Dept. of Physiology, Univ. of Otago, PO Box 913, Dunedin 9054, New Zealand.
J Neurophysiol. 2011 Nov;106(5):2593-605. doi: 10.1152/jn.00601.2011. Epub 2011 Aug 10.
Magnesium-free medium can be used in brain slice studies to enhance glutamate receptor function, but this manipulation causes seizure-like activity in many cortical areas. The rodent olfactory bulb (OB) slice is a popular preparation, and potentially ictogenic ionic conditions have often been used to study odor processing. We studied low Mg(2+)-induced epileptiform discharges in mouse OB slices using extracellular and whole cell electrophysiological recordings. Low-Mg(2+) medium induced two distinct types of epileptiform activity: an intraglomerular delta-frequency oscillation resembling slow sniff-induced activity and minute-long seizure-like events (SLEs) consisting of large negative-going field potentials accompanied by sustained depolarization of output neurons. SLEs were dependent on N-methyl-D-aspartate receptors and sodium currents and were facilitated by α-amino-3-hydroxy-5-methyl-4-isoxazole propionate receptors. The events were initiated in the glomerular layer and propagated laterally through the external plexiform layer at a slow time scale. Our findings confirm that low-Mg(2+) medium should be used with caution in OB slices. Furthermore, the SLEs resembled the so-called slow direct current (DC) shift of clinical and experimental seizures, which has recently been recognized as being of great clinical importance. The OB slice may therefore provide a robust and unique in vitro model of acute seizures in which mechanisms of epileptiform DC shifts can be studied in isolation from fast oscillations.
无镁介质可用于脑片研究以增强谷氨酸受体功能,但这种操作会在许多皮质区域引起类似癫痫发作的活动。啮齿动物嗅球(OB)切片是一种很受欢迎的制剂,潜在的致痫离子条件通常用于研究气味处理。我们使用细胞外和全细胞电生理记录研究了小鼠 OB 切片中低镁(2+)诱导的癫痫样放电。低镁(2+)介质诱导了两种不同类型的癫痫样活动:类似于慢嗅诱导活动的颗粒内 delta 频率振荡和持续时间长的癫痫样事件(SLEs),由大的负向场电位伴随着输出神经元的持续去极化组成。SLEs依赖于 N-甲基-D-天冬氨酸受体和钠电流,并且被α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体促进。事件始于颗粒层,并以缓慢的时间尺度通过外丛状层侧向传播。我们的发现证实,在 OB 切片中应谨慎使用低镁(2+)介质。此外,SLEs类似于临床和实验性癫痫的所谓慢直流电(DC)偏移,最近已被认为具有重要的临床意义。因此,OB 切片可能提供了一种强大而独特的体外急性癫痫模型,其中可以在不涉及快速振荡的情况下研究癫痫样 DC 偏移的机制。