Metformin prevents ischemia reperfusion-induced oxidative stress in the fatty liver by attenuation of reactive oxygen species formation

Author:

Cahova Monika1,Palenickova Eliska12,Dankova Helena1,Sticova Eva3,Burian Martin4,Drahota Zdenek5,Cervinkova Zuzana6,Kucera Otto6,Gladkova Christina7,Stopka Pavel8,Krizova Jana8,Papackova Zuzana1,Oliyarnyk Olena1,Kazdova Ludmila1

Affiliation:

1. Center for Experimental Medicine, Department of Metabolism and Diabetes, Charles University, Prague, Czech Republic;

2. Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic;

3. Clinical and Transplant Pathology Department, Charles University, Prague, Czech Republic;

4. Department of Diagnostic and Interventional Radiology, Institute for Clinical and Experimental Medicine, Prague, Czech Republic;

5. Institute of Physiology, Czech Academy of Sciences, Prague, Czech Republic;

6. Department of Physiology, Charles University in Prague, Faculty of Medicine in Hradec Kralove, Hradec Kralove, Czech Republic;

7. Department of Chemistry, University of Cambridge, Cambridge, United Kingdom; and

8. Institute of Inorganic Chemistry Academy of Science CR, Husinec-Rez, Czech Republic

Abstract

Nonalcoholic fatty liver disease is associated with chronic oxidative stress. In our study, we explored the antioxidant effect of antidiabetic metformin on chronic [high-fat diet (HFD)-induced] and acute oxidative stress induced by short-term warm partial ischemia-reperfusion (I/R) or on a combination of both in the liver. Wistar rats were fed a standard diet (SD) or HFD for 10 wk, half of them being administered metformin (150 mg·kg body wt−1·day−1). Metformin treatment prevented acute stress-induced necroinflammatory reaction, reduced alanine aminotransferase and aspartate aminotransferase serum activity, and diminished lipoperoxidation. The effect was more pronounced in the HFD than in the SD group. The metformin-treated groups exhibited less severe mitochondrial damage (markers: cytochrome c release, citrate synthase activity, mtDNA copy number, mitochondrial respiration) and apoptosis (caspase 9 and caspase 3 activation). Metformin-treated HFD-fed rats subjected to I/R exhibited increased antioxidant enzyme activity as well as attenuated mitochondrial respiratory capacity and ATP resynthesis. The exposure to I/R significantly increased NADH- and succinate-related reactive oxygen species (ROS) mitochondrial production in vitro. The effect of I/R was significantly alleviated by previous metformin treatment. Metformin downregulated the I/R-induced expression of proinflammatory (TNF-α, TLR4, IL-1β, Ccr2) and infiltrating monocyte (Ly6c) and macrophage (CD11b) markers. Our data indicate that metformin reduces mitochondrial performance but concomitantly protects the liver from I/R-induced injury. We propose that the beneficial effect of metformin action is based on a combination of three contributory mechanisms: increased antioxidant enzyme activity, lower mitochondrial ROS production, and reduction of postischemic inflammation.

Funder

Institute for Clinical and Experimental Medicine - IKEM

MH CR (IGA)

Ministry of Education, Youth and Sports CR

European Region Development Fund

Publisher

American Physiological Society

Subject

Physiology (medical),Gastroenterology,Hepatology,Physiology

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