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CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications

The supercritical fluids extraction (SFE) was used to extract the oleoresins from rosehip, followed by an in-depth phytochemical analysis and the development of two design-customized powders for different food and pharmaceutical applications. The SFE experiments allowed obtaining an oleoresins extra...

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Autores principales: Mihalcea, Liliana, Păcularu-Burada, Bogdan, Milea, Ștefania-Adelina, Aprodu, Iuliana, Condurache (Lazăr), Nina-Nicoleta, Cucolea, Elena Iulia, Dănilă, George-Mădălin, Cîrciumaru, Adrian, Nicoleta, Stănciuc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926094/
https://www.ncbi.nlm.nih.gov/pubmed/36798950
http://dx.doi.org/10.1016/j.crfs.2023.100449
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author Mihalcea, Liliana
Păcularu-Burada, Bogdan
Milea, Ștefania-Adelina
Aprodu, Iuliana
Condurache (Lazăr), Nina-Nicoleta
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Cîrciumaru, Adrian
Nicoleta, Stănciuc
author_facet Mihalcea, Liliana
Păcularu-Burada, Bogdan
Milea, Ștefania-Adelina
Aprodu, Iuliana
Condurache (Lazăr), Nina-Nicoleta
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Cîrciumaru, Adrian
Nicoleta, Stănciuc
author_sort Mihalcea, Liliana
collection PubMed
description The supercritical fluids extraction (SFE) was used to extract the oleoresins from rosehip, followed by an in-depth phytochemical analysis and the development of two design-customized powders for different food and pharmaceutical applications. The SFE experiments allowed obtaining an oleoresins extraction yield of 11.85%. Two fractions were separated (S40 and S45), with significantly different phytochemical profile (p < 0.05), highlighting the efficiency of extraction of fatty acids in S40 extract, whereas the extraction of polyphenols, phytosterols, carotenoids and polyphenols was favored in S45 extract. The phytochemical profile revealed that the linoleic acid (C18:2) and α-linolenic acid (C18:3) represented approximatively 82% and 58% from the total fatty acid content in S40 and S45, respectively. α-Tocopherol and γ-tocopherol prevailed in both extract fractions, with a higher concentration in S45 (229.66 mg/g dry matter (DM) and 112.36 mg/g DM, respectively), whereas β-sitosterol was the major phytosterol in S45 fraction (118.75 mg/g DM). The S40 fraction was used to design two microencapsulated powders, by combining emulsification, complex coarcevation and freeze-drying. In order to develop new wall materials, with unique properties, the soy protein isolates were used for cross-linked reactions, by using an approach in one step (transglutaminase mediated) (coded as N) and two-steps (heat-induced and transglutaminase mediated) (coded as T). The N powder showed a better phytochemical content, leading to a higher antioxidant activity (5.27 mM Trolox equivalents/g DM), whereas for variant T, the bioactive were apparently doubled encapsulated.
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spelling pubmed-99260942023-02-15 CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications Mihalcea, Liliana Păcularu-Burada, Bogdan Milea, Ștefania-Adelina Aprodu, Iuliana Condurache (Lazăr), Nina-Nicoleta Cucolea, Elena Iulia Dănilă, George-Mădălin Cîrciumaru, Adrian Nicoleta, Stănciuc Curr Res Food Sci Research Article The supercritical fluids extraction (SFE) was used to extract the oleoresins from rosehip, followed by an in-depth phytochemical analysis and the development of two design-customized powders for different food and pharmaceutical applications. The SFE experiments allowed obtaining an oleoresins extraction yield of 11.85%. Two fractions were separated (S40 and S45), with significantly different phytochemical profile (p < 0.05), highlighting the efficiency of extraction of fatty acids in S40 extract, whereas the extraction of polyphenols, phytosterols, carotenoids and polyphenols was favored in S45 extract. The phytochemical profile revealed that the linoleic acid (C18:2) and α-linolenic acid (C18:3) represented approximatively 82% and 58% from the total fatty acid content in S40 and S45, respectively. α-Tocopherol and γ-tocopherol prevailed in both extract fractions, with a higher concentration in S45 (229.66 mg/g dry matter (DM) and 112.36 mg/g DM, respectively), whereas β-sitosterol was the major phytosterol in S45 fraction (118.75 mg/g DM). The S40 fraction was used to design two microencapsulated powders, by combining emulsification, complex coarcevation and freeze-drying. In order to develop new wall materials, with unique properties, the soy protein isolates were used for cross-linked reactions, by using an approach in one step (transglutaminase mediated) (coded as N) and two-steps (heat-induced and transglutaminase mediated) (coded as T). The N powder showed a better phytochemical content, leading to a higher antioxidant activity (5.27 mM Trolox equivalents/g DM), whereas for variant T, the bioactive were apparently doubled encapsulated. Elsevier 2023-01-23 /pmc/articles/PMC9926094/ /pubmed/36798950 http://dx.doi.org/10.1016/j.crfs.2023.100449 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Mihalcea, Liliana
Păcularu-Burada, Bogdan
Milea, Ștefania-Adelina
Aprodu, Iuliana
Condurache (Lazăr), Nina-Nicoleta
Cucolea, Elena Iulia
Dănilă, George-Mădălin
Cîrciumaru, Adrian
Nicoleta, Stănciuc
CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title_full CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title_fullStr CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title_full_unstemmed CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title_short CO(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
title_sort co(2) supercritical extraction and microencapsulation of oleoresins from rosehip fruits for getting powders with multiple applications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926094/
https://www.ncbi.nlm.nih.gov/pubmed/36798950
http://dx.doi.org/10.1016/j.crfs.2023.100449
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