1.Metformin alleviates cholestasis-associated nephropathy through regulating oxidative stress and mitochondrial function
Mohammad Mehdi Ommati ; Hamidreza Mohammadi ; Khadijeh Mousavi ; Negar Azarpira ; Omid Farshad ; Reyhaneh Dehghani ; Asma Najibi ; Sedigheh Kamran ; Hossein Niknahad ; Reza Heidari
Liver Research 2021;5(3):171-180
Background and aim
Cholestasis-associated renal injury or cholemic nephropathy (CN) is a serious clinical problem. Previous studies mentioned that oxidative stress and mitochondrial impairment play a role in CN. There is no specific pharmacological intervention for CN. Metformin is an anti-diabetic drug administered for decades. On the other hand, novel pharmacological properties have emerged for this drug. The effect of metformin on oxidative stress parameters has been well-recognized in different experimental models. It has also been found that metformin positively affected mitochondrial function. The current study aimed to evaluate the effects of metformin in an animal model of CN.
Methods
Rats underwent bile duct ligation (BDL) and were treated with metformin (250 and 500 mg/kg) for 14 consecutive days. Two weeks after the BDL operations, urine, serum, and kidney samples were collected and analyzed.
Results
Markers of oxidative stress, including reactive oxygen species (ROS) formation, lipid peroxidation, protein carbonylation, depleted antioxidant capacity, and decreased glutathione (GSH) levels were detected in BDL animals. Moreover, mitochondrial indices, including adenosine triphosphate (ATP) level, dehydrogenase activity, mitochondrial membrane potential, and mitochondrial permeability, were impaired in the kidney of cholestatic rats. Renal histopathological alterations in cholestatic animals included tubular degeneration and interstitial inflammation, cast formation, and fibrosis. It was found that metformin significantly alleviated oxidative stress and improved mitochondrial indices in the kidney of cholestatic rats. Tissue histopathological alterations were also mitigated in metformin-treated groups.
Conclusions
Metformin could be a candidate for managing CN. The nephroprotective role of metformin is primarily associated with its effects on oxidative stress parameters and mitochondrial function.
2.Mitigation of cholestasis-associated hepatic and renal injury by edaravone treatment: Evaluation of its effects on oxidative stress and mitochondrial function
Mohammad Mehdi Ommati ; Hanie Attari ; Asma Siavashpour ; Marzieh Shafaghat ; Negar Azarpira ; Hasti Ghaffari ; Leila Moezi ; Reza Heidari
Liver Research 2021;5(3):181-193
Background and aim
The liver is the primary organ affected by cholestasis, and complications such as renal injury, renal failure, and the need for renal transplantation are associated with cholestatic liver disease. There is substantial evidence indicating that reactive oxygen species (ROS) and mitochondrial impairment are fundamental mechanisms underlying cholestasis-induced hepatic and renal injury. Edaravone (EDV) is a potent radical scavenger and antioxidant that may prevent oxidative stress and improve impaired mitochondrial function in various diseases. This study was performed to evaluate the effects and mechanisms of action of EDV on hepatic and renal injury in an animal model of cholestasis.
Methods
Rats subjected to bile duct ligation (BDL) were treated with EDV 1 or 10 mg/kg/day intraperitoneally for 14 consecutive days. Biomarkers of oxidative stress and mitochondrial impairment in the liver and kidney were assessed in EDV-treated and untreated rats with cholestasis.
Results
Significant increases in tissue ROS level, lipid peroxidation, protein carbonylation, and oxidized glutathione level were detected in rats subjected to BDL. Additionally, significant decreases in tissue glutathione level and antioxidant capacity were observed in the hepatic and renal tissues of rats with cholestasis. Markers of mitochondrial impairment, including mitochondrial depolarization, lipid peroxidation, mitochondrial permeabilization, depleted adenosine triphosphate content, and decreased dehydrogenase activity, were also detected in rats subjected to BDL. Furthermore, portal inflammation, necrosis, and tissue fibrosis were detected in the liver and significant tubular atrophy and interstitial inflammation, as well as fibrotic lesions, were detected in the kidneys of rats with cholestasis. EDV treatment significantly mitigated cholestasis-associated hepatic and renal injury.
Conclusions
The antioxidative properties of EDV and its positive effects on the indices of mitochondrial function may be critical factors contributing to protection against cholestasis-associated hepatic and renal injury.


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