Literature DB >> 29035049

Exceptionally High Proton and Lithium Cation Gas-Phase Basicity of the Anti-Diabetic Drug Metformin.

Ewa D Raczyńska1, Jean-François Gal2, Pierre-Charles Maria2, Piotr Michalec1, Marcin Zalewski1.   

Abstract

Substituted biguanides are known for their biological effect, and a few of them are used as drugs, the most prominent example being metformin (1,1-dimethylbiguanide, IUPAC name: N,N-dimethylimidodicarbonimidic diamide). Because of the presence of hydrogen atoms at the amino groups, biguanides exhibit a multiple tautomerism. This aspect of their structures was examined in detail for unsubstituted biguanide and metformin in the gas phase. At the density functional theory (DFT) level {essentially B3LYP/6-311+G(d,p)}, the most stable structures correspond to the conjugated, push-pull, system (NR2)(NH2)C═N-C(═NH)NH2 (R = H, CH3), further stabilized by an internal hydrogen bond. The structural and energetic aspects of protonation and lithium cation adduct formation of biguanide and metformin was examined at the same level of theory. The gas-phase protonation energetics reveal that the more stable tautomer is protonated at the terminal imino C═NH site, still with an internal hydrogen bond maintaining the structure of the neutral system. The calculated proton affinity and gas-phase basicity of the two molecules reach the domain of superbasicity. By contrast, the lithium cation prefers to bind the less stable, not fully conjugated, tautomer (NR2)C(═NH)-NH-C(═NH)NH2 of biguanides, in which the two C═NH groups are separated by NH. This less stable form of biguanides binds Li+ as a bidentate ligand, in agreement with what was reported in the literature for other metal cations in the solid phase. The quantitative assessment of resonance in biguanide, in metformin and in their protonated forms, using the HOMED and HOMA indices, reveals an increase in electron delocalization upon protonation. On the contrary, the most stable lithium cation adducts are less conjugated than the stable neutral biguanides, because the metal cation is better coordinated by the not-fully conjugated bidentate tautomer.

Entities:  

Mesh:

Substances:

Year:  2017        PMID: 29035049     DOI: 10.1021/acs.jpca.7b09338

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  2 in total

1.  Nitriles with High Gas-Phase Basicity-Part II Transmission of the Push-Pull Effect through Methylenecyclopropene and Cyclopropenimine Scaffolds Intercalated between Different Electron Donor(s) and the Cyano N-Protonation Site.

Authors:  Ewa D Raczyńska; Jean-François Gal; Pierre-Charles Maria; Ghulam Sakhi Sakhawat; Mohammad Qasem Fahim; Hamid Saeidian
Journal:  Molecules       Date:  2022-07-07       Impact factor: 4.927

2.  Purine tautomeric preferences and bond-length alternation in relation with protonation-deprotonation and alkali metal cationization.

Authors:  Ewa D Raczyńska; Jean-François Gal; Pierre-Charles Maria; Beata Kamińska; Małgorzata Igielska; Julian Kurpiewski; Weronika Juras
Journal:  J Mol Model       Date:  2020-04-04       Impact factor: 1.810

  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.