Neurovascular and molecular mechanisms in migraine headaches.

M A Moskowitz, R Macfarlane
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Abstract

This chapter reviews the evidence that challenges traditional and unproven notions which perpetuate the singular importance of constriction and dilation to the genesis of migraine pain. New data in experimental laboratory models suggest that migraine headache may develop primarily from metabolic/neurophysiological events (as yet unidentified) within the cortical mantle, or from a disturbance in those regions of brain which closely approximate the distribution of trigeminovascular fibers innervating meningeal blood vessels. Accordingly, this chapter will review the consequences of trigeminovascular activation to pain and meningeal inflammation, and will summarize emerging molecular and pharmacological data suggesting that ergot alkaloids and sumatriptan alleviate pain primarily via activation of pre-junctional 5-HT1 heteroreceptors residing on primary afferent trigeminovascular fibers.

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偏头痛的神经血管和分子机制。
本章回顾了挑战传统和未经证实的观念的证据,这些观念延续了收缩和扩张对偏头痛起源的单一重要性。实验实验室模型的新数据表明,偏头痛可能主要是由皮质套膜内的代谢/神经生理事件(尚未确定)引起的,或者是由与支配脑膜血管的三叉神经血管纤维分布非常接近的大脑区域的紊乱引起的。因此,本章将回顾三叉神经血管激活对疼痛和脑膜炎症的影响,并将总结新出现的分子和药理学数据,这些数据表明麦角生物碱和舒马替坦主要通过激活位于初级传入三叉神经血管纤维上的连接前5-HT1异受体来减轻疼痛。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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