Tiagabine exerts an anti-epileptogenic effect in amygdala kindling epileptogenesis in the rat

被引:2
作者
Dalby, NO
Nielsen, EB
机构
关键词
tiagabine; kindling; gamma-aminobutyric acid; epileptogenesis; electroencephalogram;
D O I
暂无
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Tiagabine (TGB) is a novel antiepileptic drug whose anticonvulsant effects are due to inhibition of gamma-aminobutyric acid (GABA) transport mediated by the GABA transporter-1. We have previously shown that TGB is effective in acute amygdala kindled seizures, and consequently we wanted to test the hypothesis that TGB also could suppress the development of kindling epileptogenesis. Rats had stereotaxically implanted stimulating/recording electrodes in the basolateral amygdala and recording electrode in the contralateral occipital cortex. Rats were divided in three groups (n = 8 for each group) intraperitoneally (i.p.) administered vehicle, TGB 7.3 mu mol/kg and TGB 24.3 mu mol/kg, respectively, 30 min before stimulation. TGB dose-dependently suppressed the development of the behavioral seizure score and afterdischarge (AD) duration recorded from the amygdala and cortex. Vehicle treated animals displayed at the 16th stimulation an average behavioral score of 4.7 +/- 0.2 (mean +/- SEM) compared to 3.9 +/- 0.2 in the 7.3 mu mol/kg TGB treated group and 1.4 +/- 0.3 in the 24.3 mu mol/kg TGB treated group. Amygdaloid AD in controls on the 16th stimulation was 92 +/- 10 s compared to 56 +/- 12 s in group 2 and 25 +/- 3 s in group 3. Cortical AD was at the same time 92 +/- 10, 55 +/- 13 and 20 +/- 5 s, respectively. Groups 2 and 3 required four and seven further stimulations, respectively, without TGB administration to reach the AD level in the control group. At the 17th stimulation, rats in group 1 were administered TGB 24.3 mu mol/kg and displayed an average behavioral score of 0.5 +/- 0.2. Amygdaloid and cortical AD were both 6 +/- 1 s. Tiagabine 24.3 mu mol/kg suppresses both the kindling process and the expression of the fully kindled seizure. (C) 1997 Elsevier Science Ireland Ltd.
引用
收藏
页码:135 / 137
页数:3
相关论文
共 20 条
[1]   ANTICONVULSANT DRUGS AND THEIR ANTAGONISM OF KINDLED AMYGDALOID SEIZURES IN RATS [J].
ALBERTSON, TE ;
PETERSON, SL ;
STARK, LG .
NEUROPHARMACOLOGY, 1980, 19 (07) :643-652
[2]   TIAGABINE, SK-AND-F 89976-A, CI-966, AND NNC-711 ARE SELECTIVE FOR THE CLONED GABA TRANSPORTER GAT-1 [J].
BORDEN, LA ;
DHAR, TGM ;
SMITH, KE ;
WEINSHANK, RL ;
BRANCHEK, TA ;
GLUCHOWSKI, C .
EUROPEAN JOURNAL OF PHARMACOLOGY-MOLECULAR PHARMACOLOGY SECTION, 1994, 269 (02) :219-224
[3]   (R)-N-[4,4-BIS(3-METHYL-2-THIENYL)BUT-3-EN-1-YL]NIPECOTIC ACID BINDS WITH HIGH-AFFINITY TO THE BRAIN GAMMA-AMINOBUTYRIC ACID UPTAKE CARRIER [J].
BRAESTRUP, C ;
NIELSEN, EB ;
SONNEWALD, U ;
KNUTSEN, LJS ;
ANDERSEN, KE ;
JANSEN, JA ;
FREDERIKSEN, K ;
ANDERSEN, PH ;
MORTENSEN, A ;
SUZDAK, PD .
JOURNAL OF NEUROCHEMISTRY, 1990, 54 (02) :639-647
[4]   PROGRESSIVE NEURONAL LOSS INDUCED BY KINDLING - A POSSIBLE MECHANISM FOR MOSSY FIBER SYNAPTIC REORGANIZATION AND HIPPOCAMPAL SCLEROSIS [J].
CAVAZOS, JE ;
SUTULA, TP .
BRAIN RESEARCH, 1990, 527 (01) :1-6
[5]   INCREASE IN GAP-43 AND GFAP IMMUNOREACTIVITY IN THE RAT HIPPOCAMPUS SUBSEQUENT TO PERFORANT PATH KINDLING [J].
DALBY, NO ;
RONDOUIN, G ;
LERNERNATOLI, M .
JOURNAL OF NEUROSCIENCE RESEARCH, 1995, 41 (05) :613-619
[6]  
DALBY NO, 1997, IN PRESS EPILEPSY RE
[7]   THE GAMMA-AMINOBUTYRIC-ACID (GABA) UPTAKE INHIBITOR, TIAGABINE, INCREASES EXTRACELLULAR BRAIN LEVELS OF GABA IN AWAKE RATS [J].
FINKJENSEN, A ;
SUZDAK, PD ;
SWEDBERG, MDB ;
JUDGE, ME ;
HANSEN, L ;
NIELSEN, PG .
EUROPEAN JOURNAL OF PHARMACOLOGY, 1992, 220 (2-3) :197-201
[8]   A PERMANENT CHANGE IN BRAIN FUNCTION RESULTING FROM DAILY ELECTRICAL STIMULATION [J].
GODDARD, GV ;
MCINTYRE, DC ;
LEECH, CK .
EXPERIMENTAL NEUROLOGY, 1969, 25 (03) :295-&
[9]   DEVELOPMENT OF CHANGES IN ENDOGENOUS GABA RELEASE DURING KINDLING EPILEPTOGENESIS IN RAT HIPPOCAMPUS [J].
KAMPHUIS, W ;
HUISMAN, E ;
VEERMAN, MJ ;
DASILVA, FHL .
BRAIN RESEARCH, 1991, 545 (1-2) :33-40
[10]   NMDA RECEPTORS OF DENTATE GYRUS GRANULE CELLS PARTICIPATE IN SYNAPTIC TRANSMISSION FOLLOWING KINDLING [J].
MODY, I ;
HEINEMANN, U .
NATURE, 1987, 326 (6114) :701-704