Cargando…

A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19

The encapsulation mode of dexamethasone (Dex) into the cavity of β-cyclodextrin (β-CD), as well as its potential as an inhibitor of the COVID-19 main protease, were investigated using density functional theory with the recent dispersion corrections D4 and molecular docking calculations. Independent...

Descripción completa

Detalles Bibliográficos
Autores principales: Belhocine, Youghourta, Rahali, Seyfeddine, Allal, Hamza, Assaba, Ibtissem Meriem, Ghoniem, Monira Galal, Ali, Fatima Adam Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708408/
https://www.ncbi.nlm.nih.gov/pubmed/34946702
http://dx.doi.org/10.3390/molecules26247622
_version_ 1784622677328134144
author Belhocine, Youghourta
Rahali, Seyfeddine
Allal, Hamza
Assaba, Ibtissem Meriem
Ghoniem, Monira Galal
Ali, Fatima Adam Mohamed
author_facet Belhocine, Youghourta
Rahali, Seyfeddine
Allal, Hamza
Assaba, Ibtissem Meriem
Ghoniem, Monira Galal
Ali, Fatima Adam Mohamed
author_sort Belhocine, Youghourta
collection PubMed
description The encapsulation mode of dexamethasone (Dex) into the cavity of β-cyclodextrin (β-CD), as well as its potential as an inhibitor of the COVID-19 main protease, were investigated using density functional theory with the recent dispersion corrections D4 and molecular docking calculations. Independent gradient model and natural bond orbital approaches allowed for the characterization of the host–guest interactions in the studied systems. Structural and energetic computation results revealed that hydrogen bonds and van der Waals interactions played significant roles in the stabilization of the formed Dex@β-CD complex. The complexation energy significantly decreased from −179.50 kJ/mol in the gas phase to −74.14 kJ/mol in the aqueous phase. A molecular docking study was performed to investigate the inhibitory activity of dexamethasone against the COVID-19 target protein (PDB ID: 6LU7). The dexamethasone showed potential therapeutic activity as a SARS CoV-2 main protease inhibitor due to its strong binding to the active sites of the protein target, with predicted free energy of binding values of −29.97 and −32.19 kJ/mol as calculated from AutoDock4 and AutoDock Vina, respectively. This study was intended to explore the potential use of the Dex@β-CD complex in drug delivery to enhance dexamethasone dissolution, thus improving its bioavailability and reducing its side effects.
format Online
Article
Text
id pubmed-8708408
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87084082021-12-25 A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19 Belhocine, Youghourta Rahali, Seyfeddine Allal, Hamza Assaba, Ibtissem Meriem Ghoniem, Monira Galal Ali, Fatima Adam Mohamed Molecules Article The encapsulation mode of dexamethasone (Dex) into the cavity of β-cyclodextrin (β-CD), as well as its potential as an inhibitor of the COVID-19 main protease, were investigated using density functional theory with the recent dispersion corrections D4 and molecular docking calculations. Independent gradient model and natural bond orbital approaches allowed for the characterization of the host–guest interactions in the studied systems. Structural and energetic computation results revealed that hydrogen bonds and van der Waals interactions played significant roles in the stabilization of the formed Dex@β-CD complex. The complexation energy significantly decreased from −179.50 kJ/mol in the gas phase to −74.14 kJ/mol in the aqueous phase. A molecular docking study was performed to investigate the inhibitory activity of dexamethasone against the COVID-19 target protein (PDB ID: 6LU7). The dexamethasone showed potential therapeutic activity as a SARS CoV-2 main protease inhibitor due to its strong binding to the active sites of the protein target, with predicted free energy of binding values of −29.97 and −32.19 kJ/mol as calculated from AutoDock4 and AutoDock Vina, respectively. This study was intended to explore the potential use of the Dex@β-CD complex in drug delivery to enhance dexamethasone dissolution, thus improving its bioavailability and reducing its side effects. MDPI 2021-12-15 /pmc/articles/PMC8708408/ /pubmed/34946702 http://dx.doi.org/10.3390/molecules26247622 Text en © 2021 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
Belhocine, Youghourta
Rahali, Seyfeddine
Allal, Hamza
Assaba, Ibtissem Meriem
Ghoniem, Monira Galal
Ali, Fatima Adam Mohamed
A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title_full A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title_fullStr A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title_full_unstemmed A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title_short A Dispersion Corrected DFT Investigation of the Inclusion Complexation of Dexamethasone with β-Cyclodextrin and Molecular Docking Study of Its Potential Activity against COVID-19
title_sort dispersion corrected dft investigation of the inclusion complexation of dexamethasone with β-cyclodextrin and molecular docking study of its potential activity against covid-19
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708408/
https://www.ncbi.nlm.nih.gov/pubmed/34946702
http://dx.doi.org/10.3390/molecules26247622
work_keys_str_mv AT belhocineyoughourta adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT rahaliseyfeddine adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT allalhamza adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT assabaibtissemmeriem adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT ghoniemmoniragalal adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT alifatimaadammohamed adispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT belhocineyoughourta dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT rahaliseyfeddine dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT allalhamza dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT assabaibtissemmeriem dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT ghoniemmoniragalal dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19
AT alifatimaadammohamed dispersioncorrecteddftinvestigationoftheinclusioncomplexationofdexamethasonewithbcyclodextrinandmoleculardockingstudyofitspotentialactivityagainstcovid19