Oxidative stress–driven metabolic interactions underlying the hepatoprotective effects of a phytocomplex in ethanol-induced liver injury

OBJECTIVES: This study aimed to investigate the interactions between biochemical, oxidative, and morphological markers of liver injury in an experimental model of alcoholic hepatitis and to evaluate the hepatoprotective efficacy of a herbal phytocomplex (AZHEPOFIT) within an integrated mechanistic framework. METHODS: Alcoholic hepatitis was induced in 40 male rats by oral ethanol administration combined with a high-fat diet for 21 days. From day 22, animals received AZHEPOFIT (1 mL/100 g body weight) daily for 14 days. Biochemical parameters, oxidative stress markers, antioxidant status, lipid profile, and liver histomorphology were assessed. Correlation analysis was performed using Spearman's coefficient. RESULTS: Alcoholic hepatitis was associated with pronounced cytolysis, cholestasis, oxidative stress, dyslipidemia, and marked histopathological alterations, including steatosis, hepatocyte ballooning, inflammation, necrosis, and early fibrosis. AZHEPOFIT administration significantly reduced cytolytic enzyme activity and lipid peroxidation, enhanced antioxidant defense, improved lipid metabolism, and attenuated structural liver damage. Strong correlations exist between oxidative stress markers and cytolytic enzymes, and inverse relationships with antioxidant parameters, indicating a coordinated pathogenic network linking oxidative stress, lipid metabolism, and hepatocellular injury. CONCLUSIONS: The hepatoprotective effects of AZHEPOFIT are associated with the modulation of interconnected oxidative stress-metabolic pathways. These findings provide mechanistic insight into phytotherapeutic intervention in alcohol-induced liver injury and support targeting redox-dependent pathways as a promising therapeutic strategy.

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Journal
Journal of Complementary and Integrative Medicine
Published
2026-08-24
DOI
https://doi.org/10.1515/jcim-2026-0117
Primary Topic
Alcohol Consumption and Health Effects
Type
article
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article

Oxidative stress–driven metabolic interactions underlying the hepatoprotective effects of a phytocomplex in ethanol-induced liver injury

S.V. Guliyeva, Sevinj Abasova, N. Guliyeva, Anaxanim Yusifova et al.
Journal of Complementary and Integrative Medicine
Alcohol Consumption and Health Effects
article

Oxidative stress–driven metabolic interactions underlying the hepatoprotective effects of a phytocomplex in ethanol-induced liver injury

S.V. Guliyeva, Sevinj Abasova, N. Guliyeva, Anaxanim Yusifova, Narmina Jabbarova, Besti Asadova, Rana Jafarova
article en

Abstract

OBJECTIVES: This study aimed to investigate the interactions between biochemical, oxidative, and morphological markers of liver injury in an experimental model of alcoholic hepatitis and to evaluate the hepatoprotective efficacy of a herbal phytocomplex (AZHEPOFIT) within an integrated mechanistic framework. METHODS: Alcoholic hepatitis was induced in 40 male rats by oral ethanol administration combined with a high-fat diet for 21 days. From day 22, animals received AZHEPOFIT (1 mL/100 g body weight) daily for 14 days. Biochemical parameters, oxidative stress markers, antioxidant status, lipid profile, and liver histomorphology were assessed. Correlation analysis was performed using Spearman's coefficient. RESULTS: Alcoholic hepatitis was associated with pronounced cytolysis, cholestasis, oxidative stress, dyslipidemia, and marked histopathological alterations, including steatosis, hepatocyte ballooning, inflammation, necrosis, and early fibrosis. AZHEPOFIT administration significantly reduced cytolytic enzyme activity and lipid peroxidation, enhanced antioxidant defense, improved lipid metabolism, and attenuated structural liver damage. Strong correlations exist between oxidative stress markers and cytolytic enzymes, and inverse relationships with antioxidant parameters, indicating a coordinated pathogenic network linking oxidative stress, lipid metabolism, and hepatocellular injury. CONCLUSIONS: The hepatoprotective effects of AZHEPOFIT are associated with the modulation of interconnected oxidative stress-metabolic pathways. These findings provide mechanistic insight into phytotherapeutic intervention in alcohol-induced liver injury and support targeting redox-dependent pathways as a promising therapeutic strategy.

Journal of Complementary and Integrative Medicine
Azerbaijan Medical University (AZ), Azerbaijan State Pedagogical University (AZ)
Good health and well-being
Openalex Percentile: Top 10%
Alcohol Consumption and Health Effects
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