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星形胶质细胞介导偏头痛相关的颅内脑膜机械性超敏反应。

Astrocytes mediate migraine-related intracranial meningeal mechanical hypersensitivity.

机构信息

Departments of Anesthesia, Critical Care and Pain Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, United States.

出版信息

Pain. 2021 Sep 1;162(9):2386-2396. doi: 10.1097/j.pain.0000000000002229.

Abstract

The genesis of the headache phase in migraine with aura is thought to be mediated by cortical spreading depression (CSD) and the subsequent activation and sensitization of primary afferent neurons that innervate the intracranial meninges and their related large vessels. Yet, the exact mechanisms underlying this peripheral meningeal nociceptive response remain poorly understood. We investigated the relative contribution of cortical astrocytes to CSD-evoked meningeal nociception using extracellular single-unit recording of meningeal afferent activity and 2-photon imaging of cortical astrocyte calcium activity, in combination with 2 pharmacological approaches to inhibit astrocytic function. We found that fluoroacetate and l-α-aminoadipate, which inhibit astrocytes through distinct mechanisms, suppressed CSD-evoked afferent mechanical sensitization, but did not affect afferent activation. Pharmacological inhibition of astrocytic function, which ameliorated meningeal afferents' sensitization, reduced basal astrocyte calcium activity but had a minimal effect on the astrocytic calcium wave during CSD. We propose that calcium-independent signaling in cortical astrocytes plays an important role in driving the sensitization of meningeal afferents and the ensuing intracranial mechanical hypersensitivity in migraine with aura.

摘要

偏头痛先兆期头痛的发生机制被认为是由皮质扩散性抑制(CSD)介导的,随后颅内脑膜及其相关大血管支配的初级传入神经元被激活和敏化。然而,这种外周脑膜伤害感受反应的确切机制仍知之甚少。我们使用脑膜传入活动的细胞外单单位记录和皮质星形胶质细胞钙活性的 2 光子成像,结合 2 种抑制星形胶质细胞功能的药理学方法,研究了皮质星形胶质细胞对 CSD 诱发的脑膜伤害感受的相对贡献。我们发现,氟乙酸盐和 L-α-氨基己二酸通过不同的机制抑制星形胶质细胞,抑制 CSD 诱发的传入机械敏化,但不影响传入激活。星形胶质细胞功能的药理学抑制改善了脑膜传入的敏化,降低了基础星形胶质细胞钙活性,但对 CSD 期间的星形胶质细胞钙波影响很小。我们提出,皮质星形胶质细胞中的钙非依赖性信号转导在驱动偏头痛先兆期脑膜传入的敏化和随后的颅内机械性高敏反应中发挥重要作用。

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