Bordey A, Sontheimer H
Department of Neurobiology, University of Alabama at Birmingham, 35294, USA.
Epilepsy Res. 1998 Sep;32(1-2):286-303. doi: 10.1016/s0920-1211(98)00059-x.
We studied physiological properties of glial cells from acute slices of biopsies from patients operated for intractable mesio-temporal lobe epilepsy using whole-cell patch-clamp recordings. Cells were filled with Lucifer Yellow (LY) during recordings to allow morphological reconstruction and immunohistochemical cell identification. Seizure-associated astrocytes had complex, arborized, highly branched processes giving them a stellate appearance, and cells stained intensely for the intermediate filament GFAP as previously reported for 'reactive' astrocytes. GFAP-positive astrocytes from epilepsy biopsies consistently expressed voltage-activated, TTX-sensitive Na+ channels that showed fast activation and inactivation kinetics. Unlike comparison astrocytes, derived from tissues that were not associated with seizure foci, these astrocytes expressed Na+ channels at densities sufficient to generate slow action potentials (spikes) in current clamp studies. In these cells, the ratio of Na+ to K+ conductance was consistently 3-4-fold higher than in comparison human or control rat astrocytes. Four of 17 astrocytes from epilepsy patients versus 14/14 from control rat hippocampus and four of five in comparison human tissue showed a lack of inwardly rectifying K+ currents, which in normal astrocytes are implicated in the control of extracellular K+ levels. These results suggest that astrocytes surrounding seizure foci differ in morphological and physiological properties, and that glial K+ buffering could be impaired at the seizure focus, thus contributing to the pathophysiology of seizures.
我们使用全细胞膜片钳记录技术,研究了因顽固性内侧颞叶癫痫接受手术治疗的患者活检急性切片中胶质细胞的生理特性。在记录过程中,细胞用荧光黄(LY)填充,以便进行形态重建和免疫组化细胞鉴定。癫痫相关星形胶质细胞具有复杂的、呈树枝状的、高度分支的突起,使其呈现出星状外观,并且细胞对中间丝GFAP染色强烈,正如先前报道的“反应性”星形胶质细胞那样。来自癫痫活检组织的GFAP阳性星形胶质细胞持续表达电压激活的、对河豚毒素敏感的Na⁺通道,这些通道表现出快速激活和失活动力学。与源自与癫痫病灶无关组织的对照星形胶质细胞不同,这些星形胶质细胞表达的Na⁺通道密度足以在电流钳研究中产生缓慢动作电位(尖峰)。在这些细胞中,Na⁺与K⁺电导的比值始终比对照人或对照大鼠星形胶质细胞高3 - 4倍。癫痫患者的17个星形胶质细胞中有4个,对照大鼠海马体的14个中有14个,以及对照人组织的5个中有4个,均表现出内向整流K⁺电流缺失,而在正常星形胶质细胞中,内向整流K⁺电流与细胞外K⁺水平的控制有关。这些结果表明,癫痫病灶周围的星形胶质细胞在形态和生理特性上存在差异,并且癫痫病灶处的胶质K⁺缓冲功能可能受损,从而导致癫痫的病理生理过程。