Decavanadate Salts of Cytosine and Metformin: A Combined Experimental-Theoretical Study of Potential Metallodrugs Against Diabetes and Cancer

Cytosine, a DNA and RNA building-block, and Metformin, the most widely prescribed drug for the treatment of Type 2 were made to react separately with ammonium or sodium metavanadates in acidic aqueous solutions to obtain two polyoxovanadate salts with a 6:1 ratio of cation-anion. Thus, compounds [HC...

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Veröffentlicht in:Frontiers in chemistry 2018-10, Vol.6, p.402
Hauptverfasser: Sánchez-Lara, Eduardo, Treviño, Samuel, Sánchez-Gaytán, Brenda L, Sánchez-Mora, Enrique, Eugenia Castro, María, Meléndez-Bustamante, Francisco J, Méndez-Rojas, Miguel A, González-Vergara, Enrique
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Zusammenfassung:Cytosine, a DNA and RNA building-block, and Metformin, the most widely prescribed drug for the treatment of Type 2 were made to react separately with ammonium or sodium metavanadates in acidic aqueous solutions to obtain two polyoxovanadate salts with a 6:1 ratio of cation-anion. Thus, compounds [HCyt] [V O ]·4H O, and [HMetf] [V O ]·6H O, (where HCyt = Cytosinium cation, [C H N O] and HMetf = Metforminium cation, [C H N ] ) were obtained and characterized by elemental analysis, single crystal X-ray diffraction, vibrational spectroscopy (IR and Raman), solution V-NMR, thermogravimetric analysis (TGA-DTGA), as well as, theoretical methods. Both compounds crystallized in space group with = 1/2, where the anionic charge of the centrosymmetric ion [V O ] is balanced by six Cytosinium and six Metforminium counterions, respectively. Compound is stabilized by π-π stacking interactions coming from the aromatic rings of HCyt cations, as denoted by close contacts of 3.63 Å. On the other hand, guanidinium moieties from the non-planar HMetf in Compound interact with decavanadate μ -O atoms N-H···O hydrogen bonds. The vibrational spectroscopic data of both IR and Raman spectra show that the dominant bands in the 1000-450 cm range are due to the symmetric and asymmetric ν vibrational modes. In solution, V-NMR experiments of both compounds show that polyoxovanadate species are progressively transformed into the monomeric, dimeric and tetrameric oxovanadates. The thermal stability behavior suggests a similar molecular mechanism regarding the loss of water molecules and the decomposition of the organic counterions. Yet, no changes were observed in the TGA range of 540-580°C due to the stability of the [V O ] fragment. Dispersion-corrected density functional theory (DFT-D) calculations were carried out to model the compounds in aqueous phase using a polarized continuum model calculation. Optimized structures were obtained and the main non-covalent interactions were characterized. Biological activities of these compounds are also under investigation. The combination of two therapeutic agents opens up a window toward the generation of potential metalopharmaceuticals with new and exciting pharmacological properties.
ISSN:2296-2646
2296-2646
DOI:10.3389/fchem.2018.00402