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Dysregulated Neuronal Activity Patterns Implicate Corticostriatal Circuit Dysfunction in Multiple Rodent Models of Huntington's Disease

机译:亨廷顿氏病的多种啮齿动物模型中神经元活动模式失调牵涉皮质口岸电路功能障碍。

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摘要

Huntington's disease (HD) is an autosomal dominant neurodegenerative disorder that targets the corticostriatal system and results in progressive deterioration of cognitive, emotional, and motor skills. Although cortical and striatal neurons are widely studied in animal models of HD, there is little information on neuronal function during expression of the HD behavioral phenotype. To address this knowledge gap, we used chronically implanted micro-wire bundles to record extracellular spikes and local field potentials (LFPs) in truncated (R6/1 and R6/2) and full-length (knock-in, KI) mouse models as well as in transgenic HD rats (tgHD rats) behaving in an open-field arena. Spike activity was recorded in the striatum of all models and in prefrontal cortex (PFC) of R6/2 and KI mice, and in primary motor cortex (M1) of R6/2 mice. We also recorded LFP activity in R6/2 striatum. All HD models exhibited altered neuronal activity relative to wild-type (WT) controls. Although there was no consistent effect on firing rate across models and brain areas, burst firing was reduced in striatum, PFC, and M1 of R6/2 mice, and in striatum of KI mice. Consistent with a decline in bursting, the inter-spike-interval coefficient of variation was reduced in all regions of all models, except PFC of KI mice and striatum of tgHD rats. Among simultaneously recorded neuron pairs, correlated firing was reduced in all brain regions of all models, while coincident bursting, which measures the temporal overlap between bursting pairs, was reduced in striatum of all models as well as in M1 of R6/2s. Preliminary analysis of striatal LFPs revealed aberrant behavior-related oscillations in the delta to theta range and in gamma activity. Collectively, our results indicate that disrupted corticostriatal processing occurs across multiple HD models despite differences in the severity of the behavioral phenotype. Efforts aimed at normalizing corticostriatal activity may hold the key to developing new HD therapeutics.
机译:亨廷顿舞蹈病(HD)是一种常染色体显性遗传神经退行性疾病,主要针对皮层神经系统,导致认知,情感和运动技能的逐步恶化。尽管在HD动物模型中对皮质和纹状体神经元进行了广泛研究,但在HD行为表型的表达过程中,关于神经元功能的信息很少。为了解决这一知识鸿沟,我们使用了长期植入的微线束来记录截短(R6 / 1和R6 / 2)和全长(敲入,KI)小鼠模型中的细胞外尖峰和局部场电势(LFP),以及在露天场所活动的转基因HD大鼠(tgHD大鼠)。在所有模型的纹状体以及R6 / 2和KI小鼠的前额叶皮层(PFC)中以及R6 / 2小鼠的初级运动皮层(M1)中记录了穗状花序活动。我们还在R6 / 2纹状体中记录了LFP活性。相对于野生型(WT)对照,所有HD模型均表现出改变的神经元活性。尽管没有对模型和大脑区域的放电率产生一致的影响,但在R6 / 2小鼠的纹状体,PFC和M1中以及在KI小鼠的纹状体中,突发性放电有所减少。与爆发减少一致,除KI小鼠的PFC和tgHD大鼠的纹状体外,所有模型的所有区域的峰间间隔变异系数均降低。在同时记录的神经元对中,所有模型的所有大脑区域中的相关放电都降低,而所有模型的纹状体以及R6 / 2s的M1中,测量突发对之间时间重叠的同时爆发减少了。纹状体LFP的初步分析显示,在δ至θ范围内和伽马活性中存在与行为相关的异常振荡。总体而言,我们的结果表明,尽管行为表型的严重程度有所不同,但在多个HD模型中仍发生了皮质皮质处理的中断。旨在使皮质口角活性正常化的努力可能是开发新的HD治疗药物的关键。

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