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舒马曲坦可通过一种完全神经机制抑制三叉神经传入纤维。

Sumatriptan can inhibit trigeminal afferents by an exclusively neural mechanism.

作者信息

Hoskin K L, Kaube H, Goadsby P J

机构信息

Institute of Neurology, National Hospital for Neurology and Neurosurgery, London, UK.

出版信息

Brain. 1996 Oct;119 ( Pt 5):1419-28. doi: 10.1093/brain/119.5.1419.

Abstract

Mechanical distortion of the human cranial venous sinuses is painful as is cranial venous sinus distension during migraine. Sumatriptan, the serotonin (5HT)IB/D-like receptor agonist, is highly effective in relieving migraine headache and part of its action may be due to constriction of cranial dural blood vessels. Using immunohistochemical detection of the immediate early gene Fos, we have mapped the spatial pattern of neural activation in the caudal medulla and the upper cervical spinal cord (C1, C2 and C3) in cats following either electrical or mechanical stimulation of the superior sagittal sinus. Fourteen cats were anaesthetized with alpha-chloralose and prepared for physiological monitoring of blood pressure, heart rate, rectal temperature and expired CO2. Electrical stimulation evoked significant increases in the (median) numbers of Fos-positive cells in laminae I and IIo of the superficial dorsal horn of C1, C2 and C3 cervical spinal cord (88, 92 and 18 cells, respectively) and of the trigeminal nucleus caudalis (TNC) (81 cells). Mechanical stimulation revealed a similar pattern of neural activation but with reduced intensity in laminae I and IIo of the TNC (38 cells) and of C1 and C2 (32 and 31 cells, respectively). The temporalis muscle was stimulated mechanically in the control group and the numbers and distribution of Fos-positive cells were no different from those in non-stimulated controls. Treatment with sumatriptan reduced the numbers of Fos-positive cells found in laminae I and IIo of the TNC and C2 (6, 13 cells and 9 cells, respectively) after mechanical stimulation. These data suggest that the neural effect of sumatriptan alone is sufficient for significant attenuation of transmission in the trigeminal system. The fact that sumatriptan can inhibit trigeminal activation without its vascular effects suggests that drugs without a significant activity on blood vessels may be effective in the treatment of migraine.

摘要

人类颅静脉窦的机械性扭曲会引发疼痛,偏头痛发作时颅静脉窦扩张也会如此。舒马曲坦,一种5-羟色胺(5HT)IB/D样受体激动剂,在缓解偏头痛方面非常有效,其部分作用可能归因于颅硬脑膜血管的收缩。通过免疫组织化学检测即刻早期基因Fos,我们描绘了猫的上矢状窦受到电刺激或机械刺激后,延髓尾部和颈髓上段(C1、C2和C3)神经激活的空间模式。14只猫用α-氯醛糖麻醉,并准备好进行血压、心率、直肠温度和呼出二氧化碳的生理监测。电刺激引起C1、C2和C3颈髓浅背角I层和IIo层(分别为88、92和18个细胞)以及三叉神经尾核(TNC)(81个细胞)中Fos阳性细胞数量(中位数)显著增加。机械刺激显示出类似的神经激活模式,但TNC的I层和IIo层(38个细胞)以及C1和C2(分别为32和31个细胞)中的激活强度降低。对照组对颞肌进行机械刺激,Fos阳性细胞的数量和分布与未刺激的对照组无差异。舒马曲坦治疗可减少机械刺激后TNC和C2的I层和IIo层中发现的Fos阳性细胞数量(分别为6、13个细胞和9个细胞)。这些数据表明,单独使用舒马曲坦的神经效应足以显著减弱三叉神经系统中的传递。舒马曲坦可在无血管效应的情况下抑制三叉神经激活,这一事实表明,对血管无显著活性的药物可能对偏头痛治疗有效。

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