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Phytochemicals As a Potential Inhibitor of COVID-19: An In-Silico Perspective.

Authors :
Jamhour, Rasheed M. A. Q.
Al-Nadaf, Afaf H.
Wedian, Fadel
Al-Mazaideh, Ghassab M.
Mustafa, Morad
Huneif, Mohammed Ayed
Mahmoud, Sabry Younis
Farrag, Eman Saleh
Al-Rimawi, Fuad
Salman, Haya Ayyal
Alqudah, Ali Abdallah
Alakhras, Fadi
Source :
Russian Journal of Physical Chemistry; Jul2022, Vol. 96 Issue 7, p1589-1597, 9p
Publication Year :
2022

Abstract

The current research has centered on the use of pharmacological and binding affinity methods to test the 36 compounds as bioactive constituents' inhibitors for COVID-19. Six compounds out of 36 phytoconstituents (rutin, quercetin, catechin gallate, rhamnetin, campesterol and stigmasterol) have demonstrated outstanding molecular docking and drug-like properties as HIV inhibitors Lopinavir and Indinavir. Interestingly, the lowest binding energies (LBE) and the inhibition constant (K<subscript>i</subscript>) have showed that these compounds are able to bind to the P-glycoprotein substrate of 3CL<superscript>pro</superscript> and Nsp15. Interestingly, rutin has been found to be an excellent potential inhibitor for COVID-19 proteins because it has the best LBE score and K<subscript>i</subscript> value than those of other compounds, and of its ability to form strong H-bonds with COVID-19 proteins. The compounds that come next to the rutin compound are stigmasterol and campesterol. As a result, these compounds are considered possible novel inhibitors of COVID-19. In order to validate the computational results, more in vitro and in vivo investigations are required to support the findings of this research. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00360244
Volume :
96
Issue :
7
Database :
Complementary Index
Journal :
Russian Journal of Physical Chemistry
Publication Type :
Academic Journal
Accession number :
158652684
Full Text :
https://doi.org/10.1134/S0036024422070251