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NADPH oxidase 2-derived reactive oxygen species in spinal cord microglia contribute to peripheral nerve injury-induced neuropathic pain

机译:脊髓小胶质细胞中NADPH氧化酶2衍生的活性氧导致周围神经损伤引起的神经性疼痛

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摘要

Increasing evidence supports the notion that spinal cord microglia activation plays a causal role in the development of neuropathic pain after peripheral nerve injury; yet the mechanisms for microglia activation remain elusive. Here, we provide evidence that NADPH oxidase 2 (Nox2)-derived ROS production plays a critical role in nerve injury-induced spinal cord microglia activation and subsequent pain hypersensitivity. Nox2 expression was induced in dorsal horn microglia immediately after L5 spinal nerve transection (SNT). Studies using Nox2-deficient mice show that Nox2 is required for SNT-induced ROS generation, microglia activation, and proinflammatory cytokine expression in the spinal cord. SNT-induced mechanical allodynia and thermal hyperalgesia were similarly attenuated in Nox2-deficient mice. In addition, reducing microglial ROS level via intrathecal sulforaphane administration attenuated mechanical allodynia and thermal hyperalgesia in SNT-injured mice. Sulforaphane also inhibited SNT-induced proinflammatory gene expression in microglia, and studies using primary microglia indicate that ROS generation is required for proinflammatory gene expression in microglia. These studies delineate a pathway involving nerve damage leading to microglial Nox2-generated ROS, resulting in the expression of proinflammatory cytokines that are involved in the initiation of neuropathic pain.
机译:越来越多的证据支持以下观点:脊髓小胶质细胞活化在周围神经损伤后神经性疼痛的发展中起着因果作用。然而,小胶质细胞激活的机制仍然难以捉摸。在这里,我们提供的证据表明,NADPH氧化酶2(Nox2)衍生的ROS产生在神经损伤诱导的脊髓小胶质细胞活化和随后的疼痛超敏反应中起关键作用。 L5脊髓神经横断(SNT)后立即在背角小胶质细胞中诱导Nox2表达。使用Nox2缺陷型小鼠的研究表明,Nox2是SNT诱导的ROS生成,小胶质细胞活化和脊髓中促炎性细胞因子表达所必需的。 SNT诱导的机械性异常性疼痛和热痛觉过敏在Nox2缺陷小鼠中同样减弱。此外,通过鞘内注射萝卜硫烷降低小胶质ROS水平可减轻SNT损伤小鼠的机械异常性疼痛和热痛觉过敏。萝卜硫烷还抑制小胶质细胞中SNT诱导的促炎基因表达,并且使用原发性小胶质细胞的研究表明,在小胶质细胞中促炎基因表达需要产生ROS。这些研究勾画了一条涉及神经损伤的途径,该途径导致了由小胶质Nox2产生的ROS,导致促炎性细胞因子的表达与神经性疼痛的发生有关。

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