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Early hypersynchrony in juvenile PINK1−/− motor cortex is rescued by antidromic stimulation

机译:幼年PINK1-/-运动皮层的超同步性通过抗皮肤刺激得以挽救

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摘要

In Parkinson’s disease (PD), cortical networks show enhanced synchronized activity but whether this precedes motor signs is unknown. We investigated this question in PINK1/ mice, a genetic rodent model of the PARK6 variant of familial PD which shows impaired spontaneous locomotion at 16 months. We used two-photon calcium imaging and whole-cell patch clamp in slices from juvenile (P14–P21) wild-type or PINK1/ mice. We designed a horizontal tilted cortico-subthalamic slice where the only connection between cortex and subthalamic nucleus (STN) is the hyperdirect cortico-subthalamic pathway. We report excessive correlation and synchronization in PINK1/ M1 cortical networks 15 months before motor impairment. The percentage of correlated pairs of neurons and their strength of correlation were higher in the PINK1/ M1 than in the wild type network and the synchronized network events involved a higher percentage of neurons. Both features were independent of thalamo-cortical pathways, insensitive to chronic levodopa treatment of pups, but totally reversed by antidromic invasion of M1 pyramidal neurons by axonal spikes evoked by high frequency stimulation (HFS) of the STN. Our study describes an early excess of synchronization in the PINK1/ cortex and suggests a potential role of antidromic activation of cortical interneurons in network desynchronization. Such backward effect on interneurons activity may be of importance for HFS-induced network desynchronization.
机译:在帕金森氏病(PD)中,皮质网络显示出增强的同步活动,但尚不清楚这是否先于运动征兆。我们在PINK1 - / -小鼠中研究了这个问题,PINK1 - / -小鼠是家族性PD的PARK6变体的遗传啮齿动物模型,在16个月时显示出自发运动能力受损。我们在幼年(P14–P21)野生型或PINK1 - / -小鼠的切片中使用了双光子钙成像和全细胞膜片钳。我们设计了一个水平倾斜的皮质下丘脑片,其中皮质与丘脑下核(STN)之间的唯一连接是超直接皮质丘脑下通路。我们报告运动损伤前15个月,PINK1 - / - M1皮质网络过度相关和同步。 M1中的PINK1 - / - M1中相关神经元对的百分比及其相关强度高于野生型网络,而同步网络事件所占的百分比更高神经元。这两个特征均独立于丘脑-皮质途径,对小儿慢性左旋多巴的治疗不敏感,但被STN的高频刺激(HFS)引起的轴突尖峰对M1锥体神经元的抗表皮侵袭完全逆转。我们的研究描述了PINK1 - / -皮层中早期的同步过度现象,并提出了皮层神经元的反激激活在网络不同步中的潜在作用。对中间神经元活动的这种后向效应对于HFS诱导的网络去同步可能很重要。

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