Acta Med. 2004, 47: 285-288

https://doi.org/10.14712/18059694.2018.107

Iron Deposition in the Brain Following the Ischemia in a Rat Model of Ischemic Tolerance

Viera Danielisová, Miroslava Némethová, Jozef Burda

Slovak Academy of Sciences, Institute of Neurobiology, Department of Neurochemistry, Košice, Slovak Republic

Received March 1, 2004
Accepted November 1, 2004

Preconditioning of the brain by short-term ischemia increases brain tolerance to the subsequent severer ischemia. In this study, we investigated iron deposition in the cerebral cortex and the ischemic tolerance in a rat model of cerebral ischemia. Forebrain ischemia was induced by four-vessel occlusion for 5 min as ischemic preconditioning. Two days after preconditioning or after the sham-operation, the second ischemia was induced for 20 min. Changes in the cerebral cortex were examined after 1 to 8 weeks of recirculation following 20 min ischemia with or without preconditioning using the iron histochemistry. Granular deposits of the iron were found in the cytoplasm of the pyramidal cells in the layers III and V of the frontal cortex after 1 week of recirculation. When the rats were exposed to 5 min ischemia 2 days before 20 min lasting ischemia, the deposition of iron in the cytoplasm of the pyramidal cells in layers III and V of the frontal cortex was significantly lower during all periods of reperfusion. Preconditioning 5 min ischemia followed by 2 days of reperfusion before 20 min ischemia also prevented degeneration of the pyramidal neurons in layers III and V of the frontal cortex.

Funding

This study was supported by the Slovak Grant Agency for Science SK-VEGA 2/3219/23.

References

12 live references