Department of Dysphagia Rehabilitation, Nihon University School of Dentistry, 1-8-13 Kanda-Surugadai, Chiyoda-ku, Tokyo, 101-8310, Japan.
Mol Pain. 2010 Feb 3;6:9. doi: 10.1186/1744-8069-6-9.
In order to evaluate the neural mechanisms underlying the abnormal facial pain that may develop following regeneration of the injured inferior alveolar nerve (IAN), the properties of the IAN innervated in the mental region were analyzed.
Fluorogold (FG) injection into the mental region 14 days after IAN transection showed massive labeling of trigeminal ganglion (TG). The escape threshold to mechanical stimulation of the mental skin was significantly lower (i.e. mechanical allodynia) at 11-14 days after IAN transection than before surgery. The background activity, mechanically evoked responses and afterdischarges of IAN Adelta-fibers were significantly higher in IAN-transected rats than naive. The small/medium diameter TG neurons showed an increase in both tetrodotoxin (TTX)-resistant (TTX-R) and -sensitive (TTX-S) sodium currents (INa) and decrease in total potassium current, transient current (IA) and sustained current (IK) in IAN-transected rats. The amplitude, overshoot amplitude and number of action potentials evoked by the depolarizing pulses after 1 muM TTX administration in TG neurons were significantly higher, whereas the threshold current to elicit spikes was smaller in IAN-transected rats than naive. Resting membrane potential was significantly smaller in IAN-transected rats than that of naive.
These data suggest that the increase in both TTX-S INa and TTX-R INa and the decrease in IA and Ik in small/medium TG neurons in IAN-transected rats are involved in the activation of spike generation, resulting in hyperexcitability of Adelta-IAN fibers innervating the mental region after IAN transection.
为了评估受伤的下牙槽神经(IAN)再生后可能出现的异常面部疼痛的神经机制,分析了支配颏部区域的 IAN 的特性。
在 IAN 切断后 14 天向颏部区域注射荧光金(FG)显示大量三叉神经节(TG)标记。IAN 切断后 11-14 天,颏部皮肤机械刺激的逃逸阈值明显降低(即机械性痛觉过敏)。IAN Adelta 纤维的背景活动、机械诱发反应和后放电明显高于未手术的大鼠。IAN 切断大鼠的小/中直径 TG 神经元显示 TTX 抗性(TTX-R)和敏感(TTX-S)钠离子电流(INa)增加,总钾电流、瞬变电流(IA)和持续电流(IK)减少。在 1 μM TTX 给药后,TG 神经元去极化脉冲诱发的动作电位幅度、超射幅度和动作电位数量明显增加,而 IAN 切断大鼠的激发尖峰的阈电流较小。IAN 切断大鼠的静息膜电位明显小于未手术大鼠。
这些数据表明,IAN 切断大鼠小/中 TG 神经元中 TTX-S INa 和 TTX-R INa 的增加以及 IA 和 Ik 的减少参与了尖峰生成的激活,导致 IAN 切断后支配颏部区域的 Adelta-IAN 纤维的过度兴奋。