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Loureirin B Attenuates Methotrexate-Induced Liver Injury Associated with Oxidative Stress, SIRT1 Alterations, and
İrem Hengirmen Acu1, Oytun Erbaş2
1Department of Dermatology and Venereology, Faculty of Medicine, Ufuk University, Çankaya, Ankara 06510, Turkey.
Abstract:
Background: Methotrexate-induced oxidative stress is mechanistically linked not only to hepatocellular injury but also to DNA damage, indicating that oxidative stress, hepatotoxicity, and genotoxicity represent interconnected manifestations of the same antifolate-driven toxic cascade. Methotrexate (MTX)-induced hepatotoxicity is characterized not only by oxidative stress, but also by progressive fibrotic remodeling driven by activation of the TGF-β/SMAD signaling pathway. Objective: We aimed to examine the hepatoprotective effects of Loureirin B, with a particular focus on its anti-fibrotic potential and underlying molecular mechanisms in MTX-induced liver injury. Methods: Thirty female Wistar rats were assigned to normal control, MTX, and MTX + Loureirin B groups. Liver injury was induced with a single intraperitoneal MTX dose (20 mg/kg), followed by oral administration of Loureirin B (50 mg/kg/day) for 10 days. Biochemical, molecular, and histopathological analyses were performed, including ALT, AST, ALP, MDA, SIRT1, TGF-β, SMAD3, hydroxyproline, and VEGF levels, alongside the evaluation of necrosis, fibrosis, and inflammatory infiltration. Results: MTX induced significant hepatic injury characterized by elevated serum ALT, AST, and ALP levels, increased oxidative stress, suppression of SIRT1, and increased TGF-β and SMAD3 levels, accompanied by elevated collagen-associated markers. Loureirin B treatment significantly reduced the serum liver enzyme levels and oxidative stress, partially restored SIRT1 levels, and decreased fibrosis-associated markers, including hydroxyproline and VEGF. Although the TGF-β levels were significantly reduced following Loureirin B treatment, the reduction in SMAD3 levels did not remain statistically significant after correction for multiple comparisons. Histopathological findings further demonstrated attenuation of fibrosis-associated changes and partial improvement in hepatic architecture. Conclusions: Loureirin B may exert protective effects against methotrexate-associated liver injury through the modulation of oxidative stress, partial restoration of SIRT1 levels, attenuation of profibrotic alterations associated with the TGF-β/SMAD pathway, and modulation of VEGF-related responses.
Insights
Loureirin B protects against methotrexate-induced liver injury by reducing oxidative stress and fibrosis. It partially restores SIRT1 and modulates key fibrotic pathways, improving liver health.
Area of Science:
- Hepatology
- Toxicology
- Pharmacology
Background:
- Methotrexate (MTX) causes liver injury via oxidative stress, hepatotoxicity, and genotoxicity.
- MTX-induced liver damage involves progressive fibrosis driven by the TGF-β/SMAD pathway.
- Oxidative stress, hepatotoxicity, and genotoxicity are interconnected in MTX toxicity.
Purpose of the Study:
- To evaluate the hepatoprotective effects of Loureirin B in MTX-induced liver injury.
- To investigate Loureirin B's anti-fibrotic potential and molecular mechanisms.
Main Methods:
- Thirty Wistar rats were divided into control, MTX, and MTX + Loureirin B groups.
- Liver injury was induced by MTX; Loureirin B was administered orally for 10 days.
- Analyses included liver enzymes (ALT, AST, ALP), oxidative stress markers (MDA), SIRT1, TGF-β, SMAD3, hydroxyproline, VEGF, and histopathology.
Main Results:
- MTX increased liver enzymes, oxidative stress, and fibrosis markers, while decreasing SIRT1.
- Loureirin B treatment reduced liver enzymes, oxidative stress, and fibrosis markers (hydroxyproline, VEGF).
- Loureirin B partially restored SIRT1 and reduced TGF-β; fibrosis and hepatic architecture showed improvement.
Conclusions:
- Loureirin B offers protection against MTX-induced liver injury.
- Mechanisms include modulating oxidative stress, partially restoring SIRT1, and attenuating TGF-β/SMAD pathway fibrosis.
- Loureirin B also influences VEGF-related responses in MTX-induced liver damage.