Osmium NAMI-A analogues: synthesis, structural and spectroscopic characterization, and antiproliferative properties |
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Authors: | Cebrián-Losantos Berta Krokhin Artem A Stepanenko Iryna N Eichinger Rene Jakupec Michael A Arion Vladimir B Keppler Bernhard K |
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Institution: | Institute of Inorganic Chemistry, Faculty of Chemistry, University of Vienna, W?hringerstrasse 42, A-1090 Vienna, Austria. |
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Abstract: | The osmium(III) complex (DMSO)2H]trans-OsIIICl4(DMSO)2] (1) has been prepared via stepwise reduction of OsO4 in concentrated HCl using N2H(4).2HCl and SnCl(2).2H2O in DMSO. 1 reacts with a number of azole ligands, namely, indazole (Hind), pyrazole (Hpz), benzimidazole (Hbzim), imidazole (Him), and 1H-1,2,4-triazole (Htrz), in organic solvents, affording novel complexes (H2ind)OsIIICl4(Hind)(DMSO)] (2), (H2pz)OsIIICl4(Hpz)(DMSO)] (3), (H2bzim)OsIIICl4(Hbzim)(DMSO)] (4), (H2im)OsIIICl4(Him)(DMSO)] (6), and (H2trz)OsIIICl4(Htrz)(DMSO)] (7), which are close analogues of the antimetastatic complex NAMI-A. Metathesis reaction of 4 with benzyltriphenylphosphonium chloride in methanol led to the formation of (Ph3PCH2Ph)OsIIICl4(Hbzim)(DMSO)] (5). The complexes were characterized by IR, UV-vis, ESI mass spectrometry, 1H NMR spectroscopy, cyclic voltammetry, and X-ray crystallography. In contrast to NAMI-A, 2-4, 6, and 7 are kinetically stable in aqueous solution and resistant to hydrolysis. Surprisingly, they show reasonable antiproliferative activity in vitro in two human cell lines, HT-29 (colon carcinoma) and SK-BR-3 (mammary carcinoma), when compared with analogous ruthenium compounds. Structure-activity relationships and the potential of the prepared complexes for further development are discussed. |
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