Lappin Sarah C, Dale Tim J, Brown Jon T, Trezise Derek J, Davies Ceri H
Neurology and GI CEDD, GlaxoSmithKline, New Frontiers Science Park North, Third Avenue, Harlow, Essex CM19 5AW, UK.
Brain Res. 2005 Dec 14;1065(1-2):37-46. doi: 10.1016/j.brainres.2005.10.024. Epub 2005 Dec 5.
The role of calcium-activated potassium channels in the regulation of neuronal hyperexcitability, as in epilepsy, is unclear. To examine this issue, we have used the acute hippocampal slice model of epileptiform activity to investigate the effects of an enhancer of SK channel activity, 1-ethyl-benzimidazolinone (EBIO). That EBIO is an SK channel modulator was confirmed by its potentiation of hSK1, hSK2, hSK3 and hIK currents (EC(50) values in the range of 130-870 microM) and its apamin (1 microM) sensitive reduction of the number of action potentials fired in CA3 pyramidal neurons in response to a depolarizing current step. In addition, while EBIO did not significantly affect electrically evoked glutamatergic synaptic transmission, it did inhibit epileptiform activity (IC(50) values in the range of 150-325 microM) induced by (1) modifying the extracellular ionic environment by removing extracellular Mg(2+) or elevating extracellular K(+) from 3.0 to 8.5 mM and (2) disinhibiting the slice using 3 mM pentylenetetrazol or combined application of 10 microM gabazine and 10 microM CGP55845. Furthermore, its inhibitory effect in the full disinhibition model of epileptiform activity (10 microM gabazine + 10 microM CGP55845) was occluded by the SK channel blocker apamin (300 nM-1 microM) which in its own right increased the duration and reduced the frequency of individual epileptiform bursts. In conclusion, compounds that enhance the activation of small conductance Ca(2+) -activated K(+) channels are effective inhibitors of epileptiform activity in vitro.
钙激活钾通道在调节神经元过度兴奋(如癫痫中)的作用尚不清楚。为了研究这个问题,我们使用癫痫样活动的急性海马切片模型来研究SK通道活性增强剂1-乙基苯并咪唑啉酮(EBIO)的作用。EBIO对hSK1、hSK2、hSK3和hIK电流的增强作用(EC(50)值在130 - 870 microM范围内)以及其对CA3锥体神经元在去极化电流刺激下动作电位发放数量的蜂毒明肽(1 microM)敏感的减少作用,证实了EBIO是一种SK通道调节剂。此外,虽然EBIO对电诱发的谷氨酸能突触传递没有显著影响,但它确实抑制了由以下方式诱导的癫痫样活动(IC(50)值在150 - 325 microM范围内):(1) 通过去除细胞外Mg(2+)或将细胞外K(+)从3.0 mM升高到8.5 mM来改变细胞外离子环境;(2) 使用3 mM戊四氮或联合应用10 microM荷包牡丹碱和10 microM CGP55845使切片去抑制。此外,在癫痫样活动的完全去抑制模型(10 microM荷包牡丹碱 + 10 microM CGP55845)中,其抑制作用被SK通道阻滞剂蜂毒明肽(300 nM - 1 microM)所阻断,而蜂毒明肽本身增加了单个癫痫样爆发的持续时间并降低了其频率。总之,增强小电导Ca(2+)激活K(+)通道激活的化合物在体外是癫痫样活动的有效抑制剂。