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J Neurochem ; 109(3): 879-88, 2009 May.
Article in English | MEDLINE | ID: mdl-19425176

ABSTRACT

The ability of aluminium to affect the oxidant status of specific areas of the brain (cerebellum, ventral midbrain, cortex, hippocampus, striatum) was investigated in rats intraperitoneally treated with aluminium chloride (10 mg Al3+/kg/day) for 10 days. The potential of aluminium to act as an etiological factor in Parkinson's disease (PD) was assessed by studying its ability to increase oxidative stress in ventral midbrain and striatum and the striatal dopaminergic neurodegeneration induced by 6-hydroxydopamine in an experimental model of PD.The results showed that aluminium caused an increase in oxidative stress (TBARS, protein carbonyl content, and protein thiol content) for most of the brain regions studied, which was accompanied by a decrease in the activity of some antioxidant enzymes (superoxide dismutase, catalase, glutathione peroxidase). However, studies in vitro confirmed the inability of aluminium to affect the activity of those enzymes. The reported effects exhibited a regional-selective behaviour for all the cerebral structures studied. Aluminium also enhanced the ability of 6-hydroxydopamine to cause oxidative stress and neurodegeneration in the dopaminergic system, which confirms its potential as a risk factor in the development of PD.


Subject(s)
Adrenergic Agents/pharmacology , Aluminum Compounds/pharmacology , Behavior, Animal/drug effects , Brain/drug effects , Chlorides/pharmacology , Oxidative Stress/drug effects , Oxidopamine/pharmacology , Aluminum Chloride , Analysis of Variance , Animals , Brain/anatomy & histology , Brain/physiology , Brain/ultrastructure , Catalase/metabolism , Dopamine/metabolism , Glutathione Peroxidase/metabolism , Lipid Metabolism/drug effects , Male , Mitochondria/drug effects , Monoamine Oxidase/metabolism , Protein Carbonylation/drug effects , Rats , Rats, Sprague-Dawley , Superoxide Dismutase/metabolism , Thiobarbituric Acid Reactive Substances/metabolism , Tyrosine 3-Monooxygenase/metabolism
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