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Updated: Jul 16, 2026

Amide Coupling Reaction for the Synthesis of Bispyridine-based Ligands and Their Complexation to Platinum as Dinuclear Anticancer Agents
Published on: May 28, 2014
Asymmetrically Disubstituted Pyrenebutyrate Complexes of Pt(IV) as Cisplatin Prodrugs with Improved Anticancer
Rositsa Mihaylova1, Veronika Mihaylova2, Nikola Burdzhiev2
1Faculty of Pharmacy, Medical University-Sofia, 2 Dunav Street, 1000 Sofia, Bulgaria.
Abstract:
Among the non-classical platinum complexes, Pt(IV) prodrugs are most promising as versatile scaffolds for structural modification and fine tuning of their activation-by-reduction mechanism of action and the resulting anticancer activity. Herein, four new asymmetrically disubstituted pyrenebutyrate complexes of Pt(IV) (2-5) were synthesized and thoroughly studied. In this series, the second axial ligand was derived from dicarboxylic acids of different length-4 and 5 C-atoms, or replacement of the C-atom in the middle with either O- or S-atom. The structural effects on reduction kinetics, lipophilicity and cellular internalization of the complexes were monitored by NMR, HPLC, fluorescence and ICP-MS measurements. Their cytotoxicity was tested on a panel of cancer cell lines and mechanistic insights were obtained from proteome analysis and microscope imaging. The data indicate that all complexes, especially complex 3, represent a promising class of Pt(IV) prodrugs, exhibiting significantly higher cytotoxic activity than cisplatin in all tested models, including a cisplatin-resistant line. This was explained with a stronger and more integrated apoptotic response than cisplatin: pronounced Bax upregulation (3.6-fold), maximal cleaved caspase-3 (4-fold), activation of both intrinsic and extrinsic pathways, and effective p53 Ser15/Ser46 phosphorylation. The consistent rank order of potency (3 > 4 > 5 ≈ 2 ≫ cisplatin) suggests that subtle ligand modifications can substantially enhance efficacy, possibly by improving cellular uptake or altering DNA binding.

