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Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2
Although World Health Organization-approved emergency vaccines are available in many countries, the mortality rate from COVID-19 remains high due to the fourth or fifth wave and the delta variant of the coronavirus. Thus, an effective mechanistic investigation in treating this disease is urgently ne...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Author(s). Published by Elsevier B.V. on behalf of King Saud University.
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8632739/ https://www.ncbi.nlm.nih.gov/pubmed/34909068 http://dx.doi.org/10.1016/j.arabjc.2021.103600 |
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author | Kumar Paul, Gobindo Mahmud, Shafi Aldahish, Afaf A Afroze, Mirola Biswas, Suvro Briti Ray Gupta, Swagota Hasan Razu, Mahmudul Zaman, Shahriar Salah Uddin, Md. Nahari, Mohammed H Merae Alshahrani, Mohammed Abdul Rahman Alshahrani, Mohammed Khan, Mala Abu Saleh, Md. |
author_facet | Kumar Paul, Gobindo Mahmud, Shafi Aldahish, Afaf A Afroze, Mirola Biswas, Suvro Briti Ray Gupta, Swagota Hasan Razu, Mahmudul Zaman, Shahriar Salah Uddin, Md. Nahari, Mohammed H Merae Alshahrani, Mohammed Abdul Rahman Alshahrani, Mohammed Khan, Mala Abu Saleh, Md. |
author_sort | Kumar Paul, Gobindo |
collection | PubMed |
description | Although World Health Organization-approved emergency vaccines are available in many countries, the mortality rate from COVID-19 remains high due to the fourth or fifth wave and the delta variant of the coronavirus. Thus, an effective mechanistic investigation in treating this disease is urgently needed. In this work, we extracted phytochemicals from two mangrove plants, Pistacia integerrima and Pandanus odorifer, assessing their potential actions against the receptor-binding domain (RBD) of the spike protein of SARS-CoV-2. The antioxidant activities of Pistacia integerrima leaves and fruits were 142.10 and 97.13 µg/mL, respectively, whereas Pandanus odorifer leaves and fruits were 112.50 and 292.71 µg/mL, respectively. Furthermore, leaf extracts from both plants had lower cytotoxicity against Artemia salina than fruit extracts. Gas chromatography-mass spectrometry analysis revealed a total of 145 potential phytochemicals from these extracts. Three phytochemicals, 28-demethyl-beta-amyrone, 24-Noroleana-3,12-diene, and stigmasterol, displayed binding free energy values of − 8.3, −7.5, and − 8.1 Kcal/mol, respectively, in complexes with the spike protein of SARS-CoV-2. The root-mean-square deviation, solvent-accessible surface area, radius of gyration, root-mean-square fluctuations, and hydrogen bonds were used to ensure the binding stability of the docked complexes in the atomistic simulation. Thus, wet-lab validations are necessary to support these findings. |
format | Online Article Text |
id | pubmed-8632739 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | The Author(s). Published by Elsevier B.V. on behalf of King Saud University. |
record_format | MEDLINE/PubMed |
spelling | pubmed-86327392021-12-01 Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 Kumar Paul, Gobindo Mahmud, Shafi Aldahish, Afaf A Afroze, Mirola Biswas, Suvro Briti Ray Gupta, Swagota Hasan Razu, Mahmudul Zaman, Shahriar Salah Uddin, Md. Nahari, Mohammed H Merae Alshahrani, Mohammed Abdul Rahman Alshahrani, Mohammed Khan, Mala Abu Saleh, Md. Arab J Chem Original Article Although World Health Organization-approved emergency vaccines are available in many countries, the mortality rate from COVID-19 remains high due to the fourth or fifth wave and the delta variant of the coronavirus. Thus, an effective mechanistic investigation in treating this disease is urgently needed. In this work, we extracted phytochemicals from two mangrove plants, Pistacia integerrima and Pandanus odorifer, assessing their potential actions against the receptor-binding domain (RBD) of the spike protein of SARS-CoV-2. The antioxidant activities of Pistacia integerrima leaves and fruits were 142.10 and 97.13 µg/mL, respectively, whereas Pandanus odorifer leaves and fruits were 112.50 and 292.71 µg/mL, respectively. Furthermore, leaf extracts from both plants had lower cytotoxicity against Artemia salina than fruit extracts. Gas chromatography-mass spectrometry analysis revealed a total of 145 potential phytochemicals from these extracts. Three phytochemicals, 28-demethyl-beta-amyrone, 24-Noroleana-3,12-diene, and stigmasterol, displayed binding free energy values of − 8.3, −7.5, and − 8.1 Kcal/mol, respectively, in complexes with the spike protein of SARS-CoV-2. The root-mean-square deviation, solvent-accessible surface area, radius of gyration, root-mean-square fluctuations, and hydrogen bonds were used to ensure the binding stability of the docked complexes in the atomistic simulation. Thus, wet-lab validations are necessary to support these findings. The Author(s). Published by Elsevier B.V. on behalf of King Saud University. 2022-02 2021-12-01 /pmc/articles/PMC8632739/ /pubmed/34909068 http://dx.doi.org/10.1016/j.arabjc.2021.103600 Text en © 2021 The Author(s) Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active. |
spellingShingle | Original Article Kumar Paul, Gobindo Mahmud, Shafi Aldahish, Afaf A Afroze, Mirola Biswas, Suvro Briti Ray Gupta, Swagota Hasan Razu, Mahmudul Zaman, Shahriar Salah Uddin, Md. Nahari, Mohammed H Merae Alshahrani, Mohammed Abdul Rahman Alshahrani, Mohammed Khan, Mala Abu Saleh, Md. Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title | Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title_full | Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title_fullStr | Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title_full_unstemmed | Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title_short | Computational screening and biochemical analysis of Pistacia integerrima and Pandanus odorifer plants to find effective inhibitors against Receptor-Binding domain (RBD) of the spike protein of SARS-Cov-2 |
title_sort | computational screening and biochemical analysis of pistacia integerrima and pandanus odorifer plants to find effective inhibitors against receptor-binding domain (rbd) of the spike protein of sars-cov-2 |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8632739/ https://www.ncbi.nlm.nih.gov/pubmed/34909068 http://dx.doi.org/10.1016/j.arabjc.2021.103600 |
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