Reading School of Pharmacy, University of Reading, Whiteknights, Reading RG6 6UB, United Kingdom.
J Neurosci Methods. 2010 Jan 15;185(2):246-56. doi: 10.1016/j.jneumeth.2009.10.007. Epub 2009 Oct 28.
The acute hippocampal brain slice preparation is an important in vitro screening tool for potential anticonvulsants. Application of 4-aminopyridine (4-AP) or removal of external Mg(2+) ions induces epileptiform bursting in slices which is analogous to electrical brain activity seen in status epilepticus states. We have developed these epileptiform models for use with multi-electrode arrays (MEAs), allowing recording across the hippocampal slice surface from 59 points. We present validation of this novel approach and analyses using two anticonvulsants, felbamate and phenobarbital, the effects of which have already been assessed in these models using conventional extracellular recordings. In addition to assessing drug effects on commonly described parameters (duration, amplitude and frequency), we describe novel methods using the MEA to assess burst propagation speeds and the underlying frequencies that contribute to the epileptiform activity seen. Contour plots are also used as a method of illustrating burst activity. Finally, we describe hitherto unreported properties of epileptiform bursting induced by 100 microM 4-AP or removal of external Mg(2+) ions. Specifically, we observed decreases over time in burst amplitude and increase over time in burst frequency in the absence of additional pharmacological interventions. These MEA methods enhance the depth, quality and range of data that can be derived from the hippocampal slice preparation compared to conventional extracellular recordings. It may also uncover additional modes of action that contribute to anti-epileptiform drug effects.
急性海马脑片制备是一种重要的潜在抗惊厥药物的体外筛选工具。应用 4-氨基吡啶(4-AP)或去除外部 Mg(2+)离子诱导脑片癫痫样爆发,类似于癫痫持续状态下的电脑活动。我们已经开发了这些癫痫模型,用于多电极阵列(MEA),允许从 59 个点记录海马片表面的信号。我们介绍了这种新方法的验证和分析,使用了两种抗惊厥药,苯妥英和苯巴比妥,这两种药物的作用已经在这些模型中使用传统的细胞外记录进行了评估。除了评估药物对常见描述参数(持续时间、幅度和频率)的影响外,我们还描述了使用 MEA 评估爆发传播速度和导致癫痫样活动的基础频率的新方法。等高线图也被用作爆发活动的一种表示方法。最后,我们描述了由 100μM 4-AP 或去除外部 Mg(2+)离子诱导的癫痫样爆发的以前未报道的特性。具体来说,我们观察到在没有额外的药理学干预的情况下,爆发幅度随时间的增加而降低,爆发频率随时间的增加而增加。与传统的细胞外记录相比,这些 MEA 方法增强了从海马脑片制备中获得的数据的深度、质量和范围。它还可能揭示有助于抗癫痫药物作用的其他作用模式。