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阿米替林对神经病理性疼痛大鼠模型L5背根初级传入纤维异位放电的影响。

The effect of amitriptyline on ectopic discharge of primary afferent fibers in the L5 dorsal root in a rat model of neuropathic pain.

作者信息

Su Xin, Liang Annie H, Urban Mark O

机构信息

Department of Pain Research, Merck Research Laboratories, West Point, Pennsylvania, USA.

出版信息

Anesth Analg. 2009 May;108(5):1671-9. doi: 10.1213/ane.0b013e31819b0271.

Abstract

BACKGROUND

The sodium channel blocker amitriptyline has been shown to inhibit ectopic discharge in injured nerves. In the present study, we characterized ectopic discharges of afferent fibers following L5/L6 spinal nerve ligation (SNL) by their electrophysiological properties and sensitivities to inhibition by amitriptyline in the decentralized L5 dorsal root in SNL rats.

METHODS

Rats exhibiting withdrawal thresholds <4.0 g after SNL were selected for the present study. After laminectomy in pentobarbital-anesthetized rats, the L5 dorsal root was decentralized close to its entry to the spinal cord, and the spontaneous activities of single units were recorded peripherally before and after IV administration of amitriptyline. The mean frequency of afferent fiber activity and instantaneous frequency were measured.

RESULTS

The spontaneous activities of afferent fibers in naïve rats had high frequency (35.23 +/- 6.63 Hz) and pattern discharge based on their instantaneous frequencies and interspike interval distributions. In rats that had received SNL, afferent fibers exhibited spontaneous discharge (mean of 11.05 +/- 3.66 Hz) with an irregular discharge pattern or short bursting activity in some cases. Only 5/13 (38%) afferent fibers from naïve rats showed reduced spontaneous activities after amitriptyline (2 mg/kg, IV), whereas amitriptyline significantly inhibited ectopic discharge in 13/18 (72%) afferent fibers from SNL rats (ID(50) = 1.66 +/- 0.17 mg/kg). Furthermore, the greatest inhibitory effect of amitriptyline was consistently observed on those afferent fibers exhibiting low frequency (<20 Hz) and/or bursting discharge.

CONCLUSION

These results provide direct evidence that amitriptyline, which is used clinically for the treatment of neuropathic pain, selectively inhibits ectopic discharge of low frequency and bursting discharge in the rat neuropathic pain model.

摘要

背景

钠通道阻滞剂阿米替林已被证明可抑制受损神经的异位放电。在本研究中,我们通过电生理特性以及对SNL大鼠去传入L5背根中阿米替林抑制作用的敏感性,对L5/L6脊神经结扎(SNL)后传入纤维的异位放电进行了特征描述。

方法

选择SNL后退缩阈值<4.0 g的大鼠进行本研究。在戊巴比妥麻醉的大鼠中进行椎板切除术后,将L5背根在其进入脊髓处附近去传入,并在静脉注射阿米替林前后在外周记录单个单位的自发活动。测量传入纤维活动的平均频率和瞬时频率。

结果

未处理大鼠传入纤维的自发活动具有高频(35.23±6.63 Hz),并根据其瞬时频率和峰间间隔分布呈现出放电模式。在接受SNL的大鼠中,传入纤维表现出自发放电(平均11.05±3.66 Hz),在某些情况下具有不规则放电模式或短阵发放活动。未处理大鼠的13根传入纤维中只有5根(38%)在阿米替林(2 mg/kg,静脉注射)后自发活动减少,而阿米替林显著抑制了SNL大鼠18根传入纤维中的13根(72%)的异位放电(半数抑制剂量(ID50)=1.66±0.17 mg/kg)。此外,始终观察到阿米替林对那些表现出低频(<20 Hz)和/或阵发放电的传入纤维具有最大抑制作用。

结论

这些结果提供了直接证据,表明临床上用于治疗神经性疼痛的阿米替林在大鼠神经性疼痛模型中选择性抑制低频和阵发放电的异位放电。

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