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Axitinib attenuates the progression of liver fibrosis by restoring mitochondrial function
Hailong Li1, Ruotong Zhang2, Yayue Hu2
1The State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy and Key Laboratory of Molecular Drug Research, Nankai University, Tianjin 300350, China.
Abstract:
Liver fibrosis can progress to cirrhosis and hepatocellular carcinoma, which may eventually lead to liver failure and even death. No direct anti-fibrosis drugs are available at present. Axitinib is a new generation of potent multitarget tyrosine kinase receptor inhibitors, but its role in liver fibrosis remains unclear. In this study, a CCl4-induced hepatic fibrosis mouse model and a TGF-β1-induced hepatic stellate cell model were used to explore the effect and mechanism of axitinib on hepatic fibrosis. Results confirmed that axitinib could alleviate the pathological damage of liver tissue induced by CCl4 and inhibit the production of glutamic-oxalacetic transaminase and glutamic-pyruvic transaminase. It also inhibited collagen and hydroxyproline deposition and the protein expression of Col-1 and α-SMA in CCl4-induced liver fibrosis. In addition, axitinib inhibited the expression of CTGF and α-SMA in TGF-β1-induced hepatic stellate cells. Further studies showed that axitinib inhibited mitochondrial damage and reduced oxidative stress and NLRP3 maturation. The use of rotenone and antimycin A confirmed that axitinib could restore the activity of mitochondrial complexes I and III, thereby inhibiting the maturation of NLRP3. In summary, axitinib inhibits the activation of HSCs by enhancing the activity of mitochondrial complexes I and III, thereby alleviating the progression of liver fibrosis. This study reveals the strong potential of axitinib in the treatment of liver fibrosis.
Insights
Axitinib shows promise for treating liver fibrosis by improving liver health and reducing scarring. This drug targets mitochondrial function to inhibit hepatic stellate cell activation, offering a potential new therapy.
Area of Science:
- Biomedical research
- Pharmacology
- Hepatology
Background:
- Liver fibrosis is a precursor to cirrhosis and liver cancer, with no current direct anti-fibrosis treatments.
- Axitinib, a tyrosine kinase inhibitor, has an unclear role in liver fibrosis treatment.
Purpose of the Study:
- To investigate the therapeutic potential and mechanism of axitinib in liver fibrosis.
- To explore axitinib's effects on hepatic stellate cell activation and mitochondrial function.
Main Methods:
- Carbon tetrachloride (CCl4)-induced hepatic fibrosis mouse model.
- Transforming growth factor-beta 1 (TGF-β1)-induced hepatic stellate cell model.
- Assessment of liver damage markers, collagen deposition, and protein expression (Col-1, α-SMA, CTGF).
Main Results:
- Axitinib alleviated CCl4-induced liver damage, reduced liver enzymes (GOT, GPT), and inhibited collagen/hydroxyproline deposition.
- Axitinib suppressed Col-1 and α-SMA expression in fibrotic livers and CTGF/α-SMA in hepatic stellate cells.
- Axitinib mitigated mitochondrial damage, reduced oxidative stress, and inhibited NLRP3 inflammasome maturation by restoring mitochondrial complex I and III activity.
Conclusions:
- Axitinib demonstrates significant potential in treating liver fibrosis.
- The drug functions by enhancing mitochondrial complex I and III activity, inhibiting hepatic stellate cell activation, and reducing fibrosis progression.
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