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Design and Development of New Inhibitors Against Breast Cancer, Monkeypox and Marburg Virus by Modification of Natural Fisetin via In Silico and SAR Studies

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dc.contributor.author Akash, Shopnil
dc.contributor.author Rahman, Md Mominur
dc.contributor.author Lima, Clara Mariana Gonçalves
dc.contributor.author Emran, Talha Bin
dc.contributor.author Sultana, Sharifa
dc.contributor.author Naz, Sumaira
dc.contributor.author Aziz, Tariq
dc.contributor.author Alharbi, Metab
dc.contributor.author Alshammari, Abdulrahman
dc.contributor.author Alasmari, Abdullah F.
dc.date.accessioned 2024-05-15T06:01:48Z
dc.date.available 2024-05-15T06:01:48Z
dc.date.issued 2023-09-07
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/12345
dc.description.abstract The natural Fisetin and its derivatives have been shown to have effective bioactivity and strong pharmacological profile, which is continuously drawing the interest of therapeutic applications to the development of new biomolecules against Breast cancer and Monkeypox, and Marburg viral infection, while computational approaches and the study of their structure-activity relationship (SAR) are the most eloquent and reliable platform for performing their hypothetical profile renovation. So, the main perspective of this investigation is to evaluate dual function of Fisetin and its derivatives against both virus and cancerous target. First and foremost, the prediction of activity spectra for materials (PASS) valuation has provided preliminary data on the antiviral, antibacterial, antiparasitic, and anti-cancer possibilities of the mentioned compounds. According to the evidence, PASS predicted scores were shown to perform better in antineoplastic and antiviral than antibacterial, and antiparasitic efficiency; as evidenced by their higher PASS scores in antineoplastic and antiviral drug tests. Breast cancer, Monkeypox, and Marburg virus have been selected as targeted pathogens, and different in silico studies were conducted to determine the dual function of mention derivatives. The "Lipinski five rules," on the other hand, has been subjected to extensive testing for drug-like characteristics. Molecular docking against Breast cancer, Monkeypox, and Marburg virus have been accomplished after confirmation of their bioactivity. The molecular docking evaluation against targeted disease displayed re-markable binding affinity and non-bonding engagement, with most of the results indicating that derivatives are more effective than the FDA approved standard antiviral, and antineoplastic drugs. Finally, the ADMET characteristics have been computed, and they indicate that the substance is suitable to use and did not have any chance to produce adverse effects on aquatic or non-aquatic environment, as well as having a highly soluble capacity in water medium, high G.I absorption rate, with outstanding bioavailability index. Therefore, these mentioned Fisetin derivatives could be suggested as potential medication against Breast cancer and newly reported Monkeypox, and Marburg virus, and may further proceed for laboratory experiment, synthesis, and clinical trials to evaluate their practical value. en_US
dc.language.iso en_US en_US
dc.publisher Europe Pub Med Central Pub en_US
dc.subject Breast cancer en_US
dc.subject Diseases en_US
dc.subject Monkeypox en_US
dc.title Design and Development of New Inhibitors Against Breast Cancer, Monkeypox and Marburg Virus by Modification of Natural Fisetin via In Silico and SAR Studies en_US
dc.type Article en_US


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