Biological Activity of 3-Hydroxypyridine Derivatives with Natural Components

We investigated the antiradical properties of antioxidants: carnitinate 2-ethyl-6-methyl-3-hydroxypyridine (CAR-3-HP) and carboxychromate-2-ethyl-6-methyl-3-hydroxypyridine (CCR-3-HP), and also assessed the mitochondrial response to stress (hypoxia) by analyzing the intensity of lipid peroxidation, membrane fatty acid composition, and activation of autophagy markers LC3 and Beclin-1 using spectrofluorimetry, chromatography, and immunoblotting, respectively. The studied antioxidants exhibited high antiradical activity, which was reflected in their ability to inhibit lipid peroxidation. Five-day administration of antioxidants to mice at a dose of 2 × 10−9 mol/kg prevented the activation of lipid peroxidation in liver mitochondrial membranes under conditions of acute hypobaric hypoxia. The drugs also prevented a decrease in C18 and C20 fatty acid levels, and also activated autophagy. In both cases, CAR-3-HP was more effective than CCR-3-HP. This drug increased the lifespan of mice almost twice as effectively under conditions of various types of hypoxias.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-10-07
DOI
https://doi.org/10.3390/ijms27198903
Primary Topic
Antioxidant Activity and Oxidative Stress
Type
article
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article

Biological Activity of 3-Hydroxypyridine Derivatives with Natural Components

Timur L. Veprintsev, I. F. Rusina, Anastasia A. Albantova, Irina V. Zhigacheva et al.
International Journal of Molecular Sciences
Antioxidant Activity and Oxidative Stress
article

Biological Activity of 3-Hydroxypyridine Derivatives with Natural Components

Timur L. Veprintsev, I. F. Rusina, Anastasia A. Albantova, Irina V. Zhigacheva, Л. И. Матиенко, Natalya I. Krikunova, Alexander N. Goloshchapov, Elena M. Mil
article en

Abstract

We investigated the antiradical properties of antioxidants: carnitinate 2-ethyl-6-methyl-3-hydroxypyridine (CAR-3-HP) and carboxychromate-2-ethyl-6-methyl-3-hydroxypyridine (CCR-3-HP), and also assessed the mitochondrial response to stress (hypoxia) by analyzing the intensity of lipid peroxidation, membrane fatty acid composition, and activation of autophagy markers LC3 and Beclin-1 using spectrofluorimetry, chromatography, and immunoblotting, respectively. The studied antioxidants exhibited high antiradical activity, which was reflected in their ability to inhibit lipid peroxidation. Five-day administration of antioxidants to mice at a dose of 2 × 10−9 mol/kg prevented the activation of lipid peroxidation in liver mitochondrial membranes under conditions of acute hypobaric hypoxia. The drugs also prevented a decrease in C18 and C20 fatty acid levels, and also activated autophagy. In both cases, CAR-3-HP was more effective than CCR-3-HP. This drug increased the lifespan of mice almost twice as effectively under conditions of various types of hypoxias.

International Journal of Molecular SciencesVol. 27(19)
Russian Academy of Sciences (RU), Semenov Institute of Chemical Physics (RU), Institute of Biochemical Physics NM Emanuel (RU)
Openalex Percentile: Top 14%
Antioxidant Activity and Oxidative Stress
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Biological Activity of 3-Hydroxypyridine Derivatives with Natural Components — Timur L. Veprintsev, I. F. Rusina, et al. · International Journal of Molecular Sciences (2026) | TGRS Research Map | TGRS