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电针治疗后大鼠神经病理性疼痛模型脑网络中枢纽区域的变化

Shifted hub regions in the brain network of rat neuropathic pain model after electroacupuncture therapy.

作者信息

Wu Jiajia, Wang Shuai, Lu Yechen, Zheng Mouxiong, Hua Xuyun, Xu Jianguang

机构信息

Center of Rehabilitation Medicine, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, 200437, P. R. China.

Department of Rehabilitation Medicine, Ordos Central Hospital, Ordos, 017000, P. R. China.

出版信息

J Integr Neurosci. 2020 Mar 30;19(1):65-75. doi: 10.31083/j.jin.2020.01.1188.

Abstract

Electroacupuncture has been considered an effective neurorehabilitative approach to relieve neuropathic pain originating in the central nervous system. However, the neural mechanism underlying the effect of electroacupuncture on pain-relief remains largely unknown. The objective of this study was to investigate the alteration of hub configurations of brain networks caused by the sustained impact of electroacupuncture on a clinically relevant animal model of neuropathic pain. Rats were divided into four groups: normal, model, electroacupuncture, and sham-electroacupuncture. Rats of the last three groups received complete brachial plexus avulsion to evoke neuropathic pain. Electroacupuncture was conducted continuously for three months on the electroacupuncture group, while the sham intervention was performed on the sham-electroacupuncture group. Mechanical withdrawal thresholds were evaluated at the end of the first and third month of intervention. Graph theoretical network analysis compared the regional topological parameters and explored hub configurations of brain networks by longitudinal resting-state fMRI. Three-months electroacupuncture showed a significant pain-relief effect. Not the spatial distribution of hubs, but the hubness distribution showed a significant difference among groups after a three-month intervention. The proportion of more highly connected hub regions was significantly higher in the model rats than the normal rats, while that of the electroacupuncture group was considerably lower than the model group. Additionally, regional parameter changes showed a very similar distribution of hub proportions. It was concluded that long-term electroacupuncture might restore an adaptive equilibrium to a disrupted network and suppress maladaptive plastic changes that follow neuropathic pain. This may provide an important avenue for future strategies appropriate for therapeutic interventions.

摘要

电针已被认为是一种有效的神经康复方法,用于缓解源自中枢神经系统的神经性疼痛。然而,电针止痛效果背后的神经机制在很大程度上仍不清楚。本研究的目的是探讨在一个临床相关的神经性疼痛动物模型中,电针的持续作用所引起的脑网络枢纽配置的改变。将大鼠分为四组:正常组、模型组、电针组和假电针组。后三组大鼠接受完全性臂丛神经撕脱术以诱发神经性疼痛。电针组连续进行三个月的电针治疗,而假电针组进行假干预。在干预的第一个月和第三个月末评估机械缩足阈值。通过图形理论网络分析比较区域拓扑参数,并通过纵向静息态功能磁共振成像探索脑网络的枢纽配置。三个月的电针治疗显示出显著的止痛效果。经过三个月的干预,各组之间枢纽的空间分布没有显著差异,但枢纽性分布存在显著差异。模型大鼠中连接性更高的枢纽区域比例显著高于正常大鼠,而电针组的这一比例明显低于模型组。此外,区域参数变化显示枢纽比例的分布非常相似。研究得出结论,长期电针可能会恢复受损网络的适应性平衡,并抑制神经性疼痛后出现的适应不良的可塑性变化。这可能为未来适合治疗干预的策略提供一条重要途径。

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