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首页> 外文期刊>Brain, Behavior, and Immunity >Interaction between astrocytic colony stimulating factor and its receptor on microglia mediates central sensitization and behavioral hypersensitivity in chronic post ischemic pain model
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Interaction between astrocytic colony stimulating factor and its receptor on microglia mediates central sensitization and behavioral hypersensitivity in chronic post ischemic pain model

机译:星形胶质菌落刺激因子及其对微胶质瘤的受体之间的相互作用在慢性缺血性疼痛模型中介导中枢敏感和行为超敏反应

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摘要

Highlights ? Hindpaw ischemia induced spinal microglial activation and proliferation. ? CSF1/CSF1R signaling mediated microglial activation and proliferation. ? Suppression of CSF1/CSF1R signaling attenuated central sensitization and pain. Abstract Accumulation of microglia occurs in the dorsal horn in the rodent model of chronic post ischemic pain (CPIP), while the mechanism how microglia affects the development of persistent pain largely remains unknown. Here, using a rodent model of CPIP induced by ischemia–reperfusion (IR) injury in the hindpaw, we observed that microglial accumulation occurred in the ipsilateral dorsal horn after ischemia 3h, and in ipsilateral and contralateral dorsal horn in the rats with ischemia 6h. The accumulated microglia released BDNF, increased neuronal excitability in dorsal horn, and produced pain behaviors in the modeled rodents. We also found significantly increased signaling mediated by astrocytic colony-stimulating factor-1 (CSF1) and microglial CSF1 receptor (CSF1R) in dorsal horn in the ischemia 6h modeled rats. While exogenous M-CSF induced microglial activation and proliferation, BDNF production, neuronal hyperactivity in dorsal horn and behavioral hypersensitivity in the na?ve rats, inhibition of astrocytic CSF1/microglial CSF1R signaling by fluorocitric or PLX3397 significantly suppressed microglial activation and proliferation, BDNF upregulation, and neuronal activity in dorsal horn, as well as the mechanical allodynia and thermal hyperalgesia, in the rats with ischemia 6h. Collectively, these results demonstrated that glial CSF1/CSF1R pathway mediated the microglial activation and proliferation, which facilitated the nociceptive output and contributed to the chronic pain induced by IR injury.
机译:强调 ?后爪缺血诱导脊髓微胶质激活和增殖。还CSF1 / CSF1R信号传导介导的小胶质激活和增殖。还抑制CSF1 / CSF1R信号传导衰减中央致敏和疼痛。摘要在慢性缺血性疼痛(CPIP)啮齿动物模型中的背角发生微胶质胶质胶质胶质的积累,而Microglia如何影响持续疼痛的发展的机制仍然未知。在这里,使用由后爪中的缺血再灌注(IR)损伤诱导的CPIP诱导的CPIP模型,观察到在缺血3h后的同侧背角和缺血6小时大鼠中的同侧和对侧喇叭中发生显微胶质累积。累积的微胶质细胞释放了BDNF,增加了背角的神经元兴奋性,并在模拟的啮齿动物中产生了疼痛行为。我们还发现在缺血6H模型大鼠中的背角中的星形菌落刺激因子-1(CSF1)和微胶质CSF1受体(CSF1R)中介导的信号传导显着增加。虽然外源性M-CSF诱导的小胶质激活和增殖,BDNF生产,背角中的神经元多动性和Naαve大鼠的行为过敏,荧光杂种或PLX3397的星形胶质细胞CSF1 /微胶质CSF1R信号传导显着抑制了显微胶质激活和增殖,BDNF上调和缺血6h大鼠中的背角和机械异常疼痛和热痛觉中的神经元活性。总的来说,这些结果表明,胶质CSF1 / CSF1R途径介导的微胶质激活和增殖,这促进了伤害性输出并导致红外损伤诱导的慢性疼痛。

著录项

  • 来源
    《Brain, Behavior, and Immunity》 |2018年第2018期|共13页
  • 作者单位

    Department of Anesthesiology West China Second Hospital Sichuan University;

    Division of Pulmonary Diseases State Key Laboratory of Biotherapy of China and Department of;

    Division of Pulmonary Diseases State Key Laboratory of Biotherapy of China and Department of;

    Department of Anesthesiology West China Hospital Sichuan University;

    Department of Pathology Core Facility of West China Hospital;

    Department of Anesthesiology West China Second Hospital Sichuan University;

    Department of Anesthesiology West China Second Hospital Sichuan University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    Chronic post ischemic pain; Colony stimulating factor; Astrocyte; Microglia;

    机译:慢性后缺血性疼痛;殖民刺激因子;星形胶质细胞;小胶质细胞;

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