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厄他培嗪通过减少背外侧纹状体和黑质网状部θ振荡的因果相互作用来预防左旋多巴诱导的运动障碍。

Eltoprazine prevents levodopa-induced dyskinesias by reducing causal interactions for theta oscillations in the dorsolateral striatum and substantia nigra pars reticulate.

机构信息

The National Key Clinic Specialty, The Engineering Technology Research Center of Education Ministry of China, Guangdong Provincial Key Laboratory on Brain Function Repair and Regeneration, Department of Neurosurgery, Zhujiang Hospital, Southern Medical University, Guangzhou, 510282, China.

Key Laboratory of Mental Health, Institute of Psychology, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

Neuropharmacology. 2019 Apr;148:1-10. doi: 10.1016/j.neuropharm.2018.12.027. Epub 2019 Jan 3.

Abstract

Oscillatory activities within basal ganglia (BG) circuitry in L-DOPA induced dyskinesia (LID), a condition that occurs in patients with Parkinson disease (PD), are not well understood. The aims of this study were firstly to investigate oscillations in main BG input and output structures-the dorsolateral striatum (dStr) and substantia nigra pars reticulata (SNr), respectively- including the direction of oscillation information flow, and secondly to investigate the effects of 5-HT1A/B receptor agonism with eltoprazine on oscillatory activities and abnormal involuntary movements (AIMs) characteristic. To this end, we conducted local field potential (LFP) electrophysiology in the dStr and SNr of LID rats simultaneous with AIM scoring. The LFP data were submitted to power spectral density, coherence, and partial Granger causality analyses. AIM data were analyzed relative to simultaneous oscillatory activities, with and without eltoprazine. We obtained four major findings. 1) Theta band (5-8 Hz) oscillations were enhanced in the dStr and SNr of LID rats. 2) Theta power correlated with AIM scores in the 180-min period after the last LID-inducing L-DOPA injection, but not with daily summed AIM scores during LID development. 3) Oscillatory information flowed from the dStr to the SNr. 4) Chronic eltoprazine reduced BG theta activity in LID rats and normalized information flow directionality, relative to that in LID rats not given eltoprazine. These results indicate that dStr activity plays a determinative role in the causal interactions of theta oscillations and that serotonergic inhibition may suppress dyskinesia by reducing dStr-SNr theta activity and restoring theta network information flow.

摘要

基底神经节(BG)回路中的振荡活动在左旋多巴诱导的运动障碍(LID)中,这种情况发生在帕金森病(PD)患者中,目前还不太清楚。本研究的目的首先是研究主要 BG 输入和输出结构——背外侧纹状体(dStr)和黑质网状部(SNr)——中的振荡,包括振荡信息流的方向,其次是研究 5-HT1A/B 受体激动剂艾曲嗪对振荡活动和异常不自主运动(AIMs)的影响。为此,我们在 LID 大鼠同时进行 AIM 评分时进行了 dStr 和 SNr 的局部场电位(LFP)电生理学研究。将 LFP 数据提交给功率谱密度、相干性和部分格兰杰因果关系分析。AIM 数据相对于同时进行的振荡活动进行了分析,有无艾曲嗪。我们得到了四个主要发现。1)θ 波段(5-8 Hz)振荡在 LID 大鼠的 dStr 和 SNr 中增强。2)θ 功率与最后一次 LID 诱导的左旋多巴注射后 180 分钟内的 AIM 评分相关,但与 LID 发展过程中的每日总和 AIM 评分无关。3)振荡信息从 dStr 流向 SNr。4)慢性艾曲嗪降低了 LID 大鼠的 BGθ 活动,并使信息流向正常化,与未给予艾曲嗪的 LID 大鼠相比。这些结果表明,dStr 活动在θ 振荡因果关系中起着决定性作用,而血清素抑制可能通过降低 dStr-SNrθ 活动和恢复θ 网络信息流来抑制运动障碍。

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