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在麻醉的脊髓大鼠中,单侧皮下注射蜂毒而非福尔马林会导致对侧脊髓退缩反射的超敏化卷绕和后放电。

Unilateral subcutaneous bee venom but not formalin injection causes contralateral hypersensitized wind-up and after-discharge of the spinal withdrawal reflex in anesthetized spinal rats.

作者信息

You Hao-Jun, Arendt-Nielsen Lars

机构信息

Center for Sensory-Motor Interaction (SMI), Laboratory for Experimental Pain Research, Aalborg University, Fredrik Bajers Vej 7 D-3, DK-9220 Aalborg, Denmark.

出版信息

Exp Neurol. 2005 Sep;195(1):148-60. doi: 10.1016/j.expneurol.2005.04.009.

Abstract

This study aimed to investigate the effect of tonic nociception on spinal withdrawal reflexes including (1) long lasting spontaneous responses elicited by subcutaneous (s.c.) administration of formalin (2.5%, 50 microl) and bee venom (BV, 0.2 mg/50 microl) into the hind paw and (2) corresponding ipsilateral (primary) and contralateral (secondary) hypersensitivity to noxious pinch and repetitive supra-threshold (1.5 x T) electrical stimuli at different frequencies (3 Hz: wind-up; 20 Hz: after-discharge) in anesthetized spinal rats. Spinal withdrawal reflexes were studied by simultaneously assessing single motor units (SMUs) electromyographic (EMG) activities from the bilateral medial gastrocnemius (MG) muscles. Subcutaneous formalin-induced persistent spontaneous SMU EMG responses were in typical biphasic manner with an apparent silent period (about 13-18 min), but in contrast, BV elicited monophasic long lasting (about 1 h) SMU EMG responses without any resting state. The mechanically and electrically evoked responsiveness of SMUs were enhanced significantly by ipsilateral BV injection, whereas enhanced electrically, but not mechanically, evoked responses (including wind-up and after-discharge) were found at the non-injection site of the contralateral hind paw. However, s.c. administration of formalin was only able to establish ipsilateral hypersensitivity of the SMUs to repeated electrical, not mechanical, stimulation. Neither mechanically nor electrically evoked contralateral hypersensitivity of the SMUs was found during the ipsilateral formalin-induced nociception. For pharmacological intervention, intrathecal administration of the non-N-methyl-d-aspartate (non-NMDA) receptor antagonist CNQX (40 nmol/10 microl), but not the non-competitive NMDA receptor antagonist MK-801 (40 nmol/10 microl), significantly depressed BV-induced contralateral hypersensitivity of the SMUs to repeated 3 Hz (wind-up) and 20 Hz (after-discharge) frequencies of electrical stimulation. Using the extracellular SMU recording technique, we found that s.c. administration of formalin and BV shows a significant difference in long lasting spontaneous firing of SMUs. This is consistent with previous observations in animal behavioral studies. Additionally, contralateral electrically evoked hypersensitivity of the SMUs was found only following BV injection, not in the formalin test. The maintenance and development of BV-induced contralateral hypersensitivity of the spinal withdrawal reflex to noxious electrical stimulation indeed depend on different central pharmacological receptors. The spinal non-NMDA, but not the NMDA, receptors may play important role in BV-induced contralateral central hyperexcitability and sensitization.

摘要

本研究旨在探讨紧张性伤害感受对脊髓退缩反射的影响,包括:(1)后爪皮下注射福尔马林(2.5%,50微升)和蜂毒(BV,0.2毫克/50微升)所引发的持续自发反应;(2)在麻醉的脊髓大鼠中,对应于同侧(初级)和对侧(次级)对有害捏压和不同频率(3赫兹:时间总和;20赫兹:后放电)的重复阈上(1.5×阈刺激强度)电刺激的超敏反应。通过同时评估双侧腓肠肌内侧(MG)肌肉的单运动单位(SMU)肌电图(EMG)活动来研究脊髓退缩反射。皮下注射福尔马林诱导的持续自发SMU EMG反应呈典型的双相方式,有明显的静息期(约13 - 18分钟),但相比之下,BV引发单相持续(约1小时)的SMU EMG反应,无任何静息状态。同侧注射BV显著增强了SMU的机械和电诱发反应性,而在对侧后爪非注射部位发现电诱发反应(包括时间总和和后放电)增强,但机械诱发反应未增强。然而,皮下注射福尔马林仅能使SMU对重复电刺激而非机械刺激产生同侧超敏反应。在同侧福尔马林诱导的伤害感受过程中,未发现SMU的机械或电诱发对侧超敏反应。对于药物干预,鞘内注射非N - 甲基 - D - 天冬氨酸(非NMDA)受体拮抗剂CNQX(40纳摩尔/10微升),而非非竞争性NMDA受体拮抗剂MK - 801(40纳摩尔/10微升),可显著抑制BV诱导的SMU对重复3赫兹(时间总和)和20赫兹(后放电)频率电刺激的对侧超敏反应。使用细胞外SMU记录技术,我们发现皮下注射福尔马林和BV在SMU的持续自发放电方面存在显著差异。这与先前动物行为学研究的观察结果一致。此外,仅在注射BV后发现SMU的对侧电诱发超敏反应,在福尔马林试验中未发现。脊髓退缩反射对有害电刺激的BV诱导对侧超敏反应的维持和发展确实依赖于不同的中枢药理受体。脊髓非NMDA受体而非NMDA受体可能在BV诱导的对侧中枢性过度兴奋和敏化中起重要作用。

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