Kish S J, Dixon L M, Sherwin A L
Clarke Institute of Psychiatry, Toronto, Canada.
J Neurol Neurosurg Psychiatry. 1988 Apr;51(4):552-6. doi: 10.1136/jnnp.51.4.552.
Increased concentration of the excitatory neurotransmitter aspartic acid in actively spiking human epileptic cerebral cortex was recently described. In order to further characterise changes in the aspartergic system in epileptic brain, the behaviour of aspartic acid aminotransferase (AAT), a key enzyme involved in aspartic acid metabolism has now been examined. Electrocorticography performed during surgery was employed to identify cortical epileptic spike foci in 16 patients undergoing temporal lobectomy for intractable seizures. Patients with spontaneously spiking lateral temporal cortex (n = 8) were compared with a non-spiking control group (n = 8) of patients in whom the epileptic lesions were confined to the hippocampus sparing the temporal convexity. Mean activity of AAT in spiking cortex was significantly elevated by 16-18%, with aspartic acid concentration increased by 28%. Possible explanations for the enhanced AAT activity include increased proliferation of cortical AAT-containing astrocytes at the spiking focus and/or a generalised increase in neuronal or extraneuronal metabolism consequent to the ongoing epileptic discharge. It is suggested that the data provide additional support for a disturbance of central excitatory aspartic acid mechanisms in human epileptic brain.
最近有研究报道,在活跃放电的人类癫痫性大脑皮质中,兴奋性神经递质天冬氨酸的浓度有所增加。为了进一步明确癫痫大脑中天冬氨酸能系统的变化,现已对天冬氨酸代谢的关键酶——天冬氨酸转氨酶(AAT)的行为进行了研究。在16例因顽固性癫痫发作而接受颞叶切除术的患者手术过程中,采用皮质脑电图来确定皮质癫痫棘波灶。将外侧颞叶皮质自发放电的患者(n = 8)与癫痫病灶局限于海马而未累及颞叶凸面的无放电对照组患者(n = 8)进行比较。放电皮质中AAT的平均活性显著升高了16 - 18%,天冬氨酸浓度增加了28%。AAT活性增强的可能解释包括:放电灶处含AAT的皮质星形胶质细胞增殖增加,和/或由于持续的癫痫放电导致神经元或神经外代谢普遍增加。研究表明,这些数据为人类癫痫大脑中中枢兴奋性天冬氨酸机制紊乱提供了额外的支持。