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Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller

Culture of plant cells or tissues is a scalable, sustainable, and environmentally friendly approach to obtain extracts and secondary metabolites of uniform quality that can be continuously supplied in controlled conditions, independent of geographical and seasonal variations, environmental factors,...

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Autores principales: Perra, Matteo, Fancello, Laura, Castangia, Ines, Allaw, Mohamad, Escribano-Ferrer, Elvira, Peris, José Esteban, Usach, Iris, Manca, Maria Letizia, Koycheva, Ivanka K., Georgiev, Milen I., Manconi, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029676/
https://www.ncbi.nlm.nih.gov/pubmed/35458621
http://dx.doi.org/10.3390/molecules27082423
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author Perra, Matteo
Fancello, Laura
Castangia, Ines
Allaw, Mohamad
Escribano-Ferrer, Elvira
Peris, José Esteban
Usach, Iris
Manca, Maria Letizia
Koycheva, Ivanka K.
Georgiev, Milen I.
Manconi, Maria
author_facet Perra, Matteo
Fancello, Laura
Castangia, Ines
Allaw, Mohamad
Escribano-Ferrer, Elvira
Peris, José Esteban
Usach, Iris
Manca, Maria Letizia
Koycheva, Ivanka K.
Georgiev, Milen I.
Manconi, Maria
author_sort Perra, Matteo
collection PubMed
description Culture of plant cells or tissues is a scalable, sustainable, and environmentally friendly approach to obtain extracts and secondary metabolites of uniform quality that can be continuously supplied in controlled conditions, independent of geographical and seasonal variations, environmental factors, and negative biological influences. In addition, tissues and cells can be extracted/obtained from the by-products of other industrial cultivations such as that of Lavandula angustifolia Miller (L. angustifolia), which is largely cultivated for the collection of flowers. Given that, an extract rich in rosmarinic acid was biotechnologically produced starting from cell suspension of L. angustifolia, which was then loaded in hyalurosomes, special phospholipid vesicles enriched with sodium hyaluronate, which in turn are capable of both immobilizing and stabilizing the system. These vesicles have demonstrated to be good candidates for skin delivery as their high viscosity favors their residence at the application site, thus promoting their interaction with the skin components. The main physico-chemical and technological characteristics of vesicles (i.e., mean diameter, polydispersity index, zeta potential and entrapment efficiency of extract in vesicles) were measured along with their biological properties in vitro: biocompatibility against fibroblasts and ability to protect the cells from oxidative stress induced by hydrogen peroxide. Overall, preliminary results disclosed the promising properties of obtained formulations to be used for the treatment of skin diseases associated with oxidative stress and inflammation.
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spelling pubmed-90296762022-04-23 Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller Perra, Matteo Fancello, Laura Castangia, Ines Allaw, Mohamad Escribano-Ferrer, Elvira Peris, José Esteban Usach, Iris Manca, Maria Letizia Koycheva, Ivanka K. Georgiev, Milen I. Manconi, Maria Molecules Article Culture of plant cells or tissues is a scalable, sustainable, and environmentally friendly approach to obtain extracts and secondary metabolites of uniform quality that can be continuously supplied in controlled conditions, independent of geographical and seasonal variations, environmental factors, and negative biological influences. In addition, tissues and cells can be extracted/obtained from the by-products of other industrial cultivations such as that of Lavandula angustifolia Miller (L. angustifolia), which is largely cultivated for the collection of flowers. Given that, an extract rich in rosmarinic acid was biotechnologically produced starting from cell suspension of L. angustifolia, which was then loaded in hyalurosomes, special phospholipid vesicles enriched with sodium hyaluronate, which in turn are capable of both immobilizing and stabilizing the system. These vesicles have demonstrated to be good candidates for skin delivery as their high viscosity favors their residence at the application site, thus promoting their interaction with the skin components. The main physico-chemical and technological characteristics of vesicles (i.e., mean diameter, polydispersity index, zeta potential and entrapment efficiency of extract in vesicles) were measured along with their biological properties in vitro: biocompatibility against fibroblasts and ability to protect the cells from oxidative stress induced by hydrogen peroxide. Overall, preliminary results disclosed the promising properties of obtained formulations to be used for the treatment of skin diseases associated with oxidative stress and inflammation. MDPI 2022-04-08 /pmc/articles/PMC9029676/ /pubmed/35458621 http://dx.doi.org/10.3390/molecules27082423 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
Perra, Matteo
Fancello, Laura
Castangia, Ines
Allaw, Mohamad
Escribano-Ferrer, Elvira
Peris, José Esteban
Usach, Iris
Manca, Maria Letizia
Koycheva, Ivanka K.
Georgiev, Milen I.
Manconi, Maria
Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title_full Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title_fullStr Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title_full_unstemmed Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title_short Formulation and Testing of Antioxidant and Protective Effect of Hyalurosomes Loading Extract Rich in Rosmarinic Acid Biotechnologically Produced from Lavandula angustifolia Miller
title_sort formulation and testing of antioxidant and protective effect of hyalurosomes loading extract rich in rosmarinic acid biotechnologically produced from lavandula angustifolia miller
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029676/
https://www.ncbi.nlm.nih.gov/pubmed/35458621
http://dx.doi.org/10.3390/molecules27082423
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