046626 @default.
- W2017497519 cites W1963788972 @default.
- W2017497519 cites W1973413944 @default.
- W2017497519 cites W1980505273 @default.
- W2017497519 cites W1984809807 @default.
- W2017497519 cites W1988043858 @default.
- W2017497519 cites W1990440588 @default.
- W2017497519 cites W1991517408 @default.
- W2017497519 cites W1998315842 @default.
- W2017497519 cites W2002957403 @default.
- W2017497519 cites W2010847792 @default.
- W2017497519 cites W2012214470 @default.
- W2017497519 cites W2016062165 @default.
- W2017497519 cites W2017196547 @default.
- W2017497519 cites W2017317942 @default.
- W2017497519 cites W2020486693 @default.
- W2017497519 cites W2022503408 @default.
- W2017497519 cites W2026558149 @default.
- W2017497519 cites W2027921068 @default.
- W2017497519 cites W2034808342 @default.
- W2017497519 cites W2039293516 @default.
- W2017497519 cites W2040479156 @default.
- W2017497519 cites W2045166722 @default.
- W2017497519 cites W2047465751 @default.
- W2017497519 cites W2051246488 @default.
- W2017497519 cites W2052737826 @default.
- W2017497519 cites W2070018868 @default.
- W2017497519 cites W2072374838 @default.
- W2017497519 cites W2074999524 @default.
- W2017497519 cites W2079041786 @default.
- W2017497519 cites W2083140548 @default.
- W2017497519 cites W2092068400 @default.
- W2017497519 cites W2092395345 @default.
- W2017497519 cites W2140617826 @default.
- W2017497519 cites W2142415115 @default.
- W2017497519 cites W2155910805 @default.
- W2017497519 cites W2165891766 @default.
- W2017497519 doi "https://doi.org/10.1016/j.foodres.2014.03.038" @default.
- W2017497519 hasPublicationYear "2014" @default.
- W2017497519 type Work @default.
- W2017497519 sameAs 2017497519 @default.
- W2017497519 citedByCount "19" @default.
- W2017497519 countsByYear W20174975192014 @default.
- W2017497519 countsByYear W20174975192015 @default.
- W2017497519 countsByYear W20174975192016 @default.
- W2017497519 countsByYear W20174975192019 @default.
- W2017497519 countsByYear W20174975192020 @default.
- W2017497519 countsByYear W20174975192021 @default.
- W2017497519 countsByYear W20174975192023 @default.
- W2017497519 crossrefType "journal-article" @default.
- W2017497519 hasAuthorship W2017497519A5030185615 @default.
- W2017497519 hasAuthorship W2017497519A5074670550 @default.
- W2017497519 hasAuthorship W2017497519A5074927095 @default.
- W2017497519 hasConcept C127413603 @default.
- W2017497519 hasConcept C136238340 @default.
- W2017497519 hasConcept C150394285 @default.
- W2017497519 hasConcept C155672457 @default.
- W2017497519 hasConcept C178790620 @default.
- W2017497519 hasConcept C185592680 @default.
- W2017497519 hasConcept C2775900134 @default.
- W2017497519 hasConcept C2777897731 @default.
- W2017497519 hasConcept C2778123984 @default.
- W2017497519 hasConcept C2984729377 @default.
- W2017497519 hasConcept C31903555 @default.
- W2017497519 hasConcept C42360764 @default.
- W2017497519 hasConcept C43617362 @default.
- W2017497519 hasConcept C55493867 @default.
- W2017497519 hasConcept C61696701 @default.
- W2017497519 hasConcept C65482303 @default.
- W2017497519 hasConcept C7500180 @default.
- W2017497519 hasConceptScore W2017497519C127413603 @default.
- W2017497519 hasConceptScore W2017497519C136238340 @default.
- W2017497519 hasConceptScore W2017497519C150394285 @default.
- W2017497519 hasConceptScore W2017497519C155672457 @default.
- W2017497519 hasConceptScore W2017497519C178790620 @default.
- W2017497519 hasConceptScore W2017497519C185592680 @default.
- W2017497519 hasConceptScore W2017497519C2775900134 @default.
- W2017497519 hasConceptScore W2017497519C2777897731 @default.
- W2017497519 hasConceptScore W2017497519C2778123984 @default.
- W2017497519 hasConceptScore W2017497519C2984729377 @default.
- W2017497519 hasConceptScore W2017497519C31903555 @default.
- W2017497519 hasConceptScore W2017497519C42360764 @default.
- W2017497519 hasConceptScore W2017497519C43617362 @default.
- W2017497519 hasConceptScore W2017497519C55493867 @default.
- W2017497519 hasConceptScore W2017497519C61696701 @default.
- W2017497519 hasConceptScore W2017497519C65482303 @default.
- W2017497519 hasConceptScore W2017497519C7500180 @default.
- W2017497519 hasLocation W20174975191 @default.
- W2017497519 hasLocation W20174975192 @default.
- W2017497519 hasLocation W20174975193 @default.