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dc.creatorHaroun, Michelyne
dc.creatorTratrat, Christophe
dc.creatorPetrou, Anthi
dc.creatorGeronikaki, Athina
dc.creatorIvanov, Marija
dc.creatorĆirić, Ana
dc.creatorSoković, Marina
dc.creatorNagaraja, Sreeharsha
dc.creatorNarayanaswamy Venugopala, Katharigatta
dc.creatorBalachandran Nair, Anroop
dc.creatorElsewedy, Heba
dc.creatorKochkar, Hafedh
dc.date.accessioned2021-09-01T14:35:41Z
dc.date.available2021-09-01T14:35:41Z
dc.date.issued2021
dc.identifier.issn1420-3049
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/4299
dc.description.abstractBackground: Infectious diseases still affect large populations causing significant morbidity and mortality. Bacterial and fungal infections for centuries were the main factors of death and disability of millions of humans. Despite the progress in the control of infectious diseases, the appearance of resistance of microbes to existing drugs creates the need for the development of new effective antimicrobial agents. In an attempt to improve the antibacterial activity of previously synthesized compounds modifications to their structures were performed. Methods: Nineteen thiazolidinone derivatives with 6-Cl, 4-OMe, 6-CN, 6-adamantan, 4-Me, 6-adamantan substituents at benzothiazole ring were synthesized and evaluated against panel of four bacterial strains S. aureus, L. monocytogenes, E. coli and S. typhimirium and three resistant strains MRSA, E. coli and P. aeruginosa in order to improve activity of previously evaluated 6-OCF3 -benzothiazole-based thiazolidinones. The evaluation of minimum inhibitory and minimum bactericidal concentration was determined by microdilution method. As reference compounds ampicillin and streptomycin were used. Results: All compounds showed antibacterial activity with MIC in range of 0.12–0.75 mg/mL and MBC at 0.25–>1.00 mg/mL The most active compound among all tested appeared to be compound 18, with MIC at 0.10 mg/mL and MBC at 0.12 mg/mL against P. aeruginosa. as well as against resistant strain P. aeruginosa with MIC at 0.06 mg/mL and MBC at 0.12 mg/mL almost equipotent with streptomycin and better than ampicillin. Docking studies predicted that the inhibition of LD-carboxypeptidase is probably the possible mechanism of antibacterial activity of tested compounds. Conclusion: The best improvement of antibacterial activity after modifications was achieved by replacement of 6-OCF3 substituent in benzothiazole moiety by 6-Cl against S. aureus, MRSA and resistant strain of E. coli by 2.5 folds, while against L. monocytogenes and S. typhimirium from 4 to 5 folds.sr
dc.language.isoensr
dc.publisherMDPIsr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200007/RS//sr
dc.relationDeanship of Scientific Research of King Faisal University, Saudi Arabia (1811019)sr
dc.rightsopenAccesssr
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceMoleculessr
dc.subjectthiazolidinonessr
dc.subjectPASSsr
dc.subjectantibacterialsr
dc.subjectMIC/MFCsr
dc.subjectdockingsr
dc.subjectLD-carboxypeptidasesr
dc.titleExploration of the Antimicrobial Effects of Benzothiazolylthiazolidin-4-One and In Silico Mechanistic Investigationsr
dc.typearticlesr
dc.rights.licenseBYsr
dcterms.abstractГероникаки, Aтхина; Хароун, Мицхелyне; Тратрат, Цхристопхе; Петроу, Aнтхи; Иванов, Марија; Ћирић, Aна; Соковић, Марина; Нагараја, Среехарсха; Нараyанасwамy Венугопала, Катхаригатта; Балацхандран Наир, Aнрооп; Елсеwедy, Хеба; Коцхкар, Хафедх;
dc.rights.holder© 2021 by the authors. Licensee MDPI, Basel, Switzerland.sr
dc.citation.issue13
dc.citation.volume26
dc.identifier.doi10.3390/molecules26134061
dc.identifier.pmid34279400
dc.identifier.scopus2-s2.0-85109993305
dc.identifier.wos000671276800001
dc.citation.apaHaroun, M., Tratrat, C., Petrou, A., Geronikaki, A., Ivanov, M., Ćirić, A., et al. (2021). Exploration of the Antimicrobial Effects of Benzothiazolylthiazolidin-4-One and In Silico Mechanistic Investigation. Molecules, 26(13), 4061.
dc.citation.vancouverHaroun M, Tratrat C, Petrou A, Geronikaki A, Ivanov M, Ćirić A, Soković M, Nagaraja S, Venugopala KN, Nair AB, Elsewedy HS, Kochkar H. Exploration of the Antimicrobial Effects of Benzothiazolylthiazolidin-4-One and In Silico Mechanistic Investigation. Molecules. 2021;26(13):4061.
dc.citation.spage4061
dc.type.versionpublishedVersionsr
dc.identifier.fulltexthttps://radar.ibiss.bg.ac.rs/bitstream/id/8657/molecules-26-04061.pdf
dc.citation.rankM22


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