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Short-Term Amygdala Low-Frequency Stimulation Does not Influence Hippocampal Interneuron Changes Observed in the Pilocarpine Model of Epilepsy

机译:短期Amygdala低频刺激不会影响在癫痫的潜豚鼠模型中观察到的海马型细胞变化

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摘要

Temporal lobe epilepsy (TLE) is characterized by changes in interneuron numbers in the hippocampus. Deep brain stimulation (DBS) is an emerging tool to treat TLE seizures, although its mechanisms are not fully deciphered. We aimed to depict the effect of amygdala DBS on the density of the most common interneuron types in the CA1 hippocampal subfield in the lithium-pilocarpine model of epilepsy. Status epilepticus was induced in male Wistar rats. Eight weeks later, a stimulation electrode was implanted to the left basolateral amygdala of both pilocarpine-treated (Pilo, n = 14) and age-matched control rats (n = 12). Ten Pilo and 4 control animals received for 10 days 4 daily packages of 50 s 4 Hz regular stimulation trains. At the end of the stimulation period, interneurons were identified by immunolabeling for parvalbumin (PV), neuropeptide Y (NPY), and neuronal nitric oxide synthase (nNOS). Cell density was determined in the CA1 subfield of the hippocampus using confocal microscopy. We found that PV+ cell density was preserved in pilocarpine-treated rats, while the NPY+NOS+ cell density decreased significantly. The amygdala DBS did not significantly change the cell density in healthy or in epileptic animals. We conclude that DBS with low frequency applied for 10 days does not influence interneuron cell density changes in the hippocampus of epileptic rats.
机译:颞叶癫痫(TLE)的特点是海马中的互联网数的变化。深脑刺激(DBS)是一种治疗TLE癫痫发作的新兴工具,尽管其机制未完全破译。我们的旨在描绘Amygdala DBS对癫痫锂 - 硫纤维二野牛群模型中Ca1海马子场中最常见的中间核类型密度的影响。状态癫痫患者在雄性Wistar大鼠中诱导。八周后,将刺激电极注入到紫罗兰甘油处理(Plo,N = 14)和年龄匹配对照大鼠(n = 12)的左基石外杏仁醛。 10个Pilo和4个对照动物收到10天4日每日套餐的50 S 4 Hz常规刺激列车。在刺激期结束时,通过针对帕瓦尔白蛋白(PV),神经肽Y(NPY)和神经元一氧化氮合酶(NNO)的免疫标记鉴定内核。使用共聚焦显微镜在海马的Ca1子场中测定细胞密度。我们发现PV +细胞密度被保存在紫罗布碱处理的大鼠中,而NPY + / NNOS +细胞密度显着降低。 Amygdala DBS没有显着改变健康或癫痫动物中的细胞密度。我们得出结论,施加10天低频率的DB不会影响癫痫大鼠海马的中间核细胞密度变化。

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