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Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies

[Image: see text] The evolution of drug-resistant viral strains following natural acquisition of resistance mutations is a major obstacle to antiviral therapy. Besides the improper prescription of the currently licensed anti-influenza medications, M2-blockers and neuraminidase inhibitors, to control...

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Autores principales: Hegazy, Akram, Mostafa, Islam, Elshaier, Yaseen A. M. M., Mahmoud, Sara H., Abo Shama, Noura M., Shehata, Mahmoud, Yahya, Galal, Nasr, Nasr Fawzy, El-Halawany, Ali M., Ali, Mohamed Abdelalim, Ali, Mohamed A., Mraheil, Mobarak Abu, El-Shazly, Assem M., Mostafa, Ahmed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670689/
https://www.ncbi.nlm.nih.gov/pubmed/36406485
http://dx.doi.org/10.1021/acsomega.2c04867
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author Hegazy, Akram
Mostafa, Islam
Elshaier, Yaseen A. M. M.
Mahmoud, Sara H.
Abo Shama, Noura M.
Shehata, Mahmoud
Yahya, Galal
Nasr, Nasr Fawzy
El-Halawany, Ali M.
Ali, Mohamed Abdelalim
Ali, Mohamed A.
Mraheil, Mobarak Abu
El-Shazly, Assem M.
Mostafa, Ahmed
author_facet Hegazy, Akram
Mostafa, Islam
Elshaier, Yaseen A. M. M.
Mahmoud, Sara H.
Abo Shama, Noura M.
Shehata, Mahmoud
Yahya, Galal
Nasr, Nasr Fawzy
El-Halawany, Ali M.
Ali, Mohamed Abdelalim
Ali, Mohamed A.
Mraheil, Mobarak Abu
El-Shazly, Assem M.
Mostafa, Ahmed
author_sort Hegazy, Akram
collection PubMed
description [Image: see text] The evolution of drug-resistant viral strains following natural acquisition of resistance mutations is a major obstacle to antiviral therapy. Besides the improper prescription of the currently licensed anti-influenza medications, M2-blockers and neuraminidase inhibitors, to control poultry outbreaks/infections potentiates the emergence of drug-resistant influenza variants. Therefore, there is always a necessity to find out new alternatives with potent activity and high safety. Plant extracts and plant-based chemicals represent a historical antiviral resource with remarkable safety in vitro and in vivo to control the emerging and remerging health threats caused by viral infections. Herein, a panel of purified plant extracts and subsequent plant-derived chemicals were evaluated for their anti-avian influenza activity against zoonotic highly pathogenic influenza A/H5N1 virus. Interestingly, santonica flower extract (Artemisia cina) showed the most promising anti-H5N1 activity with a highly safe half-maximal cytotoxic concentration 50 (CC(50) > 10 mg/mL) and inhibitory concentration 50 (IC(50) of 3.42 μg/mL). To confirm the anti-influenza activity, we assessed the anti-influenza activity of the selected plant extracts against seasonal human influenza A/H1N1 virus and we found that santonica flower extract showed a robust anti-influenza activity that was comparable to the activity against influenza A/H5N1. Furthermore, the mode of action for santonica flower extract with strong inhibitory activity on the abovementioned influenza strains was elucidated, showing a virucidal effect. To go deeper about the activity of the chemometric component of the extract, the major constituent, santonin, was further selected for in vitro screening against influenza A/H5N1 (IC(50) = 1.701 μg/mL) and influenza A/H1N1 (IC(50) = 2.91 μg/mL). The oxygen of carbonyl functionality in the cyclohexene ring succeeded to form a hydrogen bond with the neuraminidase active site. Despite the fact that santonin revealed similarity to both reference neuraminidase inhibitors in forming hydrogen bonds with essential amino acids, it illustrated shape alignment to oseltamivir more than zanamivir according to Tanimoto algorithms. This study highlights the applicability of santonica flower extract as a promising natural antiviral against low and highly pathogenic influenza A viruses.
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spelling pubmed-96706892022-11-18 Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies Hegazy, Akram Mostafa, Islam Elshaier, Yaseen A. M. M. Mahmoud, Sara H. Abo Shama, Noura M. Shehata, Mahmoud Yahya, Galal Nasr, Nasr Fawzy El-Halawany, Ali M. Ali, Mohamed Abdelalim Ali, Mohamed A. Mraheil, Mobarak Abu El-Shazly, Assem M. Mostafa, Ahmed ACS Omega [Image: see text] The evolution of drug-resistant viral strains following natural acquisition of resistance mutations is a major obstacle to antiviral therapy. Besides the improper prescription of the currently licensed anti-influenza medications, M2-blockers and neuraminidase inhibitors, to control poultry outbreaks/infections potentiates the emergence of drug-resistant influenza variants. Therefore, there is always a necessity to find out new alternatives with potent activity and high safety. Plant extracts and plant-based chemicals represent a historical antiviral resource with remarkable safety in vitro and in vivo to control the emerging and remerging health threats caused by viral infections. Herein, a panel of purified plant extracts and subsequent plant-derived chemicals were evaluated for their anti-avian influenza activity against zoonotic highly pathogenic influenza A/H5N1 virus. Interestingly, santonica flower extract (Artemisia cina) showed the most promising anti-H5N1 activity with a highly safe half-maximal cytotoxic concentration 50 (CC(50) > 10 mg/mL) and inhibitory concentration 50 (IC(50) of 3.42 μg/mL). To confirm the anti-influenza activity, we assessed the anti-influenza activity of the selected plant extracts against seasonal human influenza A/H1N1 virus and we found that santonica flower extract showed a robust anti-influenza activity that was comparable to the activity against influenza A/H5N1. Furthermore, the mode of action for santonica flower extract with strong inhibitory activity on the abovementioned influenza strains was elucidated, showing a virucidal effect. To go deeper about the activity of the chemometric component of the extract, the major constituent, santonin, was further selected for in vitro screening against influenza A/H5N1 (IC(50) = 1.701 μg/mL) and influenza A/H1N1 (IC(50) = 2.91 μg/mL). The oxygen of carbonyl functionality in the cyclohexene ring succeeded to form a hydrogen bond with the neuraminidase active site. Despite the fact that santonin revealed similarity to both reference neuraminidase inhibitors in forming hydrogen bonds with essential amino acids, it illustrated shape alignment to oseltamivir more than zanamivir according to Tanimoto algorithms. This study highlights the applicability of santonica flower extract as a promising natural antiviral against low and highly pathogenic influenza A viruses. American Chemical Society 2022-11-02 /pmc/articles/PMC9670689/ /pubmed/36406485 http://dx.doi.org/10.1021/acsomega.2c04867 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Hegazy, Akram
Mostafa, Islam
Elshaier, Yaseen A. M. M.
Mahmoud, Sara H.
Abo Shama, Noura M.
Shehata, Mahmoud
Yahya, Galal
Nasr, Nasr Fawzy
El-Halawany, Ali M.
Ali, Mohamed Abdelalim
Ali, Mohamed A.
Mraheil, Mobarak Abu
El-Shazly, Assem M.
Mostafa, Ahmed
Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title_full Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title_fullStr Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title_full_unstemmed Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title_short Robust Antiviral Activity of Santonica Flower Extract (Artemisia cina) against Avian and Human Influenza A Viruses: In Vitro and Chemoinformatic Studies
title_sort robust antiviral activity of santonica flower extract (artemisia cina) against avian and human influenza a viruses: in vitro and chemoinformatic studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670689/
https://www.ncbi.nlm.nih.gov/pubmed/36406485
http://dx.doi.org/10.1021/acsomega.2c04867
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