» Articles » PMID: 37512162

SIRT1/Nrf2/NF-κB Signaling Mediates Anti-Inflammatory and Anti-Apoptotic Activities of Oleanolic Acid in a Mouse Model of Acute Hepatorenal Damage

Overview
Publisher MDPI
Specialty General Medicine
Date 2023 Jul 29
PMID 37512162
Authors
Affiliations
Soon will be listed here.
Abstract

Oleanolic acid (OA) is a penta-cyclic triterpene with diverse bioactivities such as anticarcinogenic, antiviral, antimicrobial, hepatoprotective, anti-atherosclerotic, hypolipidemic, and gastroprotective. However, its effects on hepatorenal damage remain unclear. The protective activity of OA, separated from (Loranthaceae), against TAA (thioacetamide)-produced acute hepatic and renal damage was explored. Mice were treated with OA for 7 days before TAA (200 mg/kg, i.p.). Serum indices of hepatorenal injury, pathological lesions, molecular biological indexes, and inflammatory/apoptotic genes were estimated. The tissues of both organs were greatly affected by the TAA injection. That was evident through increased serum markers of hepato-renal injury as well as remarkable histopathological lesions. TAA-induced injury was associated with oxidative and inflammatory responses in both organs as there was an elevation of oxidative stress parameters (4-HNE (4-hydroxy-nonenal), MDA (malondialdehyde), NOx (nitric oxide)), decline of antioxidants (reduced glutathione (GSH), superoxide dismutase (SOD), and total antioxidant capacity (TAC)), and an increase in the gene expression/level of inflammatory mediators (interleukins (1β&6)). The inflammatory response was linked to a significant activation of NF-κB (nuclear-factor kappa-B)/TNF-α (tumor-necrosis factor-alpha) signaling. The inflammatory response in both organs was accompanied by apoptotic changes, including a rise in the gene expression and level of apoptotic parameters (caspase-3 and Bax) along with a decline in Bcl-2 (anti-apoptotic parameter) gene expression and level. These pathogenic events were found to be closely related to the suppression of the antioxidant signaling pathway, Nrf2 (nuclear-factor erythroid 2-related factor-2)/SIRT1 (sirtuin-1)/HO-1 (heme-oxygenase 1). On the other hand, OA significantly ameliorated TAA-induced injury in both organs. On the other hand, OA counterpoised the inflammatory response as it ameliorated NF-κB/TNF-α signaling and cytokine release. OA enhanced Nrf2/SIRT1/HO-1 signaling and counteracted apoptotic damage. OA showed anti-inflammation and antiapoptotic capacities that effectively suppressed TAA-induced acute hepatorenal damage.

Citing Articles

Activation of SIRT1 by Hydroxysafflor Yellow A Attenuates Chronic Unpredictable Mild Stress-Induced Microglia Activation and Iron Death in Depressed Rats.

He J, He M, Yang P, Shangguan J, Jiang L, Liu Z Brain Behav. 2025; 15(3):e70385.

PMID: 40059449 PMC: 11891294. DOI: 10.1002/brb3.70385.


Stem Cell Therapy Modulates Molecular Cues of Vasogenic Edema Following Ischemic Stroke: Role of Sirtuin-1 in Regulating Aquaporin-4 Expression.

Datta A, Ghosh B, Barik A, Karmarkar G, Sarmah D, Borah A Stem Cell Rev Rep. 2025; .

PMID: 39888572 DOI: 10.1007/s12015-025-10846-3.


Renal Health Through Medicine-Food Homology: A Comprehensive Review of Botanical Micronutrients and Their Mechanisms.

Zhao Y, Song J, Feng R, Hu J, Xu H, Ye M Nutrients. 2024; 16(20).

PMID: 39458524 PMC: 11510533. DOI: 10.3390/nu16203530.


Therapeutic Potential of Terpenoids in Cancer Treatment: Targeting Mitochondrial Pathways.

Guo J, Huang M, Hou S, Yuan J, Chang X, Gao S Cancer Rep (Hoboken). 2024; 7(9):e70006.

PMID: 39234662 PMC: 11375335. DOI: 10.1002/cnr2.70006.


Production of Fucoxanthin from Microalgae of Djibouti: Optimization, Correlation with Antioxidant Potential, and Bioinformatics Approaches.

Mohamed Abdoul-Latif F, Ainane A, Achenani L, Merito Ali A, Mohamed H, Ali A Mar Drugs. 2024; 22(8).

PMID: 39195473 PMC: 11355383. DOI: 10.3390/md22080358.


References
1.
Dwivedi D, Jena G, Kumar V . Dimethyl fumarate protects thioacetamide-induced liver damage in rats: Studies on Nrf2, NLRP3, and NF-κB. J Biochem Mol Toxicol. 2020; 34(6):e22476. DOI: 10.1002/jbt.22476. View

2.
Obert L, Elmore S, Ennulat D, Frazier K . A Review of Specific Biomarkers of Chronic Renal Injury and Their Potential Application in Nonclinical Safety Assessment Studies. Toxicol Pathol. 2021; 49(5):996-1023. PMC: 8195817. DOI: 10.1177/0192623320985045. View

3.
Amer M, Mazen N, Mohamed A . Caffeine intake decreases oxidative stress and inflammatory biomarkers in experimental liver diseases induced by thioacetamide: Biochemical and histological study. Int J Immunopathol Pharmacol. 2017; 30(1):13-24. PMC: 5806787. DOI: 10.1177/0394632017694898. View

4.
Mustafa H, Awdan S, Hegazy G . Protective role of antioxidants on thioacetamide-induced acute hepatic encephalopathy: biochemical and ultrastructural study. Tissue Cell. 2013; 45(5):350-62. DOI: 10.1016/j.tice.2013.06.001. View

5.
El-Kashef D, Serrya M . Sitagliptin ameliorates thioacetamide-induced acute liver injury via modulating TLR4/NF-KB signaling pathway in mice. Life Sci. 2019; 228:266-273. DOI: 10.1016/j.lfs.2019.05.019. View