Headache Group-Department of Neurology, University of California, San Francisco, CA 94115, USA.
Brain Res. 2010 Nov 18;1361:76-85. doi: 10.1016/j.brainres.2010.09.004. Epub 2010 Sep 9.
Triptans, acting as serotonin, 5-HT(1B/1D/1F), receptor agonists, provide an effective and established treatment option in migraine and cluster headache. Clinical observations suggest a relatively specific effect of these compounds on primary headache disorders, but not in other pain syndromes. The mechanism of this specificity, however, is not well understood. Hence, we systematically studied primary sensory ganglia in rat to determine if the peripheral distribution of 5HT(1B/1D/1F) receptors showed any anatomical difference that would account for the specificity of clinical effect. Rat primary afferent and sensory ganglia neurons--trigeminal ganglia (Vg), and dorsal root ganglia (DRG): C(2), C(5), T(5), L(5)--were examined using paraffin-embedded, slide-bound tissue sections reacted with specific primary antibodies for rat 5-HT(1B, 1D) and (1F) receptors in a peroxidase-based immunohistochemical method. Immunoreactivity specific for all three serotonergic receptor subtypes was demonstrated in the five peripheral nervous system regions examined and quantitated. There was a good agreement for 5-HT(1B) and 5-HT(1D) receptors to that previously demonstrated in Vg and DRG L(5), while this was the first characterisation for 5-HT(1F) receptor in any of the five regions, as well as for 5-HT(1B) and 5HT(1D) receptors in DRG C(2), C(5) and T(5). In summary, all three 5-HT receptors are equally represented in Vg and the DRGs examined. We conclude that the triptans are theoretically able to bind to receptors at each level of the peripheral neuraxis without any apparent anatomical preference for the head.
曲坦类药物作为血清素 5-HT(1B/1D/1F)受体激动剂,为偏头痛和丛集性头痛提供了一种有效且已确立的治疗选择。临床观察表明,这些化合物对原发性头痛疾病具有相对特异性的作用,但对其他疼痛综合征则没有。然而,这种特异性的机制尚不清楚。因此,我们系统地研究了大鼠的初级感觉神经节,以确定 5-HT(1B/1D/1F)受体的外周分布是否存在任何解剖差异,可以解释其临床效果的特异性。使用石蜡包埋、幻灯片结合组织切片,对大鼠初级传入和感觉神经节神经元——三叉神经节(Vg)和背根神经节(DRG):C(2)、C(5)、T(5)、L(5)——进行了研究,并用基于过氧化物酶的免疫组织化学方法,用特异性针对大鼠 5-HT(1B、1D)和(1F)受体的初级抗体进行反应。在五个外周神经系统区域检查和定量的组织切片中,均显示出针对所有三种血清素能受体亚型的免疫反应性。5-HT(1B)和 5-HT(1D)受体与之前在 Vg 和 DRG L(5)中观察到的结果非常吻合,而这是 5-HT(1F)受体在五个区域中的首次特征描述,也是在 DRG C(2)、C(5)和 T(5)中 5-HT(1B)和 5HT(1D)受体的首次特征描述。总之,三种 5-HT 受体在 Vg 和检查的 DRG 中均有同等表达。我们得出结论,曲坦类药物理论上能够与外周神经轴的每个水平的受体结合,而没有任何对头部的明显解剖偏好。