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Model of Ischemia and Reperfusion Injury in Rabbits
Published on: November 3, 2023
Effects of ischemia-reperfusion and pretreatment with mildronate on rat liver mitochondrial function
Sonata Trumbeckaite1, Marius Kincius, Andrius Preidis
1Institute for Biomedical Research, Kaunas University of Medicine, Eiveniu 4, LT-50009 Kaunas-7, Lithuania. sonatai@centras.lt
Abstract:
Mildronate (3-(2,2,2-trimethylhydrazinium) propionate), which is mostly used in cardiological practice and is considered an anti-ischemic drug, was designed to inhibit carnitine biosynthesis in order to prevent accumulation of cytotoxic intermediate products of fatty acid beta-oxidation. Recently it was shown that the mitochondrial respiratory chain may also be a target for mildronate action. In this study, we aimed to investigate whether mildronate can protect the liver against a 90-min normothermic ischemia/30-min reperfusion-induced mitochondrial dysfunction. Rats were pre-treated for one or two weeks with mildronate (100 mg/kg/day or 200 mg/kg/day) or Ringer solution and subjected to ischemia/reperfusion.We found that ischemia/reperfusion caused a decrease in mitochondrial State 3 respiration rate and in the respiratory control index (RCI), and an increase in State 2 respiration rate with succinate, glutamate + malate and palmitoyl-L-carnitine + malate. One or two weeks of pre-treatment of rats with different doses of mildronate did not reduce the ischemia/reperfusion-induced decrease in the State 3 respiration rate or RCI; however, a one week pre-treatment slightly diminished the increase in the State 2 respiration rate with glutamate + malate substrates. The leakage of the liver enzymes, aspartate aminotransferase, alanine aminotransferase and lactate dehydrogenase, was similar in both the untreated and pre-treated with mildronate groups. No steatotic livers were observed in any experimental groups after mildronate pre-treatment. In conclusion, 90 min of liver ischemia followed by a 30 min reperfusion has a deleterious effect on rat liver mitochondrial function. Mildronate pre-treatment of rats at doses of 100 or 200 mg/kg/day for one or two weeks did not prevent ischemia/reperfusion-induced mitochondrial dysfunction and liver injury.
Insights
Mildronate, an anti-ischemic drug, did not protect rat liver mitochondria from damage caused by ischemia/reperfusion injury. Pre-treatment with mildronate did not prevent mitochondrial dysfunction or liver injury in this study.
Area of Science:
- Biochemistry
- Pharmacology
- Hepatology
Background:
- Mildronate (3-(2,2,2-trimethylhydrazinium) propionate) is an anti-ischemic drug used in cardiology.
- It was designed to inhibit carnitine biosynthesis, preventing fatty acid beta-oxidation byproduct accumulation.
- Recent evidence suggests mitochondrial respiratory chain may be a target for mildronate.
Purpose of the Study:
- To investigate mildronate's protective effects on liver mitochondria against ischemia/reperfusion (I/R) injury.
- To assess mildronate's impact on mitochondrial dysfunction and liver enzyme leakage post-I/R.
Main Methods:
- Rats were pre-treated with mildronate (100 or 200 mg/kg/day) or Ringer solution for one or two weeks.
- Liver ischemia was induced for 90 minutes, followed by 30 minutes of reperfusion.
- Mitochondrial respiration rates (State 2 and State 3), respiratory control index (RCI), and liver enzyme levels were measured.
Main Results:
- Ischemia/reperfusion significantly impaired mitochondrial State 3 respiration and RCI, while increasing State 2 respiration.
- Mildronate pre-treatment did not prevent the decrease in State 3 respiration or RCI.
- A one-week mildronate pre-treatment showed a slight reduction in State 2 respiration increase; liver enzyme leakage and steatosis were not significantly affected.
Conclusions:
- Ninety minutes of liver ischemia followed by 30 minutes of reperfusion causes significant mitochondrial dysfunction and liver injury in rats.
- Mildronate pre-treatment at tested doses and durations did not protect against ischemia/reperfusion-induced mitochondrial dysfunction or liver injury.

