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dc.creatorMarković, Sanja B.
dc.creatorMaciejewska, Natalia
dc.creatorOlszewski, Mateusz
dc.creatorVišnjevac, Aleksandar
dc.creatorPuerta, Adrián
dc.creatorPadrón, José M.
dc.creatorNovaković, Irena
dc.creatorKojić, Snežana
dc.creatorFernandes, Henrique S.
dc.creatorSousa, Sérgio F.
dc.creatorRamotowska, Sandra
dc.creatorChylewska, Agnieszka
dc.creatorMakowski, Mariusz
dc.creatorTodorović, Tamara R.
dc.creatorFilipović, Nenad R.
dc.date.accessioned2022-05-30T07:09:07Z
dc.date.available2022-05-30T07:09:07Z
dc.date.issued2022
dc.identifier.issn0223-5234
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0223523422003518
dc.identifier.urihttp://aspace.agrif.bg.ac.rs/handle/123456789/6098
dc.description.abstractThe biological activity of Cd compounds has been investigated scarce since Cd has been recognized as a human carcinogen. However, the toxicity of cadmium is comparable to the toxicity of noble metals such as Pt and Pd. The paradigm of metal toxicity has been challenged suggesting that metal toxicity is not a constant property, yet it depends on many factors like the presence of appropriate ligands. Studies on anticancer activity of cadmium complexes showed that the complexation of various ligands resulted in complexes that showed better activities than approved drugs. In the present study, cadmium complexes with biologically potent thiazolyl/selenazoyl-hydrazone ligands have been prepared, and tested for their activity against different types of tumor cell models. The complexation of ligands with Cd(II) resulted in a synergistic effect. The antiproliferative activity study revealed that all complexes are more active compared to 5-fluorouracil and cisplatin. The mechanism of tumor cell growth inhibition reveal that selenium-based compounds induce cell death in T-47D (gland carcinoma) cells through apoptosis via caspase-3/7 activation. Additionally, their pro-apoptotic effect was stronger compared to etoposide and cisplatin. Nuclease activity, detected by gel electrophoresis, may be the possible mechanism of anticancer action of investigated complexes.
dc.languageen
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200168/RS//
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200116/RS//
dc.relationThis research is financially supported by the Spanish Government (PGC2018-094503-B-C22, MCIU/AEI/FEDER, UE).
dc.relationThis research is financially supported by the Canary Islands Government (ProID2020010101, ACIISI/FEDER, UE).
dc.relationThis research is supported by the EU Social Fund (FSE).
dc.relationThis research is supported by the Canary Islands ACIISI for a predoctoral grant TESIS2020010055.
dc.rightsrestrictedAccess
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceEuropean Journal of Medicinal Chemistry
dc.sourceEuropean Journal of Medicinal ChemistryEuropean Journal of Medicinal Chemistry
dc.subjectApoptosis
dc.subjectAutophagy
dc.subjectCd complexes
dc.subjectDNA interactions
dc.subjectHydrazonyl-thiazoles
dc.titleStudy of the anticancer potential of Cd complexes of selenazoyl-hydrazones and their sulfur isosters
dc.typearticleen
dc.rights.licenseARR
dc.citation.epage
dc.citation.rankaM21
dc.citation.spage114449
dc.citation.volume238
dc.identifier.doi10.1016/j.ejmech.2022.114449
dc.type.versionpublishedVersion


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