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      Gallium(III) and iron(III) complexes of alpha-N-heterocyclic thiosemicarbazones: synthesis, characterization, cytotoxicity, and interaction with ribonucleotide reductase.

      Journal of Medicinal Chemistry
      Animals, Antineoplastic Agents, chemical synthesis, chemistry, pharmacology, Cell Line, Tumor, Chelating Agents, Crystallography, X-Ray, Drug Screening Assays, Antitumor, Free Radicals, Gallium, Humans, Iron, Ligands, Magnetic Resonance Spectroscopy, Mass Spectrometry, Mice, Molecular Structure, Organometallic Compounds, Ribonucleotide Reductases, Spectrophotometry, Infrared, Spectrophotometry, Ultraviolet, Structure-Activity Relationship, Thiosemicarbazones, Tyrosine

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          Abstract

          A series of gallium(III) and iron(III) complexes with five different 4N-substituted alpha-N-heterocyclic thiosemicarbazones, viz., 2-acetylpyridine N,N-dimethylthiosemicarbazone (1), 2-acetylpyridine N-pyrrolidinylthiosemicarbazone (2), acetylpyrazine N,N-dimethylthiosemicarbazone (3), acetylpyrazine N-pyrrolidinylthiosemicarbazone (4), and acetylpyrazine N-piperidinylthiosemicarbazone (5), with the general formula [GaLCl2] (HL = 1 and 2) and [ML2][Y] (M = Ga, HL = 1-5, Y = PF6; M = Fe, HL = 1-5, Y = FeCl4 and PF6) were synthesized and characterized by elemental analysis, a number of spectroscopic methods (NMR, IR, UV-vis), mass spectrometry, and X-ray crystallography. The in vitro antitumor potency was studied in two human cancer cell lines (41M and SK-BR-3). The central metal ions exert pronounced effects in a divergent manner: gallium(III) enhances, whereas iron(III) weakens the cytotoxicity of the ligands. The capacity of ligand 1 and its Ga(III) and Fe(III) complexes to destroy the tyrosyl radical of the presumed target ribonucleotide reductase is reported.

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