Takemura M, Shimada T, Shigenaga Y
Department of Oral Anatomy, Osaka University Graduate School of Dentistry, 1-8 Yamadaoka, Suita, 565-0871, Osaka, Japan.
Neuroscience. 2001;103(4):1051-8. doi: 10.1016/s0306-4522(01)00031-8.
We examined the effects of systemic administration of a GABA(B) receptor agonist, baclofen, or antagonist, phaclofen, on the expression of c-Fos protein induced 3h after electrical stimulation of the trigeminal ganglion at low (0.1 mA) or high intensities (1.0 mA) in the urethane-anesthetized rat. In saline-treated rats, 10 min stimulation of the trigeminal ganglion induced c-Fos-immunopositive neurons throughout the full extent of the ipsilateral superficial layers of the trigeminal nucleus caudalis, and dorsal or dorsomedial part of the nuclei rostral to obex (trigeminal nucleus principalis, dorsomedial nucleus of trigeminal nucleus oralis and dorsomedial nucleus of trigeminal nucleus interpolaris). Animals stimulated at 1.0 mA induced a significantly higher number of labeled neurons in all the trigeminal sensory nuclei than animals stimulated at 0.1 mA. In rats treated with 20mg/kg i.p. baclofen and stimulated at 0.1 mA, the numbers of Fos-positive neurons in all the trigeminal sensory nuclei were significantly decreased compared to saline-treated controls. After stimulation at 1.0 mA in rats treated with baclofen, the numbers of Fos-positive neurons in all the trigeminal sensory nuclei were also significantly decreased. In rats treated with 2mg/kg i.p. phaclofen and stimulated at 1.0 mA, the numbers of Fos-positive neurons were significantly increased in all the trigeminal sensory nuclei. However, after stimulation at 0.1 mA in rats treated with phaclofen, the numbers of Fos-positive neurons were significantly decreased in the superficial layers and magnocellular zone of trigeminal nucleus caudalis and dorsomedial nucleus of trigeminal nucleus oralis. These results indicate that the expression of c-Fos in the trigeminal sensory nucleus is differentially regulated through GABAB receptors in a manner that is dependent on the nucleus and the type of primary afferents that are activated by different stimulus intensities. Systemic administration of baclofen could inhibit both nociceptive and non-nociceptive sensory activity in the trigeminal sensory nucleus. Systemic administration of phaclofen could enhance nociceptive sensory activity but not non-nociceptive activity.
我们研究了在乌拉坦麻醉的大鼠中,全身给予γ-氨基丁酸B(GABA(B))受体激动剂巴氯芬或拮抗剂法氯芬,对三叉神经节在低强度(0.1 mA)或高强度(1.0 mA)电刺激3小时后诱导的c-Fos蛋白表达的影响。在生理盐水处理的大鼠中,对三叉神经节进行10分钟刺激后,在同侧三叉神经尾侧核浅层的整个范围以及闩前方核的背侧或背内侧部分(三叉神经主核、三叉神经脑桥核背内侧核和三叉神经中脑核背内侧核)诱导出c-Fos免疫阳性神经元。与以0.1 mA刺激的动物相比,以1.0 mA刺激的动物在所有三叉神经感觉核中诱导出的标记神经元数量显著更多。在用20mg/kg腹腔注射巴氯芬处理并以0.1 mA刺激的大鼠中,与生理盐水处理的对照组相比,所有三叉神经感觉核中Fos阳性神经元的数量显著减少。在用巴氯芬处理的大鼠中以1.0 mA刺激后,所有三叉神经感觉核中Fos阳性神经元的数量也显著减少。在用2mg/kg腹腔注射法氯芬处理并以1.0 mA刺激的大鼠中,所有三叉神经感觉核中Fos阳性神经元的数量显著增加。然而,在用法氯芬处理的大鼠中以0.1 mA刺激后,三叉神经尾侧核浅层和大细胞区以及三叉神经脑桥核背内侧核中Fos阳性神经元的数量显著减少。这些结果表明,三叉神经感觉核中c-Fos的表达通过GABAB受体以一种依赖于核以及由不同刺激强度激活的初级传入神经类型的方式受到差异调节。全身给予巴氯芬可抑制三叉神经感觉核中的伤害性和非伤害性感觉活动。全身给予法氯芬可增强伤害性感觉活动,但不能增强非伤害性活动。