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Activity of hippocampal adult-born neurons regulates alcohol withdrawal seizures

机译:成人海马神经元活动调节酒精戒断发作

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摘要

Alcohol withdrawal (AW) after chronic alcohol exposure produces a series of symptoms, with AW-associated seizures being among the most serious and dangerous. However, the mechanism underlying AW seizures has yet to be established. In our mouse model, a sudden AW produced 2 waves of seizures: the first wave includes a surge of multiple seizures that occurs within hours to days of AW, and the second wave consists of sustained expression of epileptiform spikes and wave discharges (SWDs) during a protracted period of abstinence. We revealed that the structural and functional adaptations in newborn dentate granule cells (DGCs) in the hippocampus underlie the second wave of seizures but not the first wave. While the general morphology of newborn DGCs remained unchanged, AW increased the dendritic spine density of newborn DGCs, suggesting that AW induced synaptic connectivity of newborn DGCs with excitatory afferent neurons and enhanced excitability of newborn DGCs. Indeed, specific activation and suppression of newborn DGCs by the chemogenetic DREADD method increased and decreased the expression of epileptiform SWDs, respectively, during abstinence. Thus, our study unveiled that the pathological plasticity of hippocampal newborn DGCs underlies AW seizures during a protracted period of abstinence, providing critical insight into hippocampal neural circuits as a foundation to understand and treat AW seizures.
机译:慢性酒精暴露后戒酒(AW)会产生一系列症状,其中与AW相关的癫痫发作最为严重和危险。但是,尚未确认建立AW癫痫发作的机制。在我们的小鼠模型中,突然的AW引起2次癫痫发作:第一波包括在AW的数小时至数天内发生的多次癫痫发作,第二波包括癫痫发作期间持续表达的癫痫样突波和放电(SWD)。旷日持久的禁欲。我们发现海马新生齿状颗粒细胞(DGC)的结构和功能适应是第二波发作的基础,而不是第一波发作的基础。虽然新生DGC的一般形态保持不变,但AW增加了新生DGC的树突棘密度,这表明AW诱导了新生DGC与兴奋性传入神经元的突触连接并增强了新生DGC的兴奋性。实际上,在禁欲期间,通过化学生成的DREADD方法对新生DGC的特异性激活和抑制分别增加和减少了癫痫样SWD的表达。因此,我们的研究表明,在禁欲期延长期间,海马新生DGC的病理可塑性是AW癫痫发作的基础,为了解和治疗AW癫痫发作的基础提供了对海马神经回路的重要见解。

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