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Kinetics and Mechanism of Epinephrine Autoxidation in the Presence of Plant Superoxide Inhibitors: A New Look at the Methodology of Using a Model System in Biological and Chemical Research

  • Vladimir Volkov*
  • , Anton Lobanov
  • , Mikhail Voronkov
  • , Timur Baygildiev
  • , Vyacheslav Misin
  • , Olga Tsivileva*
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Superoxide is the primary active oxygen form produced in living organisms. Because of superoxide anion radical formation during epinephrine oxidation in alkaline medium, this system is offered in some works for antioxidant activity analysis, however, without enough physicochemical justification. Therefore, the task of developing reliable methods for analyzing the superoxide inhibition activity of various objects is very urgent. In this work, a kinetic model of epinephrine autoxidation in an alkaline medium in the presence of antioxidants of plant origin is proposed. The participation of chain reactions with long oxidation chains in this process is revealed. The limiting stage of the process is a one-electron reduction of oxygen by the anionic forms of the phenolic hydroxyls of epinephrine. The appearance of the absorption maximum at a wavelength of 347 nm during epinephrine autoxidation is associated with adrenolutin formation, which is confirmed by HPLC/UV/MS. No adduct formation between phenolic antioxidants and epinephrine oxidation products was found. The complex U-shaped character of epinephrine autoxidation rate dependence on the content of antioxidants in the reaction system was shown. The study of the kinetics of epinephrine autoxidation in the presence of an individual phenolic plant superoxide inhibitor, chlorogenic acid, was carried out for the first time. The inhibitory effect of yarrow, chamomile, and bur beggar-ticks plant extracts in the adrenaline system was examined.

Original languageEnglish
Article number1530
Pages (from-to)1-17
Number of pages17
JournalAntioxidants
Volume12
Issue number8
Early online date30 Jul 2023
DOIs
Publication statusPublished - Aug 2023

Bibliographical note

This article belongs to the Special Issue: Antioxidant Compounds of Plants Materials: From Extraction to Applications.

Publisher Copyright:
© 2023 by the authors.

Funding

This work was carried out with the financial support of the Ministry of Science and Higher Education of the Russian Federation. Natural antioxidant compositions research is supported in part by the Russian Science Foundation, project No. 22-24-00415.

Keywords

  • antioxidants
  • autoxidation
  • chlorogenic acid
  • epinephrine
  • medicinal plants
  • superoxide

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