Novel Nickel(II), Palladium(II), and Platinum(II) Complexes with O , S Bidendate Cinnamic Acid Ester Derivatives: : An In Vitro Cytotoxic Comparison to Ruthenium(II) and Osmium(II) Analogues

GND
1188627686
ORCID
0000-0002-2153-0284
Zugehörigkeit
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller Universität Jena
Hildebrandt, Jana;
GND
136906303
ORCID
0000-0002-7012-483X
Zugehörigkeit
Department of Gynecology, Jena University Hospital
Häfner, Norman;
GND
1214845193
Zugehörigkeit
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller Universität Jena
Görls, Helmar;
GND
1306331757
Zugehörigkeit
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller Universität Jena
Barth, Marie-Christin;
GND
1111821518
ORCID
0000-0003-1235-1150
Zugehörigkeit
Department of Gynecology, Jena University Hospital
Dürst, Matthias;
GND
1111567727
Zugehörigkeit
Department of Gynecology, Jena University Hospital
Runnebaum, Ingo B.;
GND
1062586395
ORCID
0000-0001-5177-1006
Zugehörigkeit
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller Universität Jena
Weigand, Wolfgang

(1) Background: Since the discovery of cisplatin’s cytotoxic properties, platinum(II) compounds have attracted much interest in the field of anticancer drug development. Over the last few years, classical structure–activity relationships (SAR) have been broken by some promising new compounds based on platinum or other metals. We focus on the synthesis and characterization of 17 different complexes with β-hydroxydithiocinnamic acid esters as O , S bidendate ligands for nickel(II), palladium(II), and platinum(II) complexes. (2) Methods: The bidendate compounds were synthesized and characterized using classical methods including NMR spectroscopy, MS spectrometry, elemental analysis, and X-ray crystallography, and their cytotoxic potential was assessed using in vitro cell culture assays. Data were compared with other recently reported platinum(II), ruthenium(II), and osmium(II) complexes based on the same main ligand system. (3) Results: SAR analyses regarding the metal ion (M), and the alkyl-chain position (P) and length (L), revealed the following order of the effect strength for in vitro activity: M > P > L. The highest activities have Pd complexes and ortho-substituted compounds. Specific palladium(II) complexes show lower IC 50 values compared to cisplatin, are able to elude cisplatin resistance mechanisms, and show a higher cancer cell specificity. (4) Conclusion: A promising new palladium(II) candidate (Pd3) should be evaluated in further studies using in vivo model systems, and the identified SARs may help to target platinum-resistant tumors.

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