Ca2+ entry through L-type Ca2+ channels helps terminate epileptiform activity by activation of a Ca2+ dependent afterhyperpolarisation in hippocampal CA3

被引:49
作者
Empson, RM [1 ]
Jefferys, JGR [1 ]
机构
[1] Univ Birmingham, Sch Med, Dept Neurophysiol, Div Neurosci, Birmingham B15 2TT, W Midlands, England
基金
英国惠康基金;
关键词
epilepsy; hippocampal CA3; Ca2+ dependent K+ channels; AHP; Ca2+ entry;
D O I
10.1016/S0306-4522(00)00494-2
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In CA3 neurons of disinhibited hippocampal slice cultures the slow afterhyperpolarisation, following spontaneous epileptiform burst events, was confirmed to be Ca2+ dependent and mediated bp K+ ions. Apamin, a selective blocker of the SK channels responsible for part of the slow afterhyperpolarisation reduced, but did not abolish, the amplitude of the post-burst afterhyperpolarisation. The result was an increased excitability of individual CA3 cells and the whole CA3 network, as measured by burst duration and burst frequency. Increases in excitability could also be achieved by strongly buffering intracellular Ca2+ or by minimising Ca2+ influx into the cell, specifically through L-type (but not N-type) voltage operated Ca2+ channels. Notably the L-type Ca2+ channel antagonist, nifedipine, was more effective than apamin at reducing the post-burst afterhyperpolarisation. Nifedipine also caused a greater increase in network excitability as determined from measurements of burst duration and frequency from whole cell and extracellular recordings. N-methyl D-aspartate receptor activation contributed to the depolarisations associated with the epileptiform activity but Ca2+ entry via this route did not contribute to the activation of the post-burst afterhyperpolarisation. We suggest that Ca2+ entry through L-type channels during an epileptiform event is selectively coupled to both apamin-sensitive and -insensitive Ca2+. activated K+ channels. Our findings have implications for how the route of Ca2+ entry and subsequent Ca2+ dynamics can influence network excitability during epileptiform discharges. (C) 2001 IBRO. Published by Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:297 / 306
页数:10
相关论文
共 41 条
[1]  
AICARDI G, 1990, EXP BRAIN RES, V81, P288
[2]   Spatiotemporal distribution of intracellular calcium transients during epileptiform activity in guinea pig hippocampal slices [J].
Albowitz, B ;
Konig, P ;
Kuhnt, U .
JOURNAL OF NEUROPHYSIOLOGY, 1997, 77 (01) :491-501
[3]   CHARACTERIZATION OF CA2+ SIGNALS INDUCED IN HIPPOCAMPAL CA1 NEURONS BY THE SYNAPTIC ACTIVATION OF NMDA RECEPTORS [J].
ALFORD, S ;
FRENGUELLI, BG ;
SCHOFIELD, JG ;
COLLINGRIDGE, GL .
JOURNAL OF PHYSIOLOGY-LONDON, 1993, 469 :693-716
[4]   EPILEPTIFORM BURST AFTERHYPERPOLARIZATION - CALCIUM-DEPENDENT POTASSIUM POTENTIAL IN HIPPOCAMPAL CA1-PYRAMIDAL CELLS [J].
ALGER, BE ;
NICOLL, RA .
SCIENCE, 1980, 210 (4474) :1122-1124
[5]   THE EXCITABILITY OF CA1 PYRAMIDAL CELL DENDRITES IS MODULATED BY A LOCAL CA2+-DEPENDENT K+-CONDUCTANCE [J].
ANDREASEN, M ;
LAMBERT, JDC .
BRAIN RESEARCH, 1995, 698 (1-2) :193-203
[6]  
Barbarosie M, 1997, J NEUROSCI, V17, P9308
[7]   Functional phonotype in transgenic mice expressing mutant human presenilin-1 [J].
Barrow, PA ;
Empson, RM ;
Gladwell, SJ ;
Anderson, CM ;
Killick, R ;
Yu, X ;
Jefferys, JGR ;
Duff, K .
NEUROBIOLOGY OF DISEASE, 2000, 7 (02) :119-126
[8]   Intrinsic physiological and morphological properties of principal cells of the hippocampus and neocortex in hamsters infected with scrapie [J].
Barrow, PA ;
Holmgren, CD ;
Tapper, AJ ;
Jefferys, JGR .
NEUROBIOLOGY OF DISEASE, 1999, 6 (05) :406-423
[9]   Seizure-like events in disinhibited ventral slices of adult rat hippocampus [J].
Borck, C ;
Jefferys, JGR .
JOURNAL OF NEUROPHYSIOLOGY, 1999, 82 (05) :2130-2142
[10]   INTRACELLULAR CALCIUM ACCUMULATION IN RAT HIPPOCAMPUS DURING SEIZURES INDUCED BY BICUCULLINE OR L-ALLYLGLYCINE [J].
GRIFFITHS, T ;
EVANS, MC ;
MELDRUM, BS .
NEUROSCIENCE, 1983, 10 (02) :385-395