Micromolecular inhibitors of superoxide radicals
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ANDRONACHE, Lilia, PANTEA, Valeriana, GULYA, Aurelian, SHVETS, Inna, GRAUR, Vasilii О., MATCOVSCHI, Valeriu, GAMANIUC, Marina, GUDUMAK, V.. Micromolecular inhibitors of superoxide radicals. In: Moldovan Medical Journal, 2021, nr. 6(64), pp. 5-9. ISSN 2537-6373. DOI: https://doi.org/10.52418/moldovan-med-j.64-6.21.01
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Moldovan Medical Journal
Numărul 6(64) / 2021 / ISSN 2537-6373 /ISSNe 2537-6381

Micromolecular inhibitors of superoxide radicals

DOI:https://doi.org/10.52418/moldovan-med-j.64-6.21.01
CZU: UDC:612.015.3+546.56+577.334

Pag. 5-9

Andronache Lilia1, Pantea Valeriana1, Gulya Aurelian2, Shvets Inna1, Graur Vasilii О.2, Matcovschi Valeriu3, Gamaniuc Marina1, Gudumak V.1
 
1 ”Nicolae Testemițanu” State University of Medicine and Pharmacy,
2 Moldova State University,
3 Diomid Gherman Institute of Neurology and Neurosurgery
 
Proiecte:
 
Disponibil în IBN: 30 decembrie 2021


Rezumat

Background: Currently, there is a growing interest in new copper (Cu2+) heterocyclic coordination compounds (CC), isothiosemicarbazide derivates, which demonstrated multiple beneficial properties, but their effect on reactions with free radicals such as the superoxide radical has not been investigated. Material and methods: The action of new micromolecular complexes of copper (Cu2+) chloride and bromide with methyl n- (prop-2-en-1-yl) -2- (pyridin2-ylmethylidene) hydrazine carbimidothioate on capturing activity of the superoxide radical was determined by the spectrophotometric method in vitro experiments. Results: It was established that the micromolecular complexes of copper (II) chloride and bromide with methyl n-(prop-2-en-1-yl)-2-(pyridin-2ylmethylidene) hydrazine carbimidothioate have been found to possess strong superoxide radical inhibitor properties when interacting with a superoxide radical. In addition to this, the IC50 of the studied compounds depends on the nature of the acid-ligand in the internal sphere of the complex and increases in the following sequence: Cl-–Br-. Conclusions: The established property of mentioned compounds is new, because their use as micromolecular inhibitors of superoxide radicals has not been described so far. The synthesized CC expand the arsenal of superoxide radical inhibitors with high biological activity. Their possible significance for the development of new treatment strategies for diseases associated with the overproduction of superoxide radicals is discussed.

Cuvinte-cheie
superoxide radical inhibitors, coordination compounds, isothiosemicarbazide derivates