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首页> 外文期刊>Epilepsy currents >Lighting the Fuse: Deconstructing Complex Network Interactions Using On-Demand Seizures
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Lighting the Fuse: Deconstructing Complex Network Interactions Using On-Demand Seizures

机译:照明保险丝:使用按需癫痫发作解构复杂网络交互

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摘要

GABAergic interneurons play critical roles in seizures, but it remains unknown whether these vary across interneuron subtypes or evolve during a seizure. This uncertainty stems from the unpredictable timing of seizures in most models, which limits neuronal imaging or manipulations around the seizure onset. Here, we describe a mouse model for optogenetic seizure induction. Combining this with calcium imaging, we find that seizure onset rapidly recruits parvalbumin (PV+ve), somatostatin (SOM+ve), and vasoactive intestinal peptide (VIP)-expressing interneurons, whereas excitatory neurons are recruited several seconds later. Optogenetically inhibiting VIP interneurons consistently increased seizure threshold and reduced seizure duration. Inhibiting PV+ and SOM+ interneurons had mixed effects on seizure initiation but consistently reduced seizure duration. Thus, while their roles may evolve during seizures, PV+ and SOM+ interneurons ultimately help maintain ongoing seizures. These results show how an optogenetically induced seizure model can be leveraged to pinpoint a new target for seizure control: VIP interneurons.
机译:Gabaergic Interneurons在癫痫发作中发挥着关键作用,但它仍然未知这些是否在癫痫发作期间跨越跨度亚型或演变。这种不确定性源于大多数模型中癫痫发作的不可预测的时间,这限制了癫痫发作周围的神经元成像或操纵。在这里,我们描述了一种用于光学癫痫发作诱导的小鼠模型。将其与钙成像结合起来,发现癫痫发作快速招募帕瓦尔白蛋白(PV + VE),生长抑素(SOM + VE)和血管活性肠肽(VIP) - 表达中间核,而兴奋性神经元在几秒钟后征集。致光学抑制VIP中间核心持续增加癫痫发作阈值并降低癫痫发作持续时间。抑制PV +和SOM + Interneurons对癫痫发作引发的混合影响,但始终减少癫痫发作持续时间。因此,虽然它们的角色可能在癫痫发作期间演变,但PV +和Som + Interneuron最终有助于维持持续的癫痫发作。这些结果显示了如何利用过敏诱导的癫痫发作模型以确定癫痫发作控制的新目标:VIP Interneurons。

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