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大鼠周围神经损伤后脊髓可塑性变化相关的对侧代谢激活

Contralateral Metabolic Activation Related to Plastic Changes in the Spinal Cord after Peripheral Nerve Injury in Rats.

作者信息

Won Ran, Lee Bae Hwan

机构信息

Department of Biomedical Laboratory Science, Division of Health Sciences, Dongseo University, Busan 617-716, Republic of Korea.

Department of Physiology, Brain Research Institute, Epilepsy Research Institute, Brain Korea 21 PLUS Project for Medical Science, Yonsei University College of Medicine, Seoul 120-752, Republic of Korea.

出版信息

Neural Plast. 2015;2015:438319. doi: 10.1155/2015/438319. Epub 2015 Sep 28.

Abstract

We have previously reported the crossed-withdrawal reflex in which the rats with nerve injury developed behavioral pain responses of the injured paw to stimuli applied to the contralateral uninjured paw. This reflex indicates that contralateral plastic changes may occur in the spinal cord after unilateral nerve injury. The present study was performed to elucidate the mechanisms and morphological correlates underlying the crossed-withdrawal reflex by using quantitative (14)C-2-deoxyglucose (2-DG) autoradiography which can examine metabolic activities and spatial patterns simultaneously. Under pentobarbital anesthesia, rats were subjected to unilateral nerve injury. Mechanical allodynia was tested for two weeks after nerve injury. After nerve injury, neuropathic pain behaviors developed progressively. The crossed-withdrawal reflex was observed at two weeks postoperatively. Contralateral enhancement of 2-DG uptake in the ventral horn of the spinal cord to electrical stimulation of the uninjured paw was observed. These results suggest that the facilitation of information processing from the uninjured side to the injured side may contribute to the crossed-withdrawal reflex by plastic changes in the spinal cord of nerve-injured rats.

摘要

我们之前报道过交叉撤换反射,即神经损伤的大鼠在对侧未受伤的爪子受到刺激时,受伤爪子会出现行为性疼痛反应。这种反射表明,单侧神经损伤后脊髓可能会发生对侧可塑性变化。本研究通过使用定量(14)C-2-脱氧葡萄糖(2-DG)放射自显影技术来阐明交叉撤换反射背后的机制和形态学关联,该技术可同时检测代谢活动和空间模式。在戊巴比妥麻醉下,对大鼠进行单侧神经损伤。在神经损伤后两周测试机械性异常性疼痛。神经损伤后,神经性疼痛行为逐渐出现。术后两周观察到交叉撤换反射。观察到对未受伤爪子进行电刺激时,脊髓腹角2-DG摄取的对侧增强。这些结果表明,从未受伤侧到受伤侧信息处理的促进可能通过神经损伤大鼠脊髓的可塑性变化导致交叉撤换反射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f70/4600897/c88a1d88001d/NP2015-438319.001.jpg

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