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Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties

Magnolia spp. extracts are known for their use in traditional Korean, Chinese, and Japanese medicine in the treatment of gastrointestinal disorders, anxiety, and allergies. Among their main components with pharmacological activity, the most relevant are magnolol and honokiol, which also show antitum...

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Autores principales: Usach, Iris, Alaimo, Alessandro, Fernández, Juan, Ambrosini, Alessandro, Mocini, Sara, Ochiuz, Lacramioara, Peris, José-Esteban
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915353/
https://www.ncbi.nlm.nih.gov/pubmed/33561940
http://dx.doi.org/10.3390/pharmaceutics13020224
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author Usach, Iris
Alaimo, Alessandro
Fernández, Juan
Ambrosini, Alessandro
Mocini, Sara
Ochiuz, Lacramioara
Peris, José-Esteban
author_facet Usach, Iris
Alaimo, Alessandro
Fernández, Juan
Ambrosini, Alessandro
Mocini, Sara
Ochiuz, Lacramioara
Peris, José-Esteban
author_sort Usach, Iris
collection PubMed
description Magnolia spp. extracts are known for their use in traditional Korean, Chinese, and Japanese medicine in the treatment of gastrointestinal disorders, anxiety, and allergies. Among their main components with pharmacological activity, the most relevant are magnolol and honokiol, which also show antitumoral activity. The objectives of this work were to study some physicochemical properties of both substances and their stability under different conditions of temperature, pH, and oxidation. Additionally, liposomes of honokiol (the least stable compound) were formulated and characterized. Both compounds showed pH-dependent solubility, with different solubility–pH profiles. Magnolol showed a lower solubility than honokiol at acidic pH values, but a higher solubility at alkaline pH values. The partition coefficients were similar and relatively high for both compounds (log P(o/w) ≈ 4.5), indicating their lipophilic nature. Honokiol was less stable than magnolol, mainly at neutral and basic pH values. To improve the poor stability of honokiol, it was suitably loaded in liposomes. The obtained liposomes were small in size (175 nm), homogeneous (polydispersity index = 0.17), highly negatively charged (−11 mV), and able to incorporate high amounts of honokiol (entrapment efficiency = 93.4%). The encapsulation of honokiol in liposomes increased its stability only at alkaline pH values.
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spelling pubmed-79153532021-03-01 Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties Usach, Iris Alaimo, Alessandro Fernández, Juan Ambrosini, Alessandro Mocini, Sara Ochiuz, Lacramioara Peris, José-Esteban Pharmaceutics Article Magnolia spp. extracts are known for their use in traditional Korean, Chinese, and Japanese medicine in the treatment of gastrointestinal disorders, anxiety, and allergies. Among their main components with pharmacological activity, the most relevant are magnolol and honokiol, which also show antitumoral activity. The objectives of this work were to study some physicochemical properties of both substances and their stability under different conditions of temperature, pH, and oxidation. Additionally, liposomes of honokiol (the least stable compound) were formulated and characterized. Both compounds showed pH-dependent solubility, with different solubility–pH profiles. Magnolol showed a lower solubility than honokiol at acidic pH values, but a higher solubility at alkaline pH values. The partition coefficients were similar and relatively high for both compounds (log P(o/w) ≈ 4.5), indicating their lipophilic nature. Honokiol was less stable than magnolol, mainly at neutral and basic pH values. To improve the poor stability of honokiol, it was suitably loaded in liposomes. The obtained liposomes were small in size (175 nm), homogeneous (polydispersity index = 0.17), highly negatively charged (−11 mV), and able to incorporate high amounts of honokiol (entrapment efficiency = 93.4%). The encapsulation of honokiol in liposomes increased its stability only at alkaline pH values. MDPI 2021-02-06 /pmc/articles/PMC7915353/ /pubmed/33561940 http://dx.doi.org/10.3390/pharmaceutics13020224 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Usach, Iris
Alaimo, Alessandro
Fernández, Juan
Ambrosini, Alessandro
Mocini, Sara
Ochiuz, Lacramioara
Peris, José-Esteban
Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title_full Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title_fullStr Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title_full_unstemmed Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title_short Magnolol and Honokiol: Two Natural Compounds with Similar Chemical Structure but Different Physicochemical and Stability Properties
title_sort magnolol and honokiol: two natural compounds with similar chemical structure but different physicochemical and stability properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915353/
https://www.ncbi.nlm.nih.gov/pubmed/33561940
http://dx.doi.org/10.3390/pharmaceutics13020224
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