Modulation of burst frequency, duration, and amplitude in the zero-Ca2+ model of epileptiform activity

被引:62
作者
Bikson, M
Ghai, RS
Baraban, SC
Durand, DM
机构
[1] Case Western Reserve Univ, Dept Biomed Engn, Ctr Neural Engn, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Dept Pediat & Neurosci, Cleveland, OH 44106 USA
关键词
D O I
10.1152/jn.1999.82.5.2262
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Incubation of hippocampal slices in zero-Ca2+ medium blocks synaptic transmission and results in spontaneous burst discharges. This seizure-like activity is characterized by negative shifts (bursts) in the extracellular field potential and a K+ wave that propagates across the hippocampus. To isolate factors related to seizure initiation, propagation, and termination, a number of pharmacological agents were tested. K+ influx and efflux mechanisms where blocked with cesium, barium, tetraethylammonium (TEA), and 4-aminopyridine (4-AP). The effect of the gap junction blockers, heptanol and octanol, on zero-Ca2+ bursting was evaluated. Neuronal excitability was modulated with tetrodotoxin (TTX), charge screening, and applied electric fields. Glial cell function was examined with a metabolism antagonist (fluroacetate). Neuronal hyperpolarization by cation screening or applied fields decreased burst frequency but did not affect bunt amplitude or duration. Heptanol attenuated burst amplitude and duration at low concentration (0.2 mM), and blocked bursting at higher concentration (0.5 mM). CsCl2 (1 mM) had no effect, whereas high concentrations (1 mM) of BaCl2 blocked bursting. TEA (25 mM) and low concentration of BaCl2 (300 mu M) resulted in a two-to sixfold increase in burst duration. Fluroacetate also blocked burst activity but only during prolonged application (>3 h). Our results demonstrate that burst frequency, amplitude, and duration can be independently modulated and suggest that neuronal excitability plays a central role in burst initiation, whereas potassium dynamics establish burst amplitude and duration.
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页码:2262 / 2270
页数:9
相关论文
共 51 条
[31]   HUMAN EPILEPTIC ASTROCYTES EXHIBIT INCREASED GAP JUNCTION COUPLING [J].
LEE, SH ;
MAGGE, S ;
SPENCER, DD ;
SONTHEIMER, H ;
CORNELLBELL, AH .
GLIA, 1995, 15 (02) :195-202
[32]   Macroscopic and single-channel chloride currents in neuropile glial cells of the leech central nervous system [J].
Müller, M ;
Schlue, WR .
BRAIN RESEARCH, 1998, 781 (1-2) :307-319
[33]   SUPPRESSION OF SPONTANEOUS EPILEPTIFORM ACTIVITY WITH APPLIED CURRENTS [J].
NAKAGAWA, M ;
DURAND, D .
BRAIN RESEARCH, 1991, 567 (02) :241-247
[34]   GAP JUNCTION GENE-EXPRESSION IN HUMAN SEIZURE DISORDER [J].
NAUS, CCG ;
BECHBERGER, JF ;
PAUL, DL .
EXPERIMENTAL NEUROLOGY, 1991, 111 (02) :198-203
[35]   BLOCK OF SODIUM CURRENT BY HEPTANOL IN VOLTAGE-CLAMPED CANINE CARDIAC PURKINJE-CELLS [J].
NELSON, WL ;
MAKIELSKI, JC .
CIRCULATION RESEARCH, 1991, 68 (04) :977-983
[36]  
NILIUS B, 1988, PFLUGERS ARCH, V41, P654
[37]   Burst characteristics of dentate gyrus granule cells: Evidence for endogenous and nonsynaptic properties [J].
Pan, EH ;
Stringer, JL .
JOURNAL OF NEUROPHYSIOLOGY, 1996, 75 (01) :124-132
[38]  
PEREZVELAZQUEZ JL, 1994, J NEUROSCI, V14, P4308
[39]   CHEMICAL SYNAPTIC TRANSMISSION IS NOT NECESSARY FOR EPILEPTIC SEIZURES TO PERSIST IN THE BABOON PAPIO-PAPIO [J].
PUMAIN, R ;
MENINI, C ;
HEINEMANN, U ;
LOUVEL, J ;
SILVABARRAT, C .
EXPERIMENTAL NEUROLOGY, 1985, 89 (01) :250-258
[40]   BIOPHYSICAL AND PHARMACOLOGICAL CHARACTERIZATION OF INWARDLY RECTIFYING K+ CURRENTS IN RAT SPINAL-CORD ASTROCYTES [J].
RANSOM, CB ;
SONTHEIMER, H .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 73 (01) :333-346