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Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles

(1) Background: Thymus vulgaris L. (thyme) essential oil (TEO) has gained much attention because of its long history of medicinal usage. However, the lack of precise chemical profiling of the TEO and methods to optimize the bioactivity and delivery of its constituents has hampered its research on qu...

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Autores principales: Nasr, Ali M., Mortagi, Yasmin I., Elwahab, Nashwa H. Abd, Alfaifi, Mohammad Y., Shati, Ali A., Elbehairi, Serag Eldin I., Elshaarawy, Reda F. M., Kamal, Islam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317589/
https://www.ncbi.nlm.nih.gov/pubmed/35890246
http://dx.doi.org/10.3390/pharmaceutics14071350
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author Nasr, Ali M.
Mortagi, Yasmin I.
Elwahab, Nashwa H. Abd
Alfaifi, Mohammad Y.
Shati, Ali A.
Elbehairi, Serag Eldin I.
Elshaarawy, Reda F. M.
Kamal, Islam
author_facet Nasr, Ali M.
Mortagi, Yasmin I.
Elwahab, Nashwa H. Abd
Alfaifi, Mohammad Y.
Shati, Ali A.
Elbehairi, Serag Eldin I.
Elshaarawy, Reda F. M.
Kamal, Islam
author_sort Nasr, Ali M.
collection PubMed
description (1) Background: Thymus vulgaris L. (thyme) essential oil (TEO) has gained much attention because of its long history of medicinal usage. However, the lack of precise chemical profiling of the TEO and methods to optimize the bioactivity and delivery of its constituents has hampered its research on quality control and biological function; (2) Methods: The current study aimed to analyze the TEO’s chemical composition using the GC-MS method and identify its key components. Another objective of this work is to study the impact of the protective layer of amphiphilic oligochitosan (AOC) on the physicochemical stability and transdermal potentials of TEO multilayer nanoemulsions formulated by the incorporation of TEO, Tween80, lecithin (Lec), and AOC; (3) Results: The AOC protective layer significantly improved the stability of TEO-based NEs as revealed by the constancy of their physicochemical properties (particle size and zeta potential) during storage for a week. Excessive fine-tuning of thyme extract NEs and the AOC protective layer’s persistent positive charge have been contributed to the thyme extract’s improved anti-inflammatory, transdermal, and anti-melanoma potentials; (4) Conclusions: the AOC-coated NEs could offer novel multifunctional nanoplatforms for effective transdermal delivery of lipophilic bioactive materials.
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spelling pubmed-93175892022-07-27 Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles Nasr, Ali M. Mortagi, Yasmin I. Elwahab, Nashwa H. Abd Alfaifi, Mohammad Y. Shati, Ali A. Elbehairi, Serag Eldin I. Elshaarawy, Reda F. M. Kamal, Islam Pharmaceutics Article (1) Background: Thymus vulgaris L. (thyme) essential oil (TEO) has gained much attention because of its long history of medicinal usage. However, the lack of precise chemical profiling of the TEO and methods to optimize the bioactivity and delivery of its constituents has hampered its research on quality control and biological function; (2) Methods: The current study aimed to analyze the TEO’s chemical composition using the GC-MS method and identify its key components. Another objective of this work is to study the impact of the protective layer of amphiphilic oligochitosan (AOC) on the physicochemical stability and transdermal potentials of TEO multilayer nanoemulsions formulated by the incorporation of TEO, Tween80, lecithin (Lec), and AOC; (3) Results: The AOC protective layer significantly improved the stability of TEO-based NEs as revealed by the constancy of their physicochemical properties (particle size and zeta potential) during storage for a week. Excessive fine-tuning of thyme extract NEs and the AOC protective layer’s persistent positive charge have been contributed to the thyme extract’s improved anti-inflammatory, transdermal, and anti-melanoma potentials; (4) Conclusions: the AOC-coated NEs could offer novel multifunctional nanoplatforms for effective transdermal delivery of lipophilic bioactive materials. MDPI 2022-06-25 /pmc/articles/PMC9317589/ /pubmed/35890246 http://dx.doi.org/10.3390/pharmaceutics14071350 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
Nasr, Ali M.
Mortagi, Yasmin I.
Elwahab, Nashwa H. Abd
Alfaifi, Mohammad Y.
Shati, Ali A.
Elbehairi, Serag Eldin I.
Elshaarawy, Reda F. M.
Kamal, Islam
Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title_full Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title_fullStr Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title_full_unstemmed Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title_short Upgrading the Transdermal Biomedical Capabilities of Thyme Essential Oil Nanoemulsions Using Amphiphilic Oligochitosan Vehicles
title_sort upgrading the transdermal biomedical capabilities of thyme essential oil nanoemulsions using amphiphilic oligochitosan vehicles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317589/
https://www.ncbi.nlm.nih.gov/pubmed/35890246
http://dx.doi.org/10.3390/pharmaceutics14071350
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