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Synthesis and in vitro Anticancer Activity of Octahedral Platinum(IV) Complexes with Cyclohexyl‐Functionalized Ethylenediamine‐N,N′‐Diacetate‐Type Ligands
Authors:Jelena M. Lazić  Ljubica Vučićević  Sanja Grgurić‐Šipka Dr.  Kristina Janjetović  Goran N. Kaluđerović Dr.  Maja Misirkić  Maja Gruden‐Pavlović Dr.  Dušan Popadić Prof.  Reinhard Paschke Dr.  Vladimir Trajković Prof.  Tibor J. Sabo Prof.
Affiliation:1. Faculty of Chemistry, University of Belgrade, Studentski trg 12‐16, 11000 Belgrade (Serbia), Fax: (+381)?11 2184 330;2. Institute of Microbiology and Immunology, School of Medicine, University of Belgrade, Dr. Suboti?a 1, 11000 Belgrade (Serbia), Fax: (+381)?11 3643 235;3. Institute for Biological Research, Despota Stefana 142, 11000 Belgrade (Serbia);4. Department of Chemistry, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Studentski trg 14, 11000 Belgrade (Serbia);5. Biozentrum, Martin‐Luther‐Universit?t Halle‐Wittenberg, Weinbergweg 22, 06120 Halle (Germany)
Abstract:The present study describes the synthesis and anticancer activity of novel octahedral PtIV complexes with cyclohexyl functionalized ethylenediamine‐N,N′‐diacetate‐type ligands. Molecular mechanics calculations and density functional theory analysis revealed that s‐cis is the preferred geometry of these PtIV complexes with tetradentate‐coordinated (S,S)‐ethylenediamine‐N,N′‐di‐2‐(3‐cyclohexyl)propanoate. The viability of cancer cell lines (U251 human glioma, C6 rat glioma, L929 mouse fibrosarcoma, and B16 human melanoma) was assessed by measuring mitochondrial dehydrogenase activity and lactate dehydrogenase release. Cell‐cycle distribution, oxidative stress, caspase activation, and induction of autophagy were analyzed by flow cytometry using appropriate fluorescent reporter dyes. The cytotoxic activity of novel PtIV complexes against various cancer cell lines (IC50 range: 1.9–8.7 μM ) was higher than that of cisplatin (IC50 range: 10.9–67.0 μM ) and proceeded through completely different mechanisms. Cisplatin induced caspase‐dependent apoptosis associated with the cytoprotective autophagic response. In contrast, the new PtIV complexes caused rapid, caspase‐independent, oxidative stress‐mediated non‐apoptotic cell death characterized by massive cytoplasmic vacuolization, cell membrane damage, and the absence of protective autophagy.
Keywords:apoptosis  autophagy  cancer  oxidative stress  platinum
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