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Brain Research • September 2008<br />

Impairment of mitochondrial energy metabolism<br />

in different regions of rat brain following<br />

chronic exposure to aluminium<br />

Author information<br />

Kumar V1, Bal A, Gill KD.<br />

Department of Biochemistry<br />

Postgraduate Institute of Medical Education and Research<br />

Chandigarh, 160 012, India<br />

Abstract<br />

The present study was designed with an aim to evaluate the effects of chronic aluminium<br />

exposure (10 mg/kg b.wt, intragastrically for 12 weeks) on mitochondrial<br />

energy metabolism in different regions of rat brain in vivo. Mitochondrial preparations<br />

from aluminium treated rats revealed significant decrease in the activity of<br />

various electron transport complexes viz. cytochrome oxidase, NADH cytochrome<br />

c reductase and succinic dehydrogenase as well, in the hippocampus region. The<br />

decrease in the activity of these respiratory complexes was also seen in the other<br />

two regions viz. corpus striatum and cerebral cortex, but to a lesser extent. This<br />

decrease in the activities of electron transport complexes in turn affected the ATP<br />

synthesis and ATP levels adversely in the mitochondria isolated from aluminium<br />

treated rat brain regions. We also studied the spectral properties of the mitochondrial<br />

cytochromes viz. cyt a, cyt b, cyt c1, and cyt c in both control and treated<br />

rat brains. The various cytochrome levels were found to be decreased following<br />

12 weeks of aluminium exposure. Further, these impairments in mitochondrial<br />

functions may also be responsible for the production of reactive oxygen species<br />

and impaired antioxidant defense system as observed in our study. The electron<br />

micrographs of neuronal cells depicted morphological changes in mitochondria as<br />

well as nucleus only from hippocampus and corpus striatum regions following 12<br />

weeks exposure to aluminium. The present study thus highlights the significance<br />

of altered mitochondrial energy metabolism and increased ROS production as a<br />

result of chronic aluminium exposure in different regions of the rat brain.<br />

“The present study<br />

thus highlights the significance<br />

of altered mitochondrial energy metabolism<br />

and increased ROS production as a result of<br />

chronic aluminium exposure in different<br />

regions of the rat brain.”<br />

http://www.ncbi.nlm.nih.gov/pubmed/?term=18691561

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