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Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace

In this study, high-value, carotenoid-rich oleoresin obtained by supercritical carbon dioxide (SFE-CO(2)) extraction was used to develop five variants of microencapsulated delivery system, based on whey proteins isolate (WPI), in combination with inulin (I), pectin (P) or lactose (L). The WPI:I and...

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Autores principales: Mihalcea, Liliana, Aprodu, Iuliana, Dumitrașcu, Loredana, Cucolea, Elena Iulia, Dănilă, George-Mădălin, Enachi, Elena, Barbu, Vasilica, Constantin, Oana Emilia, Grigore-Gurgu, Leontina, Stănciuc, Nicoleta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8707564/
https://www.ncbi.nlm.nih.gov/pubmed/34959618
http://dx.doi.org/10.3390/ph14121217
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author Mihalcea, Liliana
Aprodu, Iuliana
Dumitrașcu, Loredana
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Enachi, Elena
Barbu, Vasilica
Constantin, Oana Emilia
Grigore-Gurgu, Leontina
Stănciuc, Nicoleta
author_facet Mihalcea, Liliana
Aprodu, Iuliana
Dumitrașcu, Loredana
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Enachi, Elena
Barbu, Vasilica
Constantin, Oana Emilia
Grigore-Gurgu, Leontina
Stănciuc, Nicoleta
author_sort Mihalcea, Liliana
collection PubMed
description In this study, high-value, carotenoid-rich oleoresin obtained by supercritical carbon dioxide (SFE-CO(2)) extraction was used to develop five variants of microencapsulated delivery system, based on whey proteins isolate (WPI), in combination with inulin (I), pectin (P) or lactose (L). The WPI:I and WPI:L variants were also obtained by conjugation via Maillard reaction. The microencapsulation of the SFE-CO(2) sea buckthorn pomace oleoresin was performed by emulsion, complex coacervation and freeze-drying, which allowed for the obtaining of five powders, with different phytochemicals profile. The WPI:I conjugate showed the highest level of total carotenoids, whereas the counterpart WPI:L showed the highest content in linoleic acid (46 ± 1 mg/g) and palmitoleic acid (20.0 ± 0.5 mg/g). The β-tocopherol and β-sitosterol were identified in all variants, with the highest content in the conjugated WPI:L variant. Both WPI:L and WPI:I conjugate samples presented similar IC50 value for inhibitory activity against pancreatic lipase and α-amylase; the highest activity was observed for the conjugated WPI:I. The WPI:P combination allowed the highest release of carotenoids in the gastro-intestinal environment. All the powders exhibited poor flowing properties, whereas water activity (a(w)) ranged from 0.084 ± 0.03 to 0.241 ± 0.003, suggesting that all variants are stable during storage. In case of solubility, significant differences were noticed between non-heated and glycated samples, with the highest value for the WPI:I and the lowest for glycated WPI:I. The structural analysis revealed the presence of finer spherosomes in WPI:I and WPI:L, with a reduced clustering capacity, whereas the particles in the conjugated samples were more uniform and aggregated into a three-dimensional network.
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spelling pubmed-87075642021-12-25 Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace Mihalcea, Liliana Aprodu, Iuliana Dumitrașcu, Loredana Cucolea, Elena Iulia Dănilă, George-Mădălin Enachi, Elena Barbu, Vasilica Constantin, Oana Emilia Grigore-Gurgu, Leontina Stănciuc, Nicoleta Pharmaceuticals (Basel) Article In this study, high-value, carotenoid-rich oleoresin obtained by supercritical carbon dioxide (SFE-CO(2)) extraction was used to develop five variants of microencapsulated delivery system, based on whey proteins isolate (WPI), in combination with inulin (I), pectin (P) or lactose (L). The WPI:I and WPI:L variants were also obtained by conjugation via Maillard reaction. The microencapsulation of the SFE-CO(2) sea buckthorn pomace oleoresin was performed by emulsion, complex coacervation and freeze-drying, which allowed for the obtaining of five powders, with different phytochemicals profile. The WPI:I conjugate showed the highest level of total carotenoids, whereas the counterpart WPI:L showed the highest content in linoleic acid (46 ± 1 mg/g) and palmitoleic acid (20.0 ± 0.5 mg/g). The β-tocopherol and β-sitosterol were identified in all variants, with the highest content in the conjugated WPI:L variant. Both WPI:L and WPI:I conjugate samples presented similar IC50 value for inhibitory activity against pancreatic lipase and α-amylase; the highest activity was observed for the conjugated WPI:I. The WPI:P combination allowed the highest release of carotenoids in the gastro-intestinal environment. All the powders exhibited poor flowing properties, whereas water activity (a(w)) ranged from 0.084 ± 0.03 to 0.241 ± 0.003, suggesting that all variants are stable during storage. In case of solubility, significant differences were noticed between non-heated and glycated samples, with the highest value for the WPI:I and the lowest for glycated WPI:I. The structural analysis revealed the presence of finer spherosomes in WPI:I and WPI:L, with a reduced clustering capacity, whereas the particles in the conjugated samples were more uniform and aggregated into a three-dimensional network. MDPI 2021-11-24 /pmc/articles/PMC8707564/ /pubmed/34959618 http://dx.doi.org/10.3390/ph14121217 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
Mihalcea, Liliana
Aprodu, Iuliana
Dumitrașcu, Loredana
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Enachi, Elena
Barbu, Vasilica
Constantin, Oana Emilia
Grigore-Gurgu, Leontina
Stănciuc, Nicoleta
Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title_full Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title_fullStr Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title_full_unstemmed Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title_short Whey Proteins Isolate-Based Biopolymeric Combinations to Microencapsulate Supercritical Fluid Extracted Oleoresins from Sea Buckthorn Pomace
title_sort whey proteins isolate-based biopolymeric combinations to microencapsulate supercritical fluid extracted oleoresins from sea buckthorn pomace
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8707564/
https://www.ncbi.nlm.nih.gov/pubmed/34959618
http://dx.doi.org/10.3390/ph14121217
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