A. I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, 70211 Kuopio, Finland.
Laboratory of Neurobiology, Kazan Federal University, 420008 Kazan, Russia.
Int J Mol Sci. 2020 Jan 21;21(3):696. doi: 10.3390/ijms21030696.
Recently discovered mechanosensitive Piezo channels emerged as the main molecular detectors of mechanical forces. The functions of Piezo channels range from detection of touch and pain, to control of the plastic changes in different organs. Recent studies suggested the role of Piezo channels in migraine pain, which is supposed to originate from the trigeminovascular nociceptive system in meninges. Interestingly, migraine pain is associated with such phenomenon as mechanical hypersensitivity, suggesting enhanced mechanotransduction. In the current review, we present the data that propose the implication of Piezo channels in migraine pain, which has a distinctive pulsatile character. These data include: (i) distribution of Piezo channels in the key elements of the trigeminovascular nociceptive system; (ii) the prolonged functional activity of Piezo channels in meningeal afferents providing a mechanistical basis for mechanotransduction in nociceptive nerve terminals; (iii) potential activation of Piezo channels by shear stress and pulsating blood flow; and (iv) modulation of these channels by emerging chemical agonists and modulators, including pro-nociceptive compounds. Achievements in this quickly expanding field should open a new road for efficient control of Piezo-related diseases including migraine and chronic pain.
最近发现的机械敏感型 Piezo 通道成为机械力的主要分子探测器。Piezo 通道的功能范围从触觉和疼痛的检测,到不同器官的可塑性变化的控制。最近的研究表明 Piezo 通道在偏头痛疼痛中的作用,偏头痛疼痛被认为起源于脑膜中的三叉血管伤害性系统。有趣的是,偏头痛疼痛与机械超敏反应等现象有关,提示增强了机械转导。在当前的综述中,我们提出了 Piezo 通道参与偏头痛疼痛的证据,偏头痛疼痛具有独特的脉冲特征。这些数据包括:(i) Piezo 通道在三叉血管伤害性系统关键元素中的分布;(ii) 脑膜传入神经中 Piezo 通道的功能活性延长,为伤害性神经末梢的机械转导提供了机械基础;(iii) 切应力和脉动血流对 Piezo 通道的潜在激活;以及 (iv) 新兴的化学激动剂和调节剂对这些通道的调制,包括促伤害性化合物。在这个快速发展的领域的成就应该为包括偏头痛和慢性疼痛在内的 Piezo 相关疾病的有效控制开辟新的道路。