Continuous cytosine‐b‐D‐arabinofuranoside infusion reduces ectopic granule cells in adult rat hippocampus with attenuation of spontaneous recurrent seizures following pilocarpine‐induced status epilepticus
- 24 June 2004
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 19 (12) , 3219-3226
- https://doi.org/10.1111/j.0953-816x.2004.03412.x
Abstract
Brief or prolonged seizures induce various patterns of plasticity. Axonal or dendritic remodelling and development of ectopic granule cells have been described in the hilus and molecular layer of the adult rodent hippocampus. Hippocampal cell proliferation also occurs after seizures. However, whether the seizure-induced cell proliferation plays a pathological or reparative role in the epileptic brain is unknown. In this study, we attempted to suppress the seizure-induced cell proliferation with the antimitotic agent cytosine-b-D-arabinofuranoside (Ara-C) and to examine the development of spontaneous recurrent seizures (SRS). Experimental status epilepticus was induced with pilocarpine, and Ara-C or vehicle alone was infused continuously with an osmotic minipump. SRS were video-monitored. BrdU immunohistochemistry was used for the spatial and temporal analysis of hippocampal cell proliferation, and double labelling with NeuN, calbindin and GFAP antibodies was performed for the differentiation of BrdU-positive cells. Timm staining was also performed for evaluation of mossy fibre sprouting (MFS). With continuous Ara-C infusion, the likelihood of developing SRS was decreased and, during the latent period, the development of ectopic granule cells in the hilus and new glia in the CA1 area was reduced when compared with the vehicle-infused group, while MFS was not altered. The results suggest that the hippocampal cell proliferation plays a pro-epileptogenic role rather than a compensatory role, and that the epileptogenic process may be associated with the generation of new glia in the CA1 area and/or new neurons in the dentate gyrus, particularly the ectopically located hilar granule cells.Keywords
This publication has 59 references indexed in Scilit:
- Human neural stem cells can migrate, differentiate, and integrate after intravenous transplantation in adult rats with transient forebrain ischemiaNeuroscience Letters, 2003
- Delayed kindling epileptogenesis and increased neurogenesis in adult rats housed in an enriched environmentBrain Research, 2002
- Analysis of neurogenesis and programmed cell death reveals a self-renewing capacity in the adult rat brainNeuroscience Letters, 2000
- The course of untreated seizures in the pilocarpine model of epilepsyEpilepsy Research, 1999
- In Vivo Intracellular Analysis of Granule Cell Axon Reorganization in Epileptic RatsJournal of Neurophysiology, 1999
- Methods for determining numbers of cells and synapses: A case for more uniform standards of reviewJournal of Comparative Neurology, 1996
- Adult neurogenesis is regulated by adrenal steroids in the dentate gyrusNeuroscience, 1994
- Electrophysiology of dentate granule cells after kainate-induced synaptic reorganization of the mossy fibersBrain Research, 1992
- Long‐Term Effects of Pilocarpine in Rats: Structural Damage of the Brain Triggers Kindling and Spontaneous I Recurrent SeizuresEpilepsia, 1991
- Mossy fiber synaptic reorganization induced by kindling: time course of development, progression, and permanenceJournal of Neuroscience, 1991