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转录因子 MafB 有助于激活脊髓小胶质细胞,从而导致神经性疼痛的发展。

Transcription factor MafB contributes to the activation of spinal microglia underlying neuropathic pain development.

机构信息

Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Fukuoka, Japan.

Department of Molecular and System Pharmacology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Fukuoka, Japan.

出版信息

Glia. 2019 Apr;67(4):729-740. doi: 10.1002/glia.23570. Epub 2018 Nov 28.

DOI:10.1002/glia.23570
PMID:30485546
Abstract

Microglia, which are pathological effectors and amplifiers in the central nervous system, undergo various forms of activation. A well-studied microglial-induced pathological paradigm, spinal microglial activation following peripheral nerve injury (PNI), is a key event for the development of neuropathic pain but the transcription factors contributing to microglial activation are less understood. Herein, we demonstrate that MafB, a dominant transcriptional regulator of mature microglia, is involved in the pathology of a mouse model of neuropathic pain. PNI caused a rapid and marked increase of MafB expression selectively in spinal microglia but not in neurons. We also found that the microRNA mir-152 in the spinal cord which targets MafB expression decreased after PNI, and intrathecal administration of mir-152 mimic suppressed the development of neuropathic pain. Reduced MafB expression using heterozygous Mafb deficient mice and by intrathecal administration of siRNA alleviated the development of PNI-induced mechanical hypersensitivity. Furthermore, we found that intrathecal transfer of Mafb deficient microglia did not induce mechanical hypersensitivity and that conditional Mafb knockout mice did not develop neuropathic pain after PNI. We propose that MafB is a key mediator of the PNI-induced phenotypic alteration of spinal microglia and neuropathic pain development.

摘要

小胶质细胞是中枢神经系统中的病理性效应物和放大器,经历各种形式的激活。小胶质细胞激活是外周神经损伤(PNI)后发生神经性疼痛的关键事件,但对导致小胶质细胞激活的转录因子知之甚少。本文作者证明,成熟小胶质细胞的主要转录调控因子 MafB 参与了神经性疼痛小鼠模型的病理过程。PNI 导致 MafB 表达在脊髓小胶质细胞中快速且显著增加,但在神经元中没有增加。作者还发现,脊髓中的 microRNA mir-152 靶向 MafB 表达,在 PNI 后减少,鞘内给予 mir-152 模拟物可抑制神经性疼痛的发展。使用杂合子 Mafb 缺陷小鼠和鞘内给予 siRNA 减少 MafB 表达可减轻 PNI 诱导的机械性超敏反应。此外,作者发现鞘内转移 Mafb 缺陷的小胶质细胞不会引起机械性超敏反应,并且条件性 Mafb 敲除小鼠在 PNI 后不会发生神经性疼痛。作者提出,MafB 是 PNI 诱导的脊髓小胶质细胞表型改变和神经性疼痛发展的关键介质。

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