Hoskin K L, Bulmer D C, Goadsby P J
Institute of Neurology, The National Hospital for Neurology and Neurosurgery, London, UK.
Neurosci Lett. 1999 May 14;266(3):173-6. doi: 10.1016/s0304-3940(99)00281-5.
Primary neurovascular headaches, such as migraine and cluster headache probably involve activation of trigeminovascular pain structures projecting to the trigeminocervical complex of neurons in the caudal brain stem and upper cervical spinal cord. It has recently been demonstrated that blockade of the synthesis of nitric oxide (NO) by an NO synthesis inhibitor can abort acute migraine attacks and thus it is of interest to determine whether there is an influence of NO generation on trigeminocervical neurons. Cats were anaesthetised with alpha-chloralose (60 mg/kg, i.t.). supplemental 20 mg/kg, intravenously (i.v.)) and halothane for surgery (0.5-3% by inhalation). A circular midline craniotomy was performed to isolate the superior sagittal sinus (SSS) for electrical stimulation (0.3 Hz, 150 V, 250 micros duration for 2 h). Two groups were compared, one stimulated after administration of vehicle and the other stimulated after administration of N(G)-nitro-L-arginine methylester (L-NAME: 100 mg/kg, i.v.). After stimulation of the SSS Fos immunoreactivity was observed in lamina I/IIo of the trigeminal nucleus caudalis and dorsal horns of C1 and C2 to a median total of 136 cells (range 122-146). After L-NAME treatment Fos expression was significantly reduced to 40 cells (24-54; P < 0.02). In conclusion, inhibition of NO synthesis L-NAME markedly reduces Fos expression in the trigeminocervical complex of the cat. These data taken together with the clinical observations of the effect of NO synthesis blockade in migraine suggest a role for NO generation in mediating nociceptive transmission in acute migraine.
原发性神经血管性头痛,如偏头痛和丛集性头痛,可能涉及投射至脑干尾端和颈髓上部神经元三叉颈复合体的三叉神经血管性疼痛结构的激活。最近有研究表明,一氧化氮(NO)合成抑制剂阻断NO合成可终止急性偏头痛发作,因此确定NO生成对三叉颈神经元是否有影响很有意义。猫用α-氯醛糖(60mg/kg,腹腔注射;补充20mg/kg,静脉注射)和氟烷(吸入0.5 - 3%)麻醉用于手术。行环形中线开颅术以分离上矢状窦(SSS)用于电刺激(0.3Hz,150V,250微秒持续2小时)。比较两组,一组在给予赋形剂后刺激,另一组在给予N(G)-硝基-L-精氨酸甲酯(L-NAME:100mg/kg,静脉注射)后刺激。刺激SSS后,在三叉神经尾侧核的I/IIo层以及C1和C2背角观察到Fos免疫反应性,中位数总计136个细胞(范围122 - 146)。L-NAME处理后Fos表达显著降低至40个细胞(24 - 54;P < 0.02)。总之,L-NAME抑制NO合成显著降低了猫三叉颈复合体中的Fos表达。这些数据与NO合成阻断对偏头痛影响的临床观察结果一起表明,NO生成在介导急性偏头痛伤害性传递中起作用。