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RESEARCH PRODUCT
Bioaccessibility of tocopherols, carotenoids, and ascorbic acid from milk- and soy-based fruit beverages: Influence of food matrix and processing
María Jesús LagardaReyes BarberáGonzalo ClementeM. Pilar CanoAntonio CillaLucía PlazaConcepción Sánchez-morenoBegoña De AncosAmparo Alegríasubject
Hot TemperatureFood HandlingESTADISTICA E INVESTIGACION OPERATIVABiological AvailabilityTocopherolsBioaccessibilityMilk- and soy-based fruit beveragesAscorbic AcidIn Vitro TechniquesMatrix (chemical analysis)BeveragesLow pasteurizationPressureHigh-pressure processingAnimalsFood scienceCarotenoidchemistry.chemical_classificationChemistrySoy FoodsGeneral ChemistryAscorbic acidCarotenoidsMilkFruitAscorbic acidChristian ministryGeneral Agricultural and Biological SciencesBiological availabilitydescription
A study was made of the effect of high-pressure processing (HPP) and thermal treatment (TT) on plant bioactive compounds (tocopherols, carotenoids, and ascorbic acid) in 12 fruit juice-milk beverages and of how the food matrix [whole milk (JW), skimmed milk (JS), and soy milk (JSy)] modulates their bioaccessibility (%). HPP (400 MPa/40 °C/5 min) produced a significant decrease in carotenoid and ascorbic acid bioaccessibility in all three beverages and maintained the bioaccessibility of tocopherols in JW and JS while decreasing it in JSy. TT (90 °C/30 s) produced a significant decrease in tocopherol and carotenoid bioaccessibility in all three beverages and increased the bioaccessibility of ascorbic acid. With regard to the food matrix, α-tocopherol and ascorbic acid bioaccessibility was greatest in JW beverages and lowest in JSy beverages, whereas no significant differences were found among the three beverages in terms of carotenoid bioaccessibility. HPP-treated samples showed higher tocopherol and carotenoid bioaccessibility than TT-treated samples, thus indicating that HPP combined with a milk matrix positively modulates the bioaccessibility of certain types of bioactive components of food, mainly those of a lipophilic nature. © 2012 American Chemical Society.
year | journal | country | edition | language |
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2012-01-01 |