BDNF TrkB信号通路介导的小胶质细胞激活诱导神经元KCC2下调,导致备用神经损伤后的动态异常性疼痛。

IF 2.8 3区 医学 Q2 NEUROSCIENCES
Zihan Hu, Xinren Yu, Pei Chen, Keyu Jin, Jing Zhou, Guoxiang Wang, Jiangning Yu, Tong Wu, Yulong Wang, Fuqing Lin, Tingting Zhang, Yun Wang, Xuan Zhao
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引用次数: 0

摘要

机械性异常性疼痛可通过与皮肤的点状压力接触(点状机械性异常疼痛)和通过轻轻触摸皮肤引起的动态接触刺激(动态机械性异常痛)来诱发。动态异常性疼痛对吗啡治疗不敏感,通过特定的神经元通路通过脊髓背角传播,这与点状异常性疼痛不同,导致临床治疗困难。K+-Cl-协同转运蛋白-2(KCC2)是抑制效率的主要决定因素之一,脊髓中的抑制系统在神经性疼痛的调节中起着重要作用。本研究的目的是确定神经元KCC2是否参与动态异常性疼痛的诱导,并确定参与这一过程的潜在脊髓机制。在备用神经损伤(SNI)小鼠模型中,使用von Frey细丝或油漆刷评估动态和点状异常性疼痛。我们的研究发现,SNI小鼠脊髓背角下调的神经元膜KCC2(mKCC2)与SNI诱导的动态异常性疼痛密切相关,因为预防KCC2下调可显著抑制动态异常性痛的诱导。SNI后脊髓背角小胶质细胞的过度激活至少是SNI诱导的mKCC2减少和动态异常性疼痛的触发因素之一,因为这些作用被小胶质细胞激活的抑制所阻断。最后,由活化的小胶质细胞介导的BDNF-TrkB通路通过神经元KCC2下调影响SNI诱导的动态异常性疼痛。总的来说,我们的研究结果表明,通过BDNF TrkB途径激活小胶质细胞影响神经元KCC2的下调,有助于SNI小鼠模型中的动态异常性疼痛诱导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

BDNF-TrkB signaling pathway-mediated microglial activation induces neuronal KCC2 downregulation contributing to dynamic allodynia following spared nerve injury.

BDNF-TrkB signaling pathway-mediated microglial activation induces neuronal KCC2 downregulation contributing to dynamic allodynia following spared nerve injury.

BDNF-TrkB signaling pathway-mediated microglial activation induces neuronal KCC2 downregulation contributing to dynamic allodynia following spared nerve injury.

BDNF-TrkB signaling pathway-mediated microglial activation induces neuronal KCC2 downregulation contributing to dynamic allodynia following spared nerve injury.

Mechanical allodynia can be evoked by punctate pressure contact with the skin (punctate mechanical allodynia) and dynamic contact stimulation induced by gentle touching of the skin (dynamic mechanical allodynia). Dynamic allodynia is insensitive to morphine treatment and is transmitted through the spinal dorsal horn by a specific neuronal pathway, which is different from that for punctate allodynia, leading to difficulties in clinical treatment. K+-Cl- cotransporter-2 (KCC2) is one of the major determinants of inhibitory efficiency, and the inhibitory system in the spinal cord is important in the regulation of neuropathic pain. The aim of the current study was to determine whether neuronal KCC2 is involved in the induction of dynamic allodynia and to identify underlying spinal mechanisms involved in this process. Dynamic and punctate allodynia were assessed using either von Frey filaments or a paint brush in a spared nerve injury (SNI) mouse model. Our study discovered that the downregulated neuronal membrane KCC2 (mKCC2) in the spinal dorsal horn of SNI mice is closely associated with SNI-induced dynamic allodynia, as the prevention of KCC2 downregulation significantly suppressed the induction of dynamic allodynia. The over activation of microglia in the spinal dorsal horn after SNI was at least one of the triggers in SNI-induced mKCC2 reduction and dynamic allodynia, as these effects were blocked by the inhibition of microglial activation. Finally, the BDNF-TrkB pathway mediated by activated microglial affected SNI-induced dynamic allodynia through neuronal KCC2 downregulation. Overall, our findings revealed that activation of microglia through the BDNF-TrkB pathway affected neuronal KCC2 downregulation, contributing to dynamic allodynia induction in an SNI mouse model.

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来源期刊
Molecular Pain
Molecular Pain 医学-神经科学
CiteScore
5.60
自引率
3.00%
发文量
56
审稿时长
6-12 weeks
期刊介绍: Molecular Pain is a peer-reviewed, open access journal that considers manuscripts in pain research at the cellular, subcellular and molecular levels. Molecular Pain provides a forum for molecular pain scientists to communicate their research findings in a targeted manner to others in this important and growing field.
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