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dc.creatorKartsev, Victor
dc.creatorGeronikaki, Athina
dc.creatorPetrou, Anthi
dc.creatorLichitsky, Boris
dc.creatorKostić, Marina
dc.creatorIvanov, Marija
dc.creatorSoković, Marina
dc.creatorSirakanyan, Samvel
dc.date.accessioned2019-09-19T11:49:07Z
dc.date.available2019-09-19T11:49:07Z
dc.date.issued2019
dc.identifier.urihttp://www.eurekaselect.com/172243/article
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3469
dc.description.abstractBACKGROUND Griseofulvin - a mold metabolite produced by Penisilium griseofulvum is known as an antifungal drug. OBJECTIVE Thus, the goal of this paper is the design and synthesis of new griseofulvin derivatives and evaluation of their antifungal activity. METHODS Forty-two new compounds were synthesized using classical methods of organic synthesis and evaluated for their antimicrobial activity by microdilution method. RESULTS All forty-two new compounds exhibited very good activity against eight tested micromycetes with MIC ranging from 0.0075-0.055 mg/ml and MFC from 0.02-024 mg/ml. All compounds exhibited better activity than reference drugs ketoconazole (7-42 times) and bifonazole (3-16 fold). The most promising was compound 15. The most sensitive fungal was found to be T. viride, while the most resistant, as was expected, was A. fumigatus. It should be mentioned that most of compounds exhibited better activity than griseofulvin. The molecular docking studies revealed that the most active compound have the same hydrophobic and H-bonding interactions with Thr276 residue observed for griseofulvin forming 3 hydrogen bonds while griseofulvin only one. In general, the molecular docking results coincide with experimental. CONCLUSION Forty-two giseofulvin derivatives were designed, synthesized and evaluated for antimicrobial activity. These derivatives revealed good antifungal activity, better than reference drugs ketoconazole, bifonazole, and griseofulvin as well.en
dc.rightsrestrictedAccess
dc.sourceCurrent Topics in Medicinal Chemistry
dc.subjectAntifungal
dc.subjectBifonazole
dc.subjectDocking
dc.subjectGriseofulvin derivatives
dc.subjectKetoconazole
dc.subjectMicrodilution method
dc.subjectTubulin.
dc.titleGriseofulvin Derivatives: Synthesis, Molecular Docking and Biological Evaluation.en
dc.typearticleen
dc.rights.licenseARR
dcterms.abstractПетроу, Aнтхи; Лицхитскy, Борис; Смиљковић, Марија; Соковић, Марина; Картсев, Вицтор; Костић, Марина; Сираканyан, Самвел; Героникаки, Aтхина;
dc.rights.holder© Bentham Science Publishers
dc.citation.issue13
dc.citation.volume19
dc.identifier.doi10.2174/1568026619666190523080136
dc.identifier.pmid31119999
dc.identifier.scopus2-s2.0-85071831036
dc.identifier.wos000483383900006
dc.citation.apaKartsev, V., Geronikaki, A., Petrou, A., Lichitsky, B., Kostic, M., Smiljkovic, M., et al. (2019). Griseofulvin Derivatives: Synthesis, Molecular Docking and Biological Evaluation. Current Topics in Medicinal Chemistry, 19(13), 1145–1161.
dc.citation.vancouverKartsev V, Geronikaki A, Petrou A, Lichitsky B, Kostic M, Smiljkovic M, Soković M, Sirakanyan S. Griseofulvin Derivatives: Synthesis, Molecular Docking and Biological Evaluation. Curr Top Med Chem. 2019;19(13):1145–61.
dc.citation.spage1145
dc.citation.epage1161
dc.type.versionpublishedVersion
dc.citation.rankM22


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