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体外正常及无镁培养基中内侧内嗅皮层细胞的突触和内在反应。

Synaptic and intrinsic responses of medical entorhinal cortical cells in normal and magnesium-free medium in vitro.

作者信息

Jones R S, Heinemann U

机构信息

Department of Neurophysiology, Max-Planck Institute for Psychiatry, Planegg-Martinsried, Federal Republic of Germany.

出版信息

J Neurophysiol. 1988 May;59(5):1476-96. doi: 10.1152/jn.1988.59.5.1476.

Abstract
  1. Extracellular recordings were made from slices of hippocampus plus parahippocampal regions maintained in vitro. Field potentials, recorded in the entorhinal cortex after stimulation in the subiculum, resembled those observed in vivo. 2. Washout of magnesium from the slices resulted in paroxysmal events which resembled those occurring during sustained seizures in vivo. These events were greatest in amplitude and duration in layers IV/V of the medial entorhinal cortex and could occur both spontaneously and in response to subicular stimulation. Spontaneous seizure-like events were not prevented by severing the connections between the hippocampus and entorhinal cortex, but much smaller and shorter events occurring in the dentate gyrus were stopped by this manipulation. Both spontaneous and evoked paroxysmal events were blocked by perfusion with the N-methyl-D-aspartate (NMDA) receptor antagonist, DL-2-amino-5-phosphonovalerate (2-AP5). 3. Neurons in layers IV/V were characterized by intracellular recording. Injection of depolarizing current in most cells evoked a train of nondecrementing action potentials with only weak spike frequency accommodation and little or no posttrain after hyperpolarization. 4. A small number of cells displayed burst response when depolarized by positive current. The burst consisted of a slow depolarization with superimposed action potentials which decreased in amplitude and increased in duration during the discharge. The burst was terminated by a strong after hyperpolarization and thereafter, during prolonged current pulses a train of nondecrementing spikes occurred. The burst response remained if the cell was held at hyperpolarized levels but was inactivated by holding the cell at a depolarized level. 5. Depolarizing synaptic potentials could be evoked by stimulation in the subiculum. A delayed and prolonged depolarization clearly decremented with membrane hyperpolarization and, occasionally, increased with depolarization. 6. Washout of magnesium from the slices resulted in an enhancement of the late depolarization and a reversal of its voltage dependence. Eventually a single shock to the subiculum evoked a large all-or-none paroxysmal depolarization associated with a massive increase in membrane conductance. Similar events occurred spontaneously in all cells tested. The paroxysmal depolarizations, both spontaneous and evoked, were rapidly blocked by 2-AP5. 7. It is concluded that medial entorhinal cortical cells possess several intrinsic and synaptic properties which confer an extreme susceptibility to generation of sustained seizure activity.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对体外培养的海马体加海马旁回区域切片进行细胞外记录。在海马下托受到刺激后,在内嗅皮质记录到的场电位与在体内观察到的相似。2. 从切片中洗去镁会导致阵发性事件,这些事件类似于体内持续性癫痫发作时发生的事件。在内侧内嗅皮质的IV/V层中,这些事件的幅度和持续时间最大,并且可以自发发生,也可响应海马下托刺激而发生。切断海马体与内嗅皮质之间的连接并不能阻止自发的癫痫样事件,但这种操作会阻止齿状回中发生的小得多且持续时间短的事件。自发和诱发的阵发性事件都可通过灌注N-甲基-D-天冬氨酸(NMDA)受体拮抗剂DL-2-氨基-5-磷酸戊酸(2-AP5)来阻断。3. 通过细胞内记录对IV/V层中的神经元进行表征。在大多数细胞中注入去极化电流会诱发一连串不衰减的动作电位,只有微弱的锋电位频率适应性,且锋电位发放后几乎没有或没有超极化。4. 少数细胞在被正向电流去极化时表现出爆发反应。爆发由缓慢去极化叠加动作电位组成,在放电过程中动作电位幅度减小、持续时间增加。爆发由强烈的超极化后电位终止,此后,在长时间的电流脉冲期间会出现一连串不衰减的锋电位。如果将细胞保持在超极化水平,爆发反应仍然存在,但将细胞保持在去极化水平会使其失活。5. 在海马下托进行刺激可诱发去极化突触电位。延迟且延长的去极化明显随膜超极化而衰减,偶尔也会随去极化而增加。6. 从切片中洗去镁会导致晚期去极化增强并使其电压依赖性反转。最终,对海马下托的单次电击会诱发一个大的全或无阵发性去极化,伴有膜电导的大量增加。在所有测试细胞中都会自发出现类似事件。自发和诱发的阵发性去极化都被2-AP5迅速阻断。7. 得出的结论是,内侧内嗅皮质细胞具有几种内在和突触特性,这些特性使其极易产生持续性癫痫活动。(摘要截选至400字)

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