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Research Article

Hippocampal Stem Cell Grafting-Mediated Recovery of Injured Hippocampus in the Rat Model of Temporal Lobe Epilepsy

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Pages 647-654 | Received 18 Mar 2010, Published online: 19 Aug 2010

REFERENCES

  • Ang, C. W., Carlson, G. C., & Coulter, D. A. (2006). Massive and specific dysregulation of direct cortical input to the hippocampus in temporal lobe epilepsy. Journal of Neuroscience, 15, 26(46), 11850–11856.
  • Babb, T. L. (1991). Bilateral pathological damage in temporal lobe epilepsy. The Canadian Journal of Neuroscience, 18(Suppl. 4), 645–648.
  • Cavazos, J. E., Golarai, G., & Sutula, T. P. (1991). Mossy fiber synaptic reorganization induced by kindling: Time course of development, progression, and permanence. Journal of Neuroscience, 11(9), 2795–2803.
  • Detour, J., Schroeder, H., Desor, D., (2005). A 5-month period of epilepsy impairs spatial memory, decreases anxiety, but spares object recognition in the lithium-pilocarpine model in adult rats. Epilepsia, 46(4), 499–508.
  • Devinsky, O. (2004). Diagnosis and treatment of temporal lobe epilepsy. Revista de Neurologia Diseases, 1(1), 2–9.
  • Dudek, F. E., & Sutula, T. P. (2007). Epileptogenesis in the dentate gyrus: A critical perspective. Progress in Brain Research, 163, 755–773.
  • Engel, J. Jr. (2001). Intractable epilepsy: Definition and neurobiology. Epilepsia, 42(Suppl. 6), 3.
  • Hattiangady, B., Rao, M. S., Zaman, V., (2006). Incorporation of embryonic CA3 cell grafts into the adult hippocampus at 4-months after injury: Effects of combined neurotrophic supplementation and caspase inhibition. Neuroscience, 139(4), 1369–1383.
  • He, X. P., Shiosaka, S., & Yoshida, S. (2001). Expression of neuropsin in oligodendrocytes after injury to the CNS. Neuroscience Research, 39(4), 455–462.
  • Keown & McNamara (2001). When do epileptic seizures really begin? Neuron, 30(1), 51–64.
  • Litt, B., Esteller, R., Echauz, J., et al.(2001). Epileptic seizures may begin hours in advance of clinical onset: A report of five patients. Neuron, 30(1), 51–64.
  • Rao, M. S., Hattiangady, B., Rai, K. S., (2007). Strategies for promoting anti-seizure effects of hippocampal fetal cells grafted into the hippocampus of rats exhibiting chronic temporal lobe epilepsy. Neurobiology Disease, 27(2), 117–132.
  • Rao, M. S., Hattiangady, B., & Shetty, A. K. (2006). The window and mechanisms of major age-related decline in the production of new neurons within the dentate gyrus of the hippocampus. Aging Cell, 5(6), 545–558.
  • Shen hong, Lin Zhi-guo, Ma Xiao-yan, (2003). Study for the characteristics of electrophysiology of differentiated neurons from hippocampal stem cell. Chinese Journal of Neurosurgery, 19(4), 300–303.
  • Shetty, A. K., & Turner, D. A. (1996). Development of fetal hippocampal grafts in intact and lesioned hippocampus. Progress in Neurobiology, 50(5–6), 597–653.
  • Shetty, A. K., & Turner, D. A. (1997a). Fetal hippocampal cells grafted to kainate-lesioned CA3 region of adult hippocampus suppress aberrant supragranular sprouting of host mossy fibers. Experimental Neurology, 143(2), 231–245.
  • Shetty, A. K., & Turner, D. A. (1997b). Development of long-distance efferent projections from fetal hippocampal grafts depends upon pathway specificity and graft location in kainate-lesioned adult hippocampus. Neuroscience, 76(4), 1205–1219.
  • Shetty, A. K., Zaman, V., & Turner, D. A. (2000). Pattern of long-distance projections from fetal hippocampal field CA3 and CA1 cell grafts in lesioned CA3 of adult hippocampus follows intrinsic character of respective donor cells. Neuroscience, 99(2), 243–255.
  • Shetty, A. K., Zaman, V., & Hattiangady, B. (2005). Repair of the injured adult hippocampus through graft-mediated modulation of the plasticity of the dentate gyrus in a rat model of temporal lobe epilepsy. Journal of Neuroscience, 14;(37), 8391–8401.
  • Shetty, A. K., Zaman, V., & Shetty, G. A. (2003). Hippocampal neurotrophin levels in a kainate model of temporal lobe epilepsy: A lack of correlation between brain-derived neurotrophic factor content and progression of aberrant dentate mossy fiber sprouting. Journal of Neurochemistry, 87(1), 147–159.
  • Tamagami, H., Morimoto, K., Watanabe, T., et al.(2004). Quantitative evaluation of central-type benzodiazepine receptors with [(125)I] Iomazenil in experimental epileptogenesis. I. The rat kainate model of temporal lobe epilepsy. Epilepsy Research, 61(1–3), 105–112.
  • Turner, D. A., & Shetty, A. K. (2003). Chinical prospects for neural grafting therapy for hippocampal lesions and epilepsy. Neurosurgery, 52(3), 632–653.
  • Ueda, Y., Doi, T., Tokumaru, J., (2001). Collapse of extracellular glutamate regulation during epileptogenesis: Dowm-regulation and functional failure of glutamate transporter function in rats with chronic seizures induced by kainic acid. Journal of Neurochemisty, 77(3), 892–900
  • Wenzel, H. J., Cole, T. B., Born, D. E., et al. (1997). Ultrastructural localization of zinc transporter-3 (ZnT-3) to synaptic vesicle membranes within mossy fiber boutons in the hippocampus of mouse and monkey. Proceedings of National Academy of Science United State of America, 11; 94(23), 12676–12681.
  • Zhang, X., Cui, S. S., Wallace, A. E., et al,(2002). Relations between brain pathology and temporal lobe epilepsy. Neuroscience, 15; 22(14), 6052–6061.

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