Cargando…

Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling

Essential oils (EOs) are primarily isolated from medicinal plants and possess various biological properties. However, their low water solubility and volatility substantially limit their application potential. Therefore, the aim of the current study was to improve the solubility and stability of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Hong-Ning, Jiang, Xiao-Xia, Naeem, Abid, Chen, Fu-Cai, Wang, Lu, Liu, Yan-Xia, Li, Zhe, Ming, Liang-Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822264/
https://www.ncbi.nlm.nih.gov/pubmed/36615232
http://dx.doi.org/10.3390/molecules28010037
_version_ 1784865903378169856
author Liu, Hong-Ning
Jiang, Xiao-Xia
Naeem, Abid
Chen, Fu-Cai
Wang, Lu
Liu, Yan-Xia
Li, Zhe
Ming, Liang-Shan
author_facet Liu, Hong-Ning
Jiang, Xiao-Xia
Naeem, Abid
Chen, Fu-Cai
Wang, Lu
Liu, Yan-Xia
Li, Zhe
Ming, Liang-Shan
author_sort Liu, Hong-Ning
collection PubMed
description Essential oils (EOs) are primarily isolated from medicinal plants and possess various biological properties. However, their low water solubility and volatility substantially limit their application potential. Therefore, the aim of the current study was to improve the solubility and stability of the Mosla Chinensis (M. Chinensis) EO by forming an inclusion complex (IC) with β-cyclodextrin (β-CD). Furthermore, the IC formation process was investigated using experimental techniques and molecular modeling. The major components of M. Chinensis ‘Jiangxiangru’ EOs were carvacrol, thymol, o-cymene, and terpinene, and its IC with β-CD were prepared using the ultrasonication method. Multivariable optimization was studied using a Plackett-Burman design (step 1, identifying key parameters) followed by a central composite design for optimization of the parameters (step 2, optimizing the key parameters). SEM, FT-IR, TGA, and dissolution experiments were performed to analyze the physicochemical properties of the ICs. In addition, the interaction between EO and β-CD was further investigated using phase solubility, molecular docking, and molecular simulation studies. The results showed that the optimal encapsulation efficiency and loading capacity of EO in the ICs were 86.17% and 8.92%, respectively. Results of physicochemical properties were different after being encapsulated, indicating that the ICs had been successfully fabricated. Additionally, molecular docking and dynamics simulation showed that β-CD could encapsulate the EO component (carvacrol) via noncovalent interactions. In conclusion, a comprehensive methodology was developed for determining key parameters under multivariate conditions by utilizing two-step optimization experiments to obtain ICs of EO with β-CD. Furthermore, molecular modeling was used to study the mechanisms involved in molecular inclusion complexation.
format Online
Article
Text
id pubmed-9822264
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98222642023-01-07 Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling Liu, Hong-Ning Jiang, Xiao-Xia Naeem, Abid Chen, Fu-Cai Wang, Lu Liu, Yan-Xia Li, Zhe Ming, Liang-Shan Molecules Article Essential oils (EOs) are primarily isolated from medicinal plants and possess various biological properties. However, their low water solubility and volatility substantially limit their application potential. Therefore, the aim of the current study was to improve the solubility and stability of the Mosla Chinensis (M. Chinensis) EO by forming an inclusion complex (IC) with β-cyclodextrin (β-CD). Furthermore, the IC formation process was investigated using experimental techniques and molecular modeling. The major components of M. Chinensis ‘Jiangxiangru’ EOs were carvacrol, thymol, o-cymene, and terpinene, and its IC with β-CD were prepared using the ultrasonication method. Multivariable optimization was studied using a Plackett-Burman design (step 1, identifying key parameters) followed by a central composite design for optimization of the parameters (step 2, optimizing the key parameters). SEM, FT-IR, TGA, and dissolution experiments were performed to analyze the physicochemical properties of the ICs. In addition, the interaction between EO and β-CD was further investigated using phase solubility, molecular docking, and molecular simulation studies. The results showed that the optimal encapsulation efficiency and loading capacity of EO in the ICs were 86.17% and 8.92%, respectively. Results of physicochemical properties were different after being encapsulated, indicating that the ICs had been successfully fabricated. Additionally, molecular docking and dynamics simulation showed that β-CD could encapsulate the EO component (carvacrol) via noncovalent interactions. In conclusion, a comprehensive methodology was developed for determining key parameters under multivariate conditions by utilizing two-step optimization experiments to obtain ICs of EO with β-CD. Furthermore, molecular modeling was used to study the mechanisms involved in molecular inclusion complexation. MDPI 2022-12-21 /pmc/articles/PMC9822264/ /pubmed/36615232 http://dx.doi.org/10.3390/molecules28010037 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
Liu, Hong-Ning
Jiang, Xiao-Xia
Naeem, Abid
Chen, Fu-Cai
Wang, Lu
Liu, Yan-Xia
Li, Zhe
Ming, Liang-Shan
Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title_full Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title_fullStr Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title_full_unstemmed Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title_short Fabrication and Characterization of β-Cyclodextrin/Mosla Chinensis Essential Oil Inclusion Complexes: Experimental Design and Molecular Modeling
title_sort fabrication and characterization of β-cyclodextrin/mosla chinensis essential oil inclusion complexes: experimental design and molecular modeling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822264/
https://www.ncbi.nlm.nih.gov/pubmed/36615232
http://dx.doi.org/10.3390/molecules28010037
work_keys_str_mv AT liuhongning fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT jiangxiaoxia fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT naeemabid fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT chenfucai fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT wanglu fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT liuyanxia fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT lizhe fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling
AT mingliangshan fabricationandcharacterizationofbcyclodextrinmoslachinensisessentialoilinclusioncomplexesexperimentaldesignandmolecularmodeling