Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/112209
Title: Design and Antioxidant Properties of Bifunctional 2H-Imidazole-Derived Phenolic Compounds-A New Family of Effective Inhibitors for Oxidative Stress-Associated Destructive Processes
Authors: Gerasimova, E. L.
Gazizullina, E. R.
Borisova, M. V.
Igdisanova, D. I.
Nikiforov, E. A.
Moseev, T. D.
Varaksin, M. V.
Chupakhin, O. N.
Charushin, V. N.
Ivanova, A. V.
Issue Date: 2021
Publisher: MDPI
MDPI AG
Citation: Design and Antioxidant Properties of Bifunctional 2H-Imidazole-Derived Phenolic Compounds-A New Family of Effective Inhibitors for Oxidative Stress-Associated Destructive Processes / E. L. Gerasimova, E. R. Gazizullina, M. V. Borisova et al. // Molecules. — 2021. — Vol. 26. — Iss. 21. — 6534.
Abstract: The synthesis of inhibitors for oxidative stress-associated destructive processes based on 2H-imidazole-derived phenolic compounds affording the bifunctional 2H-imidazole-derived phenolic compounds in good-to-excellent yields was reported. In particular, a series of bifunctional organic molecules of the 5-aryl-2H-imidazole family of various architectures bearing both electron-donating and electron-withdrawing substituents in the aryl fragment along with the different arrangements of the hydroxy groups in the polyphenol moiety, namely derivatives of phloroglucinol, pyrogallol, hydroxyquinol, including previously unknown water-soluble molecules, were studied. The structural and antioxidant properties of these bifunctional 5-aryl-2H-imidazoles were comprehensively studied. The redox transformations of the synthesized compounds were carried out. The integrated approach based on single and mixed mechanisms of antioxidant action, namely the AOC, ARC, Folin, and DPPH assays, were applied to estimate antioxidant activities. The relationship “structure-antioxidant properties” was established for each of the antioxidant action mechanisms. The conjugation effect was shown to result in a decrease in the mobility of the hydrogen atom, thus complicating the process of electron transfer in nearly all cases. On the contrary, the conjugation in imidazolyl substituted phloroglucinols was found to enhance their activity through the hydrogen transfer mechanism. Imidazole-derived polyphenolic compounds bearing the most electron-withdrawing functionality, namely the nitro group, were established to possess the higher values for both antioxidant and antiradical capacities. It was demonstrated that in the case of phloroglucinol derivatives, the conjugation effect resulted in a significant increase in the antiradical capacity (ARC) for a whole family of the considered 2H-imidazole-derived phenolic compounds in comparison with the corresponding unsubstituted phenols. Particularly, conjugation of the polyphenolic subunit with 2, 2-dimethyl-5-(4- nitrophenyl)-2H-imidazol-4-yl fragment was shown to increase ARC from 2.26 to 5.16 (104 mol-eq/L). This means that the considered family of compounds is capable of exhibiting an antioxidant activity via transferring a hydrogen atom, exceeding the activity of known natural polyphenolic compounds. © 2021 by the authors.
Keywords: 2H-IMIDAZOLE
ANTIOXIDANT CAPACITY
ANTIRADICAL CAPACITY
POLYPHENOLS
1,1-DIPHENYL-2-PICRYLHYDRAZYL
ANTIOXIDANT
BIPHENYL DERIVATIVE
IMIDAZOLE
IMIDAZOLE DERIVATIVE
PHENOL DERIVATIVE
PICRIC ACID
CHEMICAL STRUCTURE
CHEMISTRY
DOSE RESPONSE
DRUG DESIGN
DRUG EFFECT
OXIDATIVE STRESS
SYNTHESIS
ANTIOXIDANTS
BIPHENYL COMPOUNDS
DOSE-RESPONSE RELATIONSHIP, DRUG
DRUG DESIGN
IMIDAZOLES
MOLECULAR STRUCTURE
OXIDATIVE STRESS
PHENOLS
PICRATES
URI: http://elar.urfu.ru/handle/10995/112209
Access: info:eu-repo/semantics/openAccess
RSCI ID: 47535347
SCOPUS ID: 85120667461
WOS ID: 000719489600001
PURE ID: 28959271
ISSN: 1420-3049
DOI: 10.3390/molecules26216534
metadata.dc.description.sponsorship: This work was financially supported within the framework of the grant agreement as government subsidies from the Federal budget in accordance with paragraph 4 of article 78.1 of the Budget Code of the Russian Federation (Moscow, 1 October 2020, No. 075-15-2020-777).
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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