Actions of brain-derived neurotrophic factor in slices from rats with spontaneous seizures and mossy fiber sprouting in the dentate gyrus

被引:0
作者
Scharfman, HE [1 ]
Goodman, JH
Sollas, AL
机构
[1] Helen Hayes Hosp, Neurol Res Ctr, W Haverstraw, NY 10993 USA
[2] Columbia Univ Coll Phys & Surg, Dept Pharmacol, New York, NY 10032 USA
[3] Columbia Univ Coll Phys & Surg, Dept Neurol, New York, NY 10032 USA
关键词
neurotrophin; growth factor; hippocampus; epilepsy; glutamate; tyrosine kinase;
D O I
暂无
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
This study examined the acute actions of brain-derived neurotrophic factor (BDNF) in the rat dentate gyrus after seizures, because previous studies have shown that BDNF has acute effects on dentate granule cell synaptic transmission, and other studies have demonstrated that BDNF expression increases in granule cells after seizures. Pilocarpine-treated rats were studied because they not only have seizures and increased BDNF expression in granule cells, but they also have reorganization of granule cell "mossy fiber" axons. This reorganization, referred to as "sprouting," involves collaterals that grow into novel areas, i.e., the inner molecular layer, where granule cell and interneuron dendrites are located. Thus, this animal model allowed us to address the effects of BDNF in the dentate gyrus after seizures, as well as the actions of BDNF on mossy fiber transmission after reorganization. In slices with sprouting, BDNF bath application enhanced responses recorded in the inner molecular layer to mossy fiber stimulation. Spontaneous bursts of granule cells occurred, and these were apparently generated at the site of the sprouted axon plexus. These effects were not accompanied by major changes in perforant path-evoked responses or paired-pulse inhibition, occurred only after prolonged (30-60 min) exposure to BDNF, and were blocked by K252a. The results suggest a preferential action of BDNF at mossy fiber synapses, even after substantial changes in the dentate gyrus network. Moreover, the results suggest that activation of trkB receptors could contribute to the hyperexcitability observed in animals with sprouting. Because human granule cells also express increased BDNF mRNA after seizures, and sprouting can occur in temporal lobe epileptics, the results may have implications for understanding temporal lobe epilepsy.
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页码:5619 / 5631
页数:13
相关论文
共 112 条
  • [1] A BDNF AUTOCRINE LOOP IN ADULT SENSORY NEURONS PREVENTS CELL DEATH
    ACHESON, A
    CONOVER, JC
    FANDL, JP
    DECHIARA, TM
    RUSSELL, M
    THADANI, A
    SQUINTO, SP
    YANCOPOULOS, GD
    LINDSAY, RM
    [J]. NATURE, 1995, 374 (6521) : 450 - 453
  • [2] BRAIN-DERIVED NEUROTROPHIC FACTOR INCREASES SURVIVAL AND DIFFERENTIATED FUNCTIONS OF RAT SEPTAL CHOLINERGIC NEURONS IN CULTURE
    ALDERSON, RF
    ALTERMAN, AL
    BARDE, YA
    LINDSAY, RM
    [J]. NEURON, 1990, 5 (03) : 297 - 306
  • [3] Induction of brain-derived neurotrophic factor (BDNF) and the receptor trk B mRNA following middle cerebral artery occlusion in rat
    Arai, S
    Kinouchi, H
    Akabane, A
    Owada, Y
    Kamii, H
    Kawase, M
    Yoshimoto, T
    [J]. NEUROSCIENCE LETTERS, 1996, 211 (01) : 57 - 60
  • [4] HIPPOCAMPAL DAMAGE AND KAINIC ACID INJECTION INDUCE A RAPID INCREASE IN MESSENGER-RNA FOR BDNF AND NGF IN THE RAT-BRAIN
    BALLARIN, M
    ERNFORS, P
    LINDEFORS, N
    PERSSON, H
    [J]. EXPERIMENTAL NEUROLOGY, 1991, 114 (01) : 35 - 43
  • [5] BECK KD, 1993, J NEUROSCI, V13, P4001
  • [6] BRAIN-DERIVED NEUROTROPHIC FACTOR PROTECTS AGAINST ISCHEMIC CELL-DAMAGE IN RAT HIPPOCAMPUS
    BECK, T
    LINDHOLM, D
    CASTREN, E
    WREE, A
    [J]. JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1994, 14 (04) : 689 - 692
  • [7] Functional anatomy of spontaneous seizures in a rat model of limbic epilepsy
    Bertram, EH
    [J]. EPILEPSIA, 1997, 38 (01) : 95 - 105
  • [8] BDNF and trkB mRNAs oscillate in rat brain during the light-dark cycle
    Bova, R
    Micheli, MR
    Qualadrucci, P
    Zucconi, GG
    [J]. MOLECULAR BRAIN RESEARCH, 1998, 57 (02): : 321 - 324
  • [9] Bramham CR, 1996, J COMP NEUROL, V368, P371
  • [10] Buckmaster PS, 1997, J COMP NEUROL, V385, P385