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Combined quercetin and simvastatin attenuate hepatic fibrosis in rats by modulating SphK1/NLRP3 pathways
Yasmin A Salama1, Hanan M Hassan2, Amal M El-Gayar3
1Department of Biochemistry, Faculty of Pharmacy, Mansoura University, 35516, Egypt; Department of Pharmacology and Biochemistry, Faculty of Pharmacy, Delta University for Science and Technology, Gamasa 11152, Egypt.
Abstract:
Liver fibrosis involves several signalling pathways working in concert regulating the deposition of extracellular matrix. In this study, we evaluated the effect of quercetin and simvastatin alone and their combination on the treatment of experimentally induced hepatic fibrosis in rats. To decipher the potential mechanisms involved, liver fibrosis was induced in rats by administration of 40 % carbon tetrachloride (CCl4) (1 μl/g rat, i.p., twice weekly) for 6 weeks. Quercetin (50 mg/kg, orally), simvastatin (40 mg/kg, orally) either individually or combined were administered for another 4 weeks. The three treatment groups ameliorated hepatic dysfunction and altered parameters of sphingolipid and pyroptosis pathways. Yet, the combined group showed a more pronounced effect. Treatments lowered serum levels of GOT, GPT, ALP and elevated albumin and total protein levels. Histopathological and electron microscope examination of liver tissue revealed diminished fibrosis and inflammation. Protein expression levels of α-SMA, IL-1β, PPAR-γ, TGF-β1, caspase-1 and caspase-3 expression in liver tissues were reduced. Additionally, hepatic mRNA levels of SphK1 and NLRP3 decreased after treatment. Furthermore, the three groups lowered MDA levels and elevated total antioxidant capacity, GSH and Nrf2 expression levels. Treatments downregulated sphingolipid pathway and NLRP3-mediated pyroptosis and stimulated an anti-apoptotic, anti-proliferative and antioxidant activity. This suggests that targeting the SphK1/NLRP3 pathway could be a prospective therapeutic strategy against liver fibrosis.
Insights
Quercetin and simvastatin treatments reduced liver fibrosis in rats by downregulating sphingolipid and pyroptosis pathways. The combination therapy demonstrated the most significant improvements in liver function and tissue health.
Area of Science:
- Hepatology
- Pharmacology
- Biochemistry
Background:
- Liver fibrosis is a complex process involving extracellular matrix deposition regulated by multiple signaling pathways.
- Current therapeutic strategies for liver fibrosis have limitations, necessitating the exploration of novel treatment approaches.
Purpose of the Study:
- To investigate the efficacy of quercetin and simvastatin, alone and in combination, for treating experimentally induced liver fibrosis in rats.
- To elucidate the underlying mechanisms, focusing on sphingolipid and pyroptosis pathways.
Main Methods:
- Liver fibrosis was induced in rats using carbon tetrachloride (CCl4).
- Rats were treated with quercetin, simvastatin, or a combination thereof.
- Hepatic function, histopathology, oxidative stress markers, and protein/mRNA expression of key pathway components were assessed.
Main Results:
- All treatment groups showed improved liver function, reduced fibrosis, and inflammation.
- Combined quercetin and simvastatin exhibited a more pronounced therapeutic effect.
- Treatments downregulated sphingolipid metabolism (SphK1) and NLRP3-mediated pyroptosis, while enhancing antioxidant capacity (Nrf2, GSH).
Conclusions:
- Quercetin and simvastatin effectively ameliorate carbon tetrachloride-induced liver fibrosis in rats.
- The SphK1/NLRP3 pathway is a potential therapeutic target for liver fibrosis treatment.
- Combined therapy offers a promising strategy for managing liver fibrosis.
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