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偏头痛样状态下大鼠脑膜中的核苷酸稳态与嘌呤能伤害性信号传导

Nucleotide homeostasis and purinergic nociceptive signaling in rat meninges in migraine-like conditions.

作者信息

Yegutkin Gennady G, Guerrero-Toro Cindy, Kilinc Erkan, Koroleva Kseniya, Ishchenko Yevheniia, Abushik Polina, Giniatullina Raisa, Fayuk Dmitriy, Giniatullin Rashid

机构信息

Medicity Research Laboratory, University of Turku, Turku, Finland.

Department of Neurobiology, A.I.Virtanen Institute for Molecular Sciences, University of Eastern Finland, Neulaniementie 2, P.O. Box 1627, 70211, Kuopio, Finland.

出版信息

Purinergic Signal. 2016 Sep;12(3):561-74. doi: 10.1007/s11302-016-9521-8. Epub 2016 Jul 1.

Abstract

Extracellular ATP is suspected to contribute to migraine pain but regulatory mechanisms controlling pro-nociceptive purinergic mechanisms in the meninges remain unknown. We studied the peculiarities of metabolic and signaling pathways of ATP and its downstream metabolites in rat meninges and in cultured trigeminal cells exposed to the migraine mediator calcitonin gene-related peptide (CGRP). Under resting conditions, meningeal ATP and ADP remained at low nanomolar levels, whereas extracellular AMP and adenosine concentrations were one-two orders higher. CGRP increased ATP and ADP levels in meninges and trigeminal cultures and reduced adenosine concentration in trigeminal cells. Degradation rates for exogenous nucleotides remained similar in control and CGRP-treated meninges, indicating that CGRP triggers nucleotide release without affecting nucleotide-inactivating pathways. Lead nitrate-based enzyme histochemistry of whole mount meninges revealed the presence of high ATPase, ADPase, and AMPase activities, primarily localized in the medial meningeal artery. ATP and ADP induced large intracellular Ca(2+) transients both in neurons and in glial cells whereas AMP and adenosine were ineffective. In trigeminal glia, ATP partially operated via P2X7 receptors. ATP, but not other nucleotides, activated nociceptive spikes in meningeal trigeminal nerve fibers providing a rationale for high degradation rate of pro-nociceptive ATP. Pro-nociceptive effect of ATP in meningeal nerves was reproduced by α,β-meATP operating via P2X3 receptors. Collectively, extracellular ATP, which level is controlled by CGRP, can persistently activate trigeminal nerves in meninges which considered as the origin site of migraine headache. These data are consistent with the purinergic hypothesis of migraine pain and suggest new targets against trigeminal pain.

摘要

细胞外ATP被怀疑与偏头痛疼痛有关,但控制脑膜中促伤害性嘌呤能机制的调节机制仍不清楚。我们研究了大鼠脑膜以及暴露于偏头痛介质降钙素基因相关肽(CGRP)的培养三叉神经细胞中ATP及其下游代谢产物的代谢和信号通路的特点。在静息条件下,脑膜中的ATP和ADP保持在低纳摩尔水平,而细胞外AMP和腺苷浓度则高出一到两个数量级。CGRP增加了脑膜和三叉神经培养物中的ATP和ADP水平,并降低了三叉神经细胞中的腺苷浓度。在对照和CGRP处理的脑膜中,外源性核苷酸的降解率保持相似,表明CGRP触发核苷酸释放而不影响核苷酸失活途径。基于硝酸铅的全层脑膜酶组织化学显示存在高ATP酶、ADP酶和AMP酶活性,主要定位于脑膜中动脉。ATP和ADP在神经元和神经胶质细胞中均诱导大量细胞内Ca(2+)瞬变,而AMP和腺苷则无效。在三叉神经胶质细胞中,ATP部分通过P2X7受体起作用。ATP而非其他核苷酸激活了脑膜三叉神经纤维中的伤害性尖峰,这为伤害性ATP的高降解率提供了理论依据。通过经由P2X3受体起作用的α,β-甲硫腺苷三磷酸(α,β-meATP)再现了ATP在脑膜神经中的促伤害性作用。总的来说,其水平受CGRP控制的细胞外ATP可持续激活被认为是偏头痛头痛起源部位的脑膜中的三叉神经。这些数据与偏头痛疼痛的嘌呤能假说一致,并提示了针对三叉神经疼痛的新靶点。

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