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Acute Liver Failure Induces Glial Reactivity, Oxidative Stress and Impairs Brain Energy Metabolism in Rats.

Authors :
Guazzelli PA
Cittolin-Santos GF
Meira-Martins LA
Grings M
Nonose Y
Lazzarotto GS
Nogara D
da Silva JS
Fontella FU
Wajner M
Leipnitz G
Souza DO
de Assis AM
Source :
Frontiers in molecular neuroscience [Front Mol Neurosci] 2020 Jan 10; Vol. 12, pp. 327. Date of Electronic Publication: 2020 Jan 10 (Print Publication: 2019).
Publication Year :
2020

Abstract

Acute liver failure (ALF) implies a severe and rapid liver dysfunction that leads to impaired liver metabolism and hepatic encephalopathy (HE). Recent studies have suggested that several brain alterations such as astrocytic dysfunction and energy metabolism impairment may synergistically interact, playing a role in the development of HE. The purpose of the present study is to investigate early alterations in redox status, energy metabolism and astrocytic reactivity of rats submitted to ALF. Adult male Wistar rats were submitted either to subtotal hepatectomy (92% of liver mass) or sham operation to induce ALF. Twenty-four hours after the surgery, animals with ALF presented higher plasmatic levels of ammonia, lactate, ALT and AST and lower levels of glucose than the animals in the sham group. Animals with ALF presented several astrocytic morphological alterations indicating astrocytic reactivity. The ALF group also presented higher mitochondrial oxygen consumption, higher enzymatic activity and higher ATP levels in the brain (frontoparietal cortex). Moreover, ALF induced an increase in glutamate oxidation concomitant with a decrease in glucose and lactate oxidation. The increase in brain energy metabolism caused by astrocytic reactivity resulted in augmented levels of reactive oxygen species (ROS) and Poly [ADP-ribose] polymerase 1 (PARP1) and a decreased activity of the enzymes superoxide dismutase and glutathione peroxidase (GSH-Px). These findings suggest that in the early stages of ALF the brain presents a hypermetabolic state, oxidative stress and astrocytic reactivity, which could be in part sustained by an increase in mitochondrial oxidation of glutamate.<br /> (Copyright © 2020 Guazzeli, Cittolin-Santos, Meira-Martins, Grings, Nonose, Lazzarotto, Nogara, da Silva, Fontella, Wajner, Leipnitz, Souza and de Assis.)

Details

Language :
English
ISSN :
1662-5099
Volume :
12
Database :
MEDLINE
Journal :
Frontiers in molecular neuroscience
Publication Type :
Academic Journal
Accession number :
31998076
Full Text :
https://doi.org/10.3389/fnmol.2019.00327