Differential effects of the Piezo1 agonist Yoda1 in the trigeminovascular system: An electrophysiological and intravital microscopy study in rats

压电1 三叉神经节 神经科学 医学 电生理学 皮质扩散性抑郁症 活体显微镜检查 偏头痛 伤害感受器 机械转化 兴奋剂 机械敏感通道 伤害 离子通道 生物 感觉系统 麻醉 受体 内科学 微循环
作者
Antonina Dolgorukova,Julia Isaeva,E. Verbitskaya,O. A. Lyubashina,Rashid Giniatullin,Alexey Y. Sokolov
出处
期刊:Experimental Neurology [Elsevier BV]
卷期号:339: 113634-113634 被引量:18
标识
DOI:10.1016/j.expneurol.2021.113634
摘要

Abstract Migraine is associated with the activation and sensitisation of the trigeminovascular system and is often accompanied by mechanical hyperalgesia and allodynia. The mechanisms of mechanotransduction during a migraine attack are yet unknown. We have proposed that the ion channel Piezo1 may be involved, since it is expressed in endothelial cells as well as in trigeminal ganglion neurons, and thus, may contribute to the activation of both the vascular and neuronal component of the trigeminovascular system. We took advantage of extracellular recordings from the trigeminocervical complex – a key relay centre in the migraine pain pathway, to directly assess the impact of the differently applied Piezo1 agonist Yoda1 on the sensory processing at the spinal level. At a low dose, Yoda1 slightly facilitated the ongoing firing of central trigeminovascular neurons, however, at a high dose, this substance contributed to the suppression of their activity. Using intravital microscopy, we have revealed that Yoda1 at high dose can also induce the dilation of meningeal arteries innervated by trigeminal afferents. Collectively, here we have identified both neuronal and vascular modulation via selective activation of mechanosensitive Piezo1 channels, which provide new evidence in favour of the Piezo1 role in migraine pathogenesis. We propose several mechanisms that may underlie the revealed effects of Yoda1.
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