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Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes

Mexican oregano (Lippia graveolens) polyphenols have antioxidant and anti-inflammatory potential, but low bioaccessibility. Therefore, in the present work the micro/nano-encapsulation of these compounds in two different matrixes of chitosan (CS) and chitosan-b-poly(PEGMA(2000)) (CS-b-PPEGMA) is desc...

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Autores principales: Garcia-Carrasco, Melissa, Picos-Corrales, Lorenzo A., Gutiérrez-Grijalva, Erick P., Angulo-Escalante, Miguel A., Licea-Claverie, Angel, Heredia, J. Basilio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9459739/
https://www.ncbi.nlm.nih.gov/pubmed/36080684
http://dx.doi.org/10.3390/polym14173609
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author Garcia-Carrasco, Melissa
Picos-Corrales, Lorenzo A.
Gutiérrez-Grijalva, Erick P.
Angulo-Escalante, Miguel A.
Licea-Claverie, Angel
Heredia, J. Basilio
author_facet Garcia-Carrasco, Melissa
Picos-Corrales, Lorenzo A.
Gutiérrez-Grijalva, Erick P.
Angulo-Escalante, Miguel A.
Licea-Claverie, Angel
Heredia, J. Basilio
author_sort Garcia-Carrasco, Melissa
collection PubMed
description Mexican oregano (Lippia graveolens) polyphenols have antioxidant and anti-inflammatory potential, but low bioaccessibility. Therefore, in the present work the micro/nano-encapsulation of these compounds in two different matrixes of chitosan (CS) and chitosan-b-poly(PEGMA(2000)) (CS-b-PPEGMA) is described and assessed. The particle sizes of matrixes of CS (~955 nm) and CS-b-PPEGMA (~190 nm) increased by 10% and 50%, respectively, when the phenolic compounds were encapsulated, yielding loading efficiencies (LE) between 90–99% and 50–60%, correspondingly. The release profiles in simulated fluids revealed a better control of host–guest interactions by using the CS-b-PPEGMA matrix, reaching phenolic compounds release of 80% after 24 h, while single CS retained the guest compounds. The total reducing capacity (TRC) and Trolox equivalent antioxidant capacity (TEAC) of the phenolic compounds (PPHs) are protected and increased (more than five times) when they are encapsulated. Thus, this investigation provides a standard encapsulation strategy and relevant results regarding nutraceuticals stabilization and their improved bioaccessibility.
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spelling pubmed-94597392022-09-10 Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes Garcia-Carrasco, Melissa Picos-Corrales, Lorenzo A. Gutiérrez-Grijalva, Erick P. Angulo-Escalante, Miguel A. Licea-Claverie, Angel Heredia, J. Basilio Polymers (Basel) Article Mexican oregano (Lippia graveolens) polyphenols have antioxidant and anti-inflammatory potential, but low bioaccessibility. Therefore, in the present work the micro/nano-encapsulation of these compounds in two different matrixes of chitosan (CS) and chitosan-b-poly(PEGMA(2000)) (CS-b-PPEGMA) is described and assessed. The particle sizes of matrixes of CS (~955 nm) and CS-b-PPEGMA (~190 nm) increased by 10% and 50%, respectively, when the phenolic compounds were encapsulated, yielding loading efficiencies (LE) between 90–99% and 50–60%, correspondingly. The release profiles in simulated fluids revealed a better control of host–guest interactions by using the CS-b-PPEGMA matrix, reaching phenolic compounds release of 80% after 24 h, while single CS retained the guest compounds. The total reducing capacity (TRC) and Trolox equivalent antioxidant capacity (TEAC) of the phenolic compounds (PPHs) are protected and increased (more than five times) when they are encapsulated. Thus, this investigation provides a standard encapsulation strategy and relevant results regarding nutraceuticals stabilization and their improved bioaccessibility. MDPI 2022-09-01 /pmc/articles/PMC9459739/ /pubmed/36080684 http://dx.doi.org/10.3390/polym14173609 Text en © 2022 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
Garcia-Carrasco, Melissa
Picos-Corrales, Lorenzo A.
Gutiérrez-Grijalva, Erick P.
Angulo-Escalante, Miguel A.
Licea-Claverie, Angel
Heredia, J. Basilio
Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title_full Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title_fullStr Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title_full_unstemmed Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title_short Loading and Release of Phenolic Compounds Present in Mexican Oregano (Lippia graveolens) in Different Chitosan Bio-Polymeric Cationic Matrixes
title_sort loading and release of phenolic compounds present in mexican oregano (lippia graveolens) in different chitosan bio-polymeric cationic matrixes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9459739/
https://www.ncbi.nlm.nih.gov/pubmed/36080684
http://dx.doi.org/10.3390/polym14173609
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