Literature DB >> 25013935

Synthesis and characterization of V(IV)O complexes of picolinate and pyrazine derivatives. Behavior in the solid state and aqueous solution and biotransformation in the presence of blood plasma proteins.

Tanja Koleša-Dobravc1, Elzbieta Lodyga-Chruscinska, Marzena Symonowicz, Daniele Sanna, Anton Meden, Franc Perdih, Eugenio Garribba.   

Abstract

Oxidovanadium(IV) complexes with 5-cyanopyridine-2-carboxylic acid (HpicCN), 3,5-difluoropyridine-2-carboxylic acid (HpicFF), 3-hydroxypyridine-2-carboxylic acid (H2hypic), and pyrazine-2-carboxylic acid (Hprz) have been synthesized and characterized in the solid state and aqueous solution through elemental analysis, IR and EPR spectroscopy, potentiometric titrations, and DFT simulations. The crystal structures of the complexes (OC-6-23)-[VO(picCN)2(H2O)]·2H2O (1·2H2O), (OC-6-24)-[VO(picCN)2(H2O)]·4H2O (2·4H2O), (OC-6-24)-Na[VO(Hhypic)3]·H2O (4), and two enantiomers of (OC-6-24)-[VO(prz)2(H2O)] (Λ-5 and Δ-5) have been determined also by X-ray crystallography. 1 presents the first crystallographic evidence for the formation of a OC-6-23 isomer for bis(picolinato) V(IV)O complexes, whereas 2, 4, and 5 possess the more common OC-6-24 arrangement. The strength order of the ligands is H2hypic ≫ HpicCN > Hprz > HpicFF, and this results in a different behavior at pH 7.40. In organic and aqueous solution the three isomers OC-6-23, OC-6-24, and OC-6-42 are formed, and this is confirmed by DFT simulations. In all the systems with apo-transferrin (VO)2(apo-hTf) is the main species in solution, with the hydrolytic V(IV)O species becoming more important with lowering the strength of the ligand. In the systems with albumin, (VO)(x)HSA (x = 5, 6) coexists with VOL2(HSA) and VOL(HSA)(H2O) when L = picCN, prz, with [VO(Hhypic)(hypic)](-), [VO(hypic)2](2-), and [(VO)4(μ-hypic)4(H2O)4] when H2hypic is studied, and with the hydrolytic V(IV)O species when HpicFF is examined. Finally, the consequence of the hydrolysis on the binding of V(IV)O(2+) to the blood proteins, the possible uptake of V species by the cells, and the possible relationship with the insulin-enhancing activity are discussed.

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Year:  2014        PMID: 25013935     DOI: 10.1021/ic500766t

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  3 in total

1.  ESI-MS Study of the Interaction of Potential Oxidovanadium(IV) Drugs and Amavadin with Model Proteins.

Authors:  Valeria Ugone; Daniele Sanna; Giuseppe Sciortino; Debbie C Crans; Eugenio Garribba
Journal:  Inorg Chem       Date:  2020-06-25       Impact factor: 5.165

2.  Vanadium(IV) Complexes with Methyl-Substituted 8-Hydroxyquinolines: Catalytic Potential in the Oxidation of Hydrocarbons and Alcohols with Peroxides and Biological Activity.

Authors:  Joanna Palion-Gazda; André Luz; Luis R Raposo; Katarzyna Choroba; Jacek E Nycz; Alina Bieńko; Agnieszka Lewińska; Karol Erfurt; Pedro V Baptista; Barbara Machura; Alexandra R Fernandes; Lidia S Shul'pina; Nikolay S Ikonnikov; Georgiy B Shul'pin
Journal:  Molecules       Date:  2021-10-21       Impact factor: 4.411

3.  Spectroscopic/Computational Characterization and the X-ray Structure of the Adduct of the VIVO-Picolinato Complex with RNase A.

Authors:  Giarita Ferraro; Nicola Demitri; Luigi Vitale; Giuseppe Sciortino; Daniele Sanna; Valeria Ugone; Eugenio Garribba; Antonello Merlino
Journal:  Inorg Chem       Date:  2021-11-30       Impact factor: 5.165

  3 in total

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