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Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins

The objective of this study is to encapsulate flavonoids from yellow onion skins in whey protein isolates (WPI) and xylose (X), by Maillard-based conjugates, as an approach to improve the ability to entrap flavonoids and to develop powders with enhanced antioxidant activity. WPI (0.6%, w/v) was conj...

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Autores principales: Milea, Ștefania Adelina, Aprodu, Iuliana, Enachi, Elena, Barbu, Vasilica, Râpeanu, Gabriela, Bahrim, Gabriela Elena, Stănciuc, Nicoleta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615060/
https://www.ncbi.nlm.nih.gov/pubmed/34829579
http://dx.doi.org/10.3390/antiox10111708
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author Milea, Ștefania Adelina
Aprodu, Iuliana
Enachi, Elena
Barbu, Vasilica
Râpeanu, Gabriela
Bahrim, Gabriela Elena
Stănciuc, Nicoleta
author_facet Milea, Ștefania Adelina
Aprodu, Iuliana
Enachi, Elena
Barbu, Vasilica
Râpeanu, Gabriela
Bahrim, Gabriela Elena
Stănciuc, Nicoleta
author_sort Milea, Ștefania Adelina
collection PubMed
description The objective of this study is to encapsulate flavonoids from yellow onion skins in whey protein isolates (WPI) and xylose (X), by Maillard-based conjugates, as an approach to improve the ability to entrap flavonoids and to develop powders with enhanced antioxidant activity. WPI (0.6%, w/v) was conjugated to X (0.3%, w/v) through the Maillard reaction at 90 °C for 120 min, in the presence of a flavonoid-enriched extract. Two variants of powders were obtained by freeze-drying. The glycation of WPI allowed a better encapsulation efficiency, up to 90.53 ± 0.29%, corresponding to a grafting degree of 30.38 ± 1.55%. The molecular modelling approach was used to assess the impact of X interactions with α-lactalbumin and β-lactoglobulin on the ability of these proteins to bind the main flavonoids from the yellow onion skins. The results showed that X might compete with quercetin glucosides to bind with α-lactalbumin. No interference was found in the case of β-lactoglobulin. The microstructural appearance of the powders revealed finer spherosomes in powder with WPI–X conjugates via the Maillard reaction. The powders were added to nachos, followed by a phytochemical characterization, in order to test their potential added value. An increase in antioxidant activity was observed, with no significant changes during storage.
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spelling pubmed-86150602021-11-26 Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins Milea, Ștefania Adelina Aprodu, Iuliana Enachi, Elena Barbu, Vasilica Râpeanu, Gabriela Bahrim, Gabriela Elena Stănciuc, Nicoleta Antioxidants (Basel) Article The objective of this study is to encapsulate flavonoids from yellow onion skins in whey protein isolates (WPI) and xylose (X), by Maillard-based conjugates, as an approach to improve the ability to entrap flavonoids and to develop powders with enhanced antioxidant activity. WPI (0.6%, w/v) was conjugated to X (0.3%, w/v) through the Maillard reaction at 90 °C for 120 min, in the presence of a flavonoid-enriched extract. Two variants of powders were obtained by freeze-drying. The glycation of WPI allowed a better encapsulation efficiency, up to 90.53 ± 0.29%, corresponding to a grafting degree of 30.38 ± 1.55%. The molecular modelling approach was used to assess the impact of X interactions with α-lactalbumin and β-lactoglobulin on the ability of these proteins to bind the main flavonoids from the yellow onion skins. The results showed that X might compete with quercetin glucosides to bind with α-lactalbumin. No interference was found in the case of β-lactoglobulin. The microstructural appearance of the powders revealed finer spherosomes in powder with WPI–X conjugates via the Maillard reaction. The powders were added to nachos, followed by a phytochemical characterization, in order to test their potential added value. An increase in antioxidant activity was observed, with no significant changes during storage. MDPI 2021-10-27 /pmc/articles/PMC8615060/ /pubmed/34829579 http://dx.doi.org/10.3390/antiox10111708 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Milea, Ștefania Adelina
Aprodu, Iuliana
Enachi, Elena
Barbu, Vasilica
Râpeanu, Gabriela
Bahrim, Gabriela Elena
Stănciuc, Nicoleta
Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title_full Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title_fullStr Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title_full_unstemmed Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title_short Whey Protein Isolate-Xylose Maillard-Based Conjugates with Tailored Microencapsulation Capacity of Flavonoids from Yellow Onions Skins
title_sort whey protein isolate-xylose maillard-based conjugates with tailored microencapsulation capacity of flavonoids from yellow onions skins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615060/
https://www.ncbi.nlm.nih.gov/pubmed/34829579
http://dx.doi.org/10.3390/antiox10111708
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