Synthesis, characterization, and biological activity of cationic ruthenium-arene complexes with sulfur ligands.

J Biol Inorg Chem

Laboratory of Catalysis, MolSys Research Unit, Institut de Chimie Organique (B6a), Université de Liège, Allée du Six Août 13, 4000, Liège, Belgium.

Published: June 2024

AI Article Synopsis

  • Five cationic ruthenium-arene complexes were synthesized using a simple two-step process, with high yields and full characterization performed through various analytical techniques.
  • X-ray diffraction helped reveal an intramolecular chalcogen bond within the structure, while DFT calculations indicated a significant charge transfer.
  • The complexes, especially the IMes derivative (5a), demonstrated strong antiproliferative effects against certain cancer cell lines, comparable to well-known platinum-based drugs.

Article Abstract

Five cationic ruthenium-arene complexes with the generic formula [Ru(SAc)(SC·NHC)(p-cymene)](PF) (5a-e) were prepared in almost quantitative yields using a straightforward one-pot, two-step experimental procedure starting from [RuCl(p-cymene)], an imidazol(in)ium-2-dithiocarboxylate (NHC·CS) zwitterion, KSAc, and KPF. These half-sandwich compounds were fully characterized by various analytical techniques and the molecular structures of two of them were solved by X-ray diffraction analysis, which revealed the existence of an intramolecular chalcogen bond between the oxygen atom of the thioacetate ligand and a proximal sulfur atom of the dithiocarboxylate unit. DFT calculations showed that the C=SO charge transfer amounted to 2.4 kcal mol. The dissolution of [Ru(SAc)(SC·IMes)(p-cymene)](PF) (5a) in moist DMSO-d at room temperature did not cause the dissociation of its sulfur ligands. Instead, p-cymene was slowly released to afford the 12-electron [Ru(SAc)(SC·IMes)] cation that could be detected by mass spectrometry. Monitoring the solvolysis process by H NMR spectroscopy showed that more than 22 days were needed to fully decompose the starting ruthenium-arene complex. Compounds 5a-e exhibited a high antiproliferative activity against human glioma Hs683 and human lung carcinoma A549 cancer cells. In particular, the IMes derivative (5a) was the most potent compound of the series, achieving toxicities similar to those displayed by marketed platinum drugs.

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Source
http://dx.doi.org/10.1007/s00775-024-02052-2DOI Listing

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