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Updated: May 9, 2026

Murine Precision-Cut Liver Slices as an Ex Vivo Model of Liver Biology
Published on: March 14, 2020
Caffeine prevents experimental liver fibrosis by blocking the expression of TGF-β
Jonathan Arauz1, Natanael Zarco, José Segovia
1Departments of aPharmacology bPhysiology, Biophysics and Neuroscience cInfectomics and Molecular Pathogenesis, Cinvestav-IPN., Mexico, D.F. Mexico.
Background:
There is a growing body of evidence that caffeine exerts beneficial effects on the liver; however, the molecular mechanisms by which caffeine exerts beneficial effects on the liver are poorly defined.
Aims:
The aim of the present study was to examine the efficacy of caffeine in preventing thioacetamide (TAA)-induced cirrhosis in rats.
Materials And Methods:
Cirrhosis was induced by chronic TAA administration and the effects of coadministration of caffeine for 8 weeks were evaluated, including control groups.
Results:
The administration of TAA induced liver cirrhosis, which was inhibited by caffeine. Caffeine prevents elevation of liver enzymes. Liver histopathology and hydroxyproline levels were significantly lower in the rats treated with TAA plus caffeine compared with TAA only. Caffeine shows antioxidant properties by restoring the redox equilibrium [lipid peroxidation and glutathione peroxidase (GPx) levels]. Western blot assays showed blockade of the expression of transforming growth factor-β and its downstream inductor connective tissue growth factor. Similarly, caffeine decreases messenger RNA levels of these profibrogenic proteins. In addition, caffeine inhibits hepatic stellate cells because of blockade of the expression of α-smooth muscle actin; in the western blot assay, we also found low levels of mRNA of collagen α1. Zymography assays showed that caffeine had an effect on the activity of matrix metalloproteinases 2 and 9, but no effect on the expression of tissue inhibitor of metalloproteinases-1, using RT-PCR.
Conclusion:
Our results show that caffeine prevents experimental cirrhosis; the mechanisms of action are associated with its antioxidant properties and mainly by its ability to block the elevation of the profibrogenic cytokine transforming growth factor-β, which may be associated with attenuation of the inflammatory and fibrotic processes.
Insights
Caffeine effectively prevents liver cirrhosis in rats by reducing liver damage and inflammation. Its antioxidant properties and ability to block key fibrotic factors are key to its protective effects.
Area of Science:
- Hepatology
- Pharmacology
- Toxicology
Background:
- Emerging evidence suggests caffeine benefits liver health.
- Molecular mechanisms underlying caffeine's hepatoprotective effects require further elucidation.
Purpose of the Study:
- To investigate caffeine's efficacy in preventing thioacetamide (TAA)-induced liver cirrhosis in a rat model.
- To explore the underlying mechanisms of caffeine's protective action against liver fibrosis.
Main Methods:
- Liver cirrhosis was induced in rats via chronic TAA administration.
- Caffeine was co-administered for 8 weeks, with control groups included.
- Liver enzymes, histopathology, hydroxyproline, redox balance, and fibrogenic markers were assessed.
Main Results:
- Caffeine administration inhibited TAA-induced liver cirrhosis and prevented elevated liver enzymes.
- Caffeine treatment significantly reduced liver histopathology and hydroxyproline levels.
- Caffeine demonstrated antioxidant properties, restored redox equilibrium, and blocked key profibrogenic factors like TGF-β and CTGF.
Conclusions:
- Caffeine prevents experimental liver cirrhosis through antioxidant mechanisms.
- Caffeine's antifibrotic action is primarily mediated by blocking transforming growth factor-β (TGF-β) signaling.
- These effects contribute to the attenuation of hepatic inflammation and fibrotic processes.
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