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The First Anticancer Tris(pyrazolyl)borate Molybdenum(IV) Complexes: Tested in Vitro and in Vivo-A Comparison of O,O-, S,O-, and N,N-Chelate Effects.

Iker BerasaluceKlaudia CsehAlexander RollerMichaela HejlPetra HeffeterWalter BergerMichael A JakupecWolfgang KandiollerMichael S MalarekBernhard K Keppler
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2019)
The synthesis, characterization and biological activity of molybdenum(IV) complexes containing Trofimenko's scorpionato ligand, hydrotris(3-isopropylpyrazolyl)borate (TpiPr ), in addition to varying biologically active as well as other conventional ligands is described. Ligands employed include (O,O-) (S,O-) (N,N-) donors that have been successfully coordinated to the molybdenum center by means of oxygen-atom transfer (OAT) reactions from the known MoVI starting material, TpiPr MoO2 Cl. The synthesized complexes were characterized by standard analytical methods and where possible by X-ray diffraction analysis. The aqueous stability of the compounds was studied by means of UV/Vis spectroscopy and the impact of the attached ligand scaffolds on the oxidation potentials (MoIV to MoV ) was studied by cyclic voltammetry. Utilizing polyvinylpyrrolidone (PVP) as a solubilizing agent, adequate aqueous solubility for biological tests was obtained. Anticancer activity tests and preliminary mode of action studies have been performed in vitro and in vivo.
Keyphrases
  • high resolution
  • ionic liquid
  • electron transfer
  • molecular dynamics
  • magnetic resonance imaging
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  • single molecule
  • electron microscopy
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  • liquid chromatography
  • crystal structure
  • dual energy