Abstract
1 min readIn this study, five ruthenium arene complexes with fluorene-bearing N,N-(1) and N,O-(2) donor Schiff base ligands were synthesized and fully characterized. Cationic ruthenium complexes 3[X], ([Ru(η<sup>6</sup>-C<sub>6</sub>H<sub>6</sub>)(Cl)(fluorene-N[double bond, length as m-dash]CH-pyridine)][X] (where X = BF<sub>4</sub>, PF<sub>6</sub>, BPh<sub>4</sub>), were obtained by reacting ligand 1 with [Ru(η<sup>6</sup>-C<sub>6</sub>H<sub>6</sub>)Cl<sub>2</sub>]<sub>2</sub> in the presence of NH<sub>4</sub>X salts, whereas neutral complex 4, Ru(η<sup>6</sup>-C<sub>6</sub>H<sub>6</sub>)(Cl)(fluorene-N[double bond, length as m-dash]CH-naphtholate), was isolated by reacting ligand 2 with the same precursor. It was possible to obtain a cationic version of the latter, 5[BF<sub>4</sub>], by reacting 4 with AgBF<sub>4</sub> in the presence of pyridine. All compounds were fully characterized by NMR and HR-ESI-MS whereas some of them were also analyzed by single crystal X-ray analysis. Their in vitro antiproliferative activity was also assessed in human breast cancer cell lines, notably MCF-7 and T47D. Complex 4 and its cationic counterpart 5[BF<sub>4</sub>] were found to be the most cytotoxic compounds of the series (IC<sub>50</sub> = 6.2-16.2 μM) and displayed higher antiproliferative activities than cisplatin in both cell lines. It was found that 5[BF<sub>4</sub>] undergoes a ligand exchange reaction and readily converts to 4 in the presence of 0.1 M NaCl, explaining the similarity in their observed cytotoxicities. Whereas 3[BF<sub>4</sub>] and 3[PF<sub>6</sub>] were found inactive at the tested concentrations, 3[BPh<sub>4</sub>] displayed a considerable cytotoxicity (IC<sub>50</sub> = 16.7-27.8 μM). Notably, 3[BPh<sub>4</sub>], 4 (and 5[BF<sub>4</sub>]) were active against T47D, a cisplatin resistant cell line. Interestingly, 4 (16.4 μM) was found to be less cytotoxic than 3[BPh<sub>4</sub>] and cisplatin (6.6 and 7.9 μM, respectively) in breast healthy cells (MCF-12A). However, in comparison to 4 and cisplatin (at 10 μM), a lower in vivo toxicity was observed for complex 3[BPh<sub>4</sub>] on the development of zebrafish (Danio rerio) embryos.
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