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Updated: May 12, 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
Synthesis, structure and in vitro cytotoxic studies of novel paramagnetic palladium(III) complexes with
Daniela Tsekova1, Paulina Gorolomova, Georgi Gochev
1Department of Analytical Chemistry, Faculty of Chemistry and Pharmacy, University of Sofia, 1J. Bourchier Str., 1164 Sofia, Bulgaria.
Abstract:
Two coordination compounds of Pd(III) with hematoporphyrin IX ((7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-21H-23H-porphyn-2,18-dipropionic acid), Hp), dinuclear [Pd(III)2(Hp-3H)Cl3(H2O)5]·2PdCl2, 1 and mononuclear [Pd(III)(Hp-2H)Cl(H2O)]·H2O, 2 were obtained and structurally characterized in solid state and solution using spectroscopic, thermal and magnetic methods. In the dinuclear complex, 1 one of the Pd(III) ions is coordinated to the deprotanated COO(-) groups from the side chains of the porphyrin ligand and the second Pd(III) ion - to two adjacent pyrrole N-atoms on the top of the porphyrin ring and a Pd(III)-Hp-Pd(III) system was formed. The Pd(III) ion in the mononuclear complex, 2 is incorporated in the porphyrin core. The Pd(III) centers in both complexes have a distorted octahedral coordination filled with additional donor species such as Cl(-) and H2O. The studied compounds showed in vitro cell growth inhibitory effects at micromolar concentration against a panel of human tumor cell lines. A DNA fragmentation assay indicated that the growth inhibitory effects are at least partly mediated by induction of apoptosis.

