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Hypoxia facilitates neurogenic dural plasma protein extravasation in mice: a novel animal model for migraine pathophysiology

机译:低氧促进小鼠神经源性硬脑膜血浆蛋白外渗:偏头痛病理生理学的新型动物模型

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摘要

Migraine animal models generally mimic the onset of attacks and acute treatment processes. A guinea pig model used the application of meta-chlorophenylpiperazine (mCPP) to trigger immediate dural plasma protein extravasation (PPE) mediated by 5-HT2B receptors. This model has predictive value for antimigraine drugs but cannot explain the delayed onset of efficacy of 5-HT2B receptor antagonists when clinically used for migraine prophylaxis. We found that mCPP failed to induce dural PPE in mice. Considering the role 5-HT2B receptors play in hypoxia-induced pulmonary vessel muscularization, we were encouraged to keep mice under hypoxic conditions and tested whether this treatment will render them susceptible to mCPP-induced dural PPE. Following four-week of hypoxia, PPE, associated with increased transendothelial transport, was induced by mCPP. The effect was blocked by sumatriptan. Chronic application of 5-HT2B receptor or nitric oxide synthase blockers during hypoxia prevented the development of susceptibility. Here we present a migraine model that distinguishes between a migraine-like state (hypoxic mice) and normal, normoxic mice and mimics processes that are related to chronic activation of 5-HT2B receptors under hypoxia. It seems striking, that chronic endogenous activation of 5-HT2B receptors is crucial for the sensitization since 5-HT2B receptor antagonists have strong, albeit delayed migraine prophylactic efficacy.
机译:偏头痛动物模型通常模仿发作和急性治疗过程的发作。豚鼠模型使用间氯苯基哌嗪(mCPP)触发由5-HT2B受体介导的立即硬脑膜血浆蛋白外渗(PPE)。该模型对偏头痛药物具有预测价值,但不能解释5-HT2B受体拮抗剂在临床上用于预防偏头痛时药效的延迟发作。我们发现mCPP未能在小鼠中诱导硬脑膜PPE。考虑到5-HT2B受体在低氧诱导的肺血管肌肉化中所起的作用,我们被鼓励将小鼠保持在低氧条件下,并测试这种治疗是否会使它们易受mCPP诱导的硬脑膜PPE的影响。缺氧4周后,mCPP诱导了PPE,与跨内皮运输增加有关。该作用被舒马曲坦阻断。缺氧期间长期应用5-HT2B受体或一氧化氮合酶阻滞剂可防止易感性的发展。在这里,我们提出了一种偏头痛模型,该模型可以区分偏头痛样状态(低氧小鼠)和正常,正常氧小鼠,并模拟与缺氧条件下5-HT2B受体的慢性活化有关的过程。令人惊讶的是,5-HT2B受体的慢性内源性激活对于致敏至关重要,因为5-HT2B受体拮抗剂虽然延迟了偏头痛的预防功效,但仍具有很强的抵抗力。

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