International Journal of Molecular Sciences (Dec 2023)

Structure and Neuroprotector Properties of a Complex Compound of Lithium with Comenic Acid

  • Stanislav Kozin,
  • Alexandr Kravtsov,
  • Lev Ivashchenko,
  • Victor Dotsenko,
  • Stepan Dzhimak,
  • Nicolai Aksenov,
  • Arthur Vashurin,
  • Vasily Ivlev,
  • Mikhail Baryshev,
  • Alexandr Bespalov,
  • Lilia Fedulova,
  • Anna Dorohova,
  • Anastasia Anashkina

DOI
https://doi.org/10.3390/ijms25010286
Journal volume & issue
Vol. 25, no. 1
p. 286

Abstract

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The structure, antioxidant and neuroprotective properties of lithium comenate (lithium 5-hydroxy-4-oxo-4H-pyran-2-carboxylate) were studied. Lithium comenate was obtained by reacting comenic acid (H2Com) with lithium hydroxide in an aqueous solution. The structure of lithium comenate was confirmed via thermal analysis, mass spectrometry, IR, NMR and UV spectroscopy. The crystal structure was studied in detail via X-ray diffraction. The compound crystallized in a non-centrosymmetric space group of symmetry of the orthorhombic system Pna21 in the form of a hydrate, with three water molecules entering the first coordination sphere of the cation Li+ and one molecule forming a second environment through non-valent contacts. The gross formula of the complex compound was established [Li(HCom)(H2O)3]·H2O. It has been established that lithium comenate has a pronounced neuroprotective activity under the excitotoxic effect of glutamate, increasing the survival rate of cultured rat cerebellar neurons more than two-fold. It has also been found that the pre-stress use of lithium comenate at doses of 1 and 2 mg/kg has an antioxidant effect, which is manifested in a decrease in oxidative damage to the brain tissues of mice subjected to immobilization stress. Based on the data available in the literature, we believe that the high neuroprotective and antioxidant efficacy of lithium comenate is a consequence of the mutual potentiation of the pharmacological effects of lithium and comenic acid.

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