Literature DB >> 21226475

Complex formation in aqueous solution and in the solid state of the potent insulin-enhancing V(IV)O2+ compounds formed by picolinate and quinolinate derivatives.

Elzbieta Lodyga-Chruscinska1, Giovanni Micera, Eugenio Garribba.   

Abstract

The complexation of V(IV)O(2+) ion with 10 picolinate and quinolinate derivatives, provided with the donor set (N, COO(-)), was studied in aqueous solution and in the solid state through the combined application of potentiometric (pH-titrations), spectroscopic (EPR, UV/vis and IR spectroscopy), and computational (density functional theory (DFT) calculations) methods. Such derivatives, that form potent insulin-enhancing V(IV)O(2+) compounds, are picolinic (picH), 6-methylpicolinic (6-mepicH), 3-methylpicolinic (3-mepicH), 5-butylpicolinic or fusaric (fusarH), 6-methyl-2,3-pyridindicarboxylic (6-me-2,3-pdcH(2)), 2-pyridylacetic (2-pyacH), 2-quinolinecarboxylic or quinaldic (quinH), 4-hydroxyquinoline-2-carboxylic or kynurenic (kynurH), 1-isoquinolinecarboxylic (1-iqcH) and 3-isoquinolinecarboxylic (3-iqcH) acid. On the basis of the potentiometric, spectroscopic, and DFT results, they were divided into the classes A, B, and C. The ligands belonging to class A (3-mepicH, 1-iqcH, 2-pyacH) form square pyramidal complexes in aqueous solution and in the solid state, and those belonging to class B (picH, fusarH, 3-iqcH) form cis-octahedral species, in which the two ligands adopt an (equatorial-equatorial) and an (equatorial-axial) arrangement and one water molecule occupies an equatorial site in cis position with respect to the V═O bond. Class C ligands (6-mepicH, 6-me-2,3-pdcH(2), quinH, kynurH) yield bis chelated species, that in water are in equilibrium between the square pyramidal and trans-octahedral form, where both the ligand molecules adopt an (equatorial-equatorial) arrangement and one water is in trans position with respect to the V═O group. The trans-octahedral compounds are characterized by an anomalous electron paramagnetic resonance (EPR) response, with A(z) value being reduced by about 10% with respect to the prediction of the "additivity rule". DFT methods allow to calculate the structure, (51)V hyperfine coupling constant (A(z)), the stretching frequency of V═O bond (ν(V═O)), the relative stability in aqueous solution, and the electronic structure and molecular orbital composition of bis chelated complexes. The results were used to explain the biotransformation of these potent insulin-enhancing compounds in blood serum.

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Year:  2011        PMID: 21226475     DOI: 10.1021/ic101475x

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


  4 in total

1.  Binding of V(IV)O²⁺ to the Fe binding sites of human serum transferrin. A theoretical study.

Authors:  Gonçalo C Justino; Eugenio Garribba; João Costa Pessoa
Journal:  J Biol Inorg Chem       Date:  2013-10       Impact factor: 3.358

2.  Multiple and Variable Binding of Pharmacologically Active Bis(maltolato)oxidovanadium(IV) to Lysozyme.

Authors:  Giarita Ferraro; Maddalena Paolillo; Giuseppe Sciortino; Eugenio Garribba; Antonello Merlino
Journal:  Inorg Chem       Date:  2022-10-07       Impact factor: 5.436

3.  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

4.  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

  4 in total

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