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dc.creatorTratrat, Christophe
dc.creatorHaroun, Michelyne
dc.creatorXenikakis, Iakovos
dc.creatorLiaras, Konstantinos
dc.creatorTsolaki, Evangelia
dc.creatorEleftheriou, Phaedra
dc.creatorPetrou, Anthi
dc.creatorAldhubiab, Bandar
dc.creatorAttimarad, Mahesh
dc.creatorVenugopala, Katharigatta N.
dc.creatorHarsha, Sree
dc.creatorElsewedy, Heba S.
dc.creatorGeronikaki, Athina
dc.creatorSoković, Marina
dc.date.accessioned2019-06-04T12:25:11Z
dc.date.available2019-06-04T12:25:11Z
dc.date.issued2019
dc.identifier.urihttp://www.eurekaselect.com/169442/article
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3358
dc.description.abstractBACKGROUND Thiazole derivates as well as chalcones, are very important scaffold for medicinal chemistry. Literature survey revealed that they possess wide spectrum of biological activities among which are anti-inflammatory and antimicrobial. OBJECTIVES The current studies describe the synthesis and evaluation of antimicrobial activity of twenty eight novel thiazole-based chalcones. METHODS The designed compounds were synthesized using classical methods of organic synthesis. The in vivo evaluation of antimicrobial activity was performed by microdilution method. RESULTS All compounds have shown antibacterial properties better than that of ampicillin and in many cases better than streptomycin. As far as the antifungal activity is concerned, all compounds possess much higher activity than reference drugs bifonazole and ketoconazole. The most sensitive bacterial species was B. cereus (MIC 6.5-28.4 µmol × 10-2/mL and MBC 14.2-105.0 µmol × 10-2/mL) while the most resistant ones were L. monocytogenes (MIC 21.4-113.6 µmol × 10-2/mL) and E. coli (MIC 10.7- 113.6 µmol × 10-2/mL) and MBC at 42.7-358.6 µmol × 10-2/mL and 21.4-247.2 µmol × 10-2/mL, respectively. All the compounds exhibited antibacterial activity against the three resistant strains, MRSA, P. aeruginosa and E.coli. with MIC and MBC in the range of 0.65-11.00 µmol/mL × 10-2 and 1.30-16.50 µmol/mL × 10-2. Docking studies were performed. CONCLUSION Twenty-eight novel thiazole-based chalcones were designed, synthesized and evaluated for antimicrobial activity. The results showed that these derivatives could be lead compounds in search of new potent antimicrobial agents. Docking studies indicated that DNA gyrase, GyrB and MurA inhibition may explain the antibacterial activity.en
dc.relationinfo:eu-repo/grantAgreement/MESTD/Basic Research (BR or ON)/173032/RS//
dc.relationDeanship of Scientific Research of King Faisal University (150255)
dc.rightsrestrictedAccess
dc.sourceCurrent Topics in Medicinal Chemistry
dc.subjectAntifungal
dc.subjectAntimicrobial
dc.subjectCYP51
dc.subjectChalcone
dc.subjectDihydrofolate
dc.subjectreductase
dc.subjectDocking
dc.subjectGyrB(1KZN)
dc.subjectMicrodilution
dc.subjectMurA
dc.subjectThiazole
dc.subject.otherm22
dc.titleDesign, Synthesis, Evaluation of Antimicrobial Activity and Docking Studies of New Thiazole-based Chalcones.en
dc.typearticleen
dc.rights.licenseARR
dcterms.abstractЕлефтхериоу, Пхаедра; Xеникакис, Иаковос; Лиарас, Константинос; Соковић, Марина; Тратрат, Цхристопхе; Хароун, Мицхелyне; Тсолаки, Евангелиа; Петроу, Aнтхи; Aлдхубиаб, Бандар; Aттимарад, Махесх; Венугопала, Катхаригатта Н.; Харсха, Срее; Елсеwедy, Хеба С.; Героникаки, Aтхина;
dc.rights.holder© Bentham Science Publishers
dc.citation.issue5
dc.citation.volume19
dc.identifier.doi10.2174/1568026619666190129121933
dc.identifier.pmid30706816
dc.identifier.scopus2-s2.0-85065220060
dc.identifier.wos000465203100004
dc.citation.apaTratrat, C., Haroun, M., Xenikakis, I., Liaras, K., Tsolaki, E., Eleftheriou, P., et al. (2019). Design, Synthesis, Evaluation of Antimicrobial Activity and Docking Studies of New Thiazole-based Chalcones. Current Topics in Medicinal Chemistry, 19(5), 356–375.
dc.citation.vancouverTratrat C, Haroun M, Xenikakis I, Liaras K, Tsolaki E, Eleftheriou P, Petrou A, Aldhubiab B, Attimarad M, Venugopala KN, Harsha S, Elsewedy HS, Geronikaki A, Soković M. Design, Synthesis, Evaluation of Antimicrobial Activity and Docking Studies of New Thiazole-based Chalcones. Curr Top Med Chem. 2019;19(5):356–75.
dc.citation.spage356
dc.citation.epage375
dc.type.versionpublishedVersion


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