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Epileptiform activity induction with electrolyte imbalance in brain slices: mechanisms involved in control

机译:脑切片中电解质不平衡的癫痫型活性诱导:控制中涉及的机制

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Epilepsy is a disorder of recurrent seizure activity caused by rhythmic firing of neurons. Epileptiform activity can be generated by incubating brain slices in magnesium-free artificial cerebrospinal fluid (ACSF). In the present study, epileptiform discharges induced by the omission of magnesium ions from ACSF has been studied in hippocampal slices obtained from young rats using patch clamp tight-seal whole cell recording technique. Effects of AP5 to block NMDA receptor activation and acidic pH shift of ACSF on the epileptiform current was studied. It was found that magnesium-free ACSF induced epileptiform activity frequency was attenuated with APS application more than 50 %. The pH shift of the magnesium-free ACSF from 7.3 to 7.1 depressed the epileptiform activity. Both effects were shown to be reversible. According to the results of this study, epileptiform activity and mild extracellular acidic shifts do not interact to aggravate excitotoxicity conditions in CA1 pyramidal neurons.
机译:癫痫是由神经元的有节奏射击引起的复发性癫痫发作活动的疾病。可以通过在无镁的人工脑脊液(ACSF)中孵育脑切片来产生癫痫型活性。在本研究中,通过使用贴片钳紧密密封的全电池记录技术在从幼大鼠获得的海马切片中研究了由ACSF的镁离子遗漏诱导的癫痫株排放。研究了AP5对NMDA受体活化和ACSF酸性pH转移对癫痫型电流的影响。发现无镁ACSF诱导的癫痫型活性频率衰减,APS应用超过50%。无镁ACSF的pH转移从7.3-7.1抑制癫痫均活动。这两种效果都被证明是可逆的。根据该研究的结果,癫痫均活动和轻度细胞外酸性移位不会相互作用,以加剧Ca1金字塔神经元中的促进毒性条件。

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