Axial Coordination of Pyridine- and Imidazole-Based Drug Molecules to Co(III)-Tetra(4-Carboxyphenyl)porphyrin
- Authors: Kaigorodova E.Y.1, Mamardashvili G.M.1, Mamardashvili N.Z.1
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Affiliations:
- Krestov Institute of Solution Chemistry
- Issue: Vol 63, No 9 (2018)
- Pages: 1192-1198
- Section: Coordination Compounds
- URL: https://journals.rcsi.science/0036-0236/article/view/168980
- DOI: https://doi.org/10.1134/S0036023618090061
- ID: 168980
Cite item
Abstract
The substitutions of water molecules in the bisaqua axial complex of carboxy-substituted Co(III)-tetraphenylporphyrin by drug molecules based on amines and nitrogen-containing heterocycles are studied. The strongest bonded Co(III)-porphyrin complexes are formed with imidazole and pyridine derivatives. Depending on the nature and positions of functional groups in the heterocyclic moiety, imidazole- and pyridine- containing compounds can form either mono- or bis-axial complexes with Co(III) porphyrinate, these complexes having various stabilities. Aniline and quinuclidine drugs were found to react with Co(III) porphyrinate in aqueous media to produce only unstable monoaxial complexes.
About the authors
E. Yu. Kaigorodova
Krestov Institute of Solution Chemistry
Author for correspondence.
Email: gmm@isc-ras.ru
Russian Federation, Ivanovo, 153048
G. M. Mamardashvili
Krestov Institute of Solution Chemistry
Email: gmm@isc-ras.ru
Russian Federation, Ivanovo, 153048
N. Z. Mamardashvili
Krestov Institute of Solution Chemistry
Email: gmm@isc-ras.ru
Russian Federation, Ivanovo, 153048
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