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dc.creatorAmiranashvili, Lela
dc.creatorNadaraia, Nanuli
dc.creatorMerlani, Maia
dc.creatorKamoutsis, Charalampos
dc.creatorPetrou, Anthi
dc.creatorGeronikaki, Athina
dc.creatorPogodin, Pavel
dc.creatorDruzhilovskiy, Dmitry
dc.creatorPoroikov, Vladimir
dc.creatorĆirić, Ana
dc.creatorGlamočlija, Jasmina
dc.creatorSoković, Marina
dc.date.accessioned2020-06-16T11:02:26Z
dc.date.available2020-06-16T11:02:26Z
dc.date.issued2020
dc.identifier.issn2079-6382
dc.identifier.urihttps://www.mdpi.com/2079-6382/9/5/224
dc.identifier.urihttp://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=PMC7277561
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3691
dc.description.abstractWe evaluated the antimicrobial activity of thirty-one nitrogen-containing 5-alpha-androstane derivatives in silico using computer program PASS (Prediction of Activity Spectra for Substances) and freely available PASS-based web applications (www.way2drug.com). Antibacterial activity was predicted for 27 out of 31 molecules; antifungal activity was predicted for 25 out of 31 compounds. The results of experiments, which we conducted to study the antimicrobial activity, are in agreement with the predictions. All compounds were found to be active with MIC (Minimum Inhibitory Concentration) and MBC (Minimum Bactericidal Concentration) values in the range of 0.0005-0.6 mg/mL. The activity of all studied 5-alpha-androstane derivatives exceeded or was equal to those of Streptomycin and, except for the 3β-hydroxy-17α-aza-d-homo-5α-androstane-17-one, all molecules were more active than Ampicillin. Activity against the resistant strains of E. coli,P. aeruginosa, and methicillin-resistant Staphylococcus aureus was also shown in experiments. Antifungal activity was determined with MIC and MFC (Minimum Fungicidal Concentration) values varying from 0.007 to 0.6 mg/mL. Most of the compounds were found to be more potent than the reference drugs Bifonazole and Ketoconazole. According to the results of docking studies, the putative targets for antibacterial and antifungal activity are UDP-N-acetylenolpyruvoylglucosamine reductase and 14-alpha demethylase, respectively. In silico assessments of the acute rodent toxicity and cytotoxicity obtained using GUSAR (General Unrestricted Structure-Activity Relationships) and CLC-Pred (Cell Line Cytotoxicity Predictor) web-services were low for the majority of compounds under study, which contributes to the chances for those compounds to advance in the development.en
dc.publisherMDPI AG
dc.rightsopenAccess
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceAntibiotics (Basel, Switzerland)
dc.subject14α-demethylase inhibition
dc.subjectCLC-Pred
dc.subjectGUSAR
dc.subjectPASS
dc.subjectUDP-N-acetylenolpyruvoylglucosamine reductase inhi
dc.subjectAntibacterial activity
dc.subjectAntifungal activity
dc.subjectMolecular docking
dc.subjectPotency against the resistant strains
dc.titleAntimicrobial Activity of Nitrogen-Containing 5-Alpha-androstane Derivatives: In Silico and Experimental Studies.en
dc.typearticleen
dc.rights.licenseBY
dcterms.abstractДрузхиловскиy, Дмитрy; Погодин, Павел; Камоутсис, Цхаралампос; Надараиа, Нанули; Соковић, Марина; Гламочлија, Јасмина; ЋириЋ, Aна; Пороиков, Владимир; Петроу, Aнтхи; Героникаки, Aтхина; Aмиранасхвили, Лела; Мерлани, Маиа;
dc.rights.holder© 2020 by the authors. Licensee MDPI, Basel, Switzerland.
dc.citation.issue5
dc.citation.volume9
dc.identifier.doi10.3390/antibiotics9050224
dc.identifier.pmid32365907
dc.identifier.scopus2-s2.0-85084986050
dc.identifier.wos000540850100016
dc.citation.apaAmiranashvili, L., Nadaraia, N., Merlani, M., Kamoutsis, C., Petrou, A., Geronikaki, A., et al. (2020). Antimicrobial Activity of Nitrogen-Containing 5-Alpha-androstane Derivatives: In Silico and Experimental Studies. Antibiotics (Basel, Switzerland), 9(5), 224.
dc.citation.vancouverAmiranashvili L, Nadaraia N, Merlani M, Kamoutsis C, Petrou A, Geronikaki A, Pogodin P, Druzhilovskiy D, Poroikov V, Ciric A, Glamočlija J, Sokovic M. Antimicrobial Activity of Nitrogen-Containing 5-Alpha-androstane Derivatives: In Silico and Experimental Studies. Antibiot (Basel, Switzerland). 2020;9(5):224.
dc.citation.spage224
dc.type.versionpublishedVersion
dc.identifier.fulltexthttps://radar.ibiss.bg.ac.rs/bitstream/id/6230/AntibiotBaselSwitzerland_2020_9_5_224.pdf
dc.citation.rankM22


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