Monitoring systemic oxidative stress in an animal model of amyotrophic lateral sclerosis

被引:0
作者
Francisco Javier Miana-Mena
Cristina González-Mingot
Pilar Larrodé
María Jesús Muñoz
Sara Oliván
Lorena Fuentes-Broto
Enrique Martínez-Ballarín
Russel J. Reiter
Rosario Osta
Joaquín José García
机构
[1] Universidad de Zaragoza,Departamento Farmacología y Fisiología
[2] Universitary Hospital Lozano Blesa of Zaragoza,Neurology Service
[3] Universidad de Zaragoza,LAGENBIO
[4] University of Texas Health Science Center,Department of Cellular and Structural Biology
来源
Journal of Neurology | 2011年 / 258卷
关键词
Amyotrophic lateral sclerosis; Oxidative stress; G93A; Lipid peroxidation; Protein oxidation;
D O I
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中图分类号
学科分类号
摘要
A mutant form of the ubiquitous copper/zinc superoxide dismutase (SOD1) protein has been found in some patients with amyotrophic lateral sclerosis (ALS). We monitored oxidative stress in an animal model of ALS, the SODG93A mouse, which develops a disease similar to ALS with an accelerated course. The aim of this work was to show that ALS damages several organs and tissues, from an oxidative stress point of view. We measured lipid and protein oxidative damage in different tissue homogenates of SODG93A mice. The biomarkers that we analyzed were malondialdehyde + 4-hydroxyalkenal (MDA + 4-HDA) and carbonyls, respectively. The spinal cord and brain of SODG93A mice showed increased lipid peroxidation after 100 or 130 days compared to age-matched littermate controls. The CNS was most affected, but lipid peroxidation was also detected in the skeletal muscle and liver on day 130. No changes were observed in protein carbonylation in the homogenates. Our results are consistent with a multisystem etiology of ALS and suggest that oxidative stress may play a primary role in ALS pathogenesis. Thus, oxidative stress represents a potential biomarker that might be useful in developing new therapeutic strategies for ALS.
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页码:762 / 769
页数:7
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