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[EXPRESS] CD11b activated Src signal attenuates neuroinflammatory pain by orchestrating inflammatory and anti-inflammatory cytokines in microglia.


ABSTRACT: Neuroinflammation plays an important role in the induction and maintenance of chronic pain. Orchestra of pattern-recognition receptors (PRRs) induced pro-inflammatory and anti-inflammatory cytokines are critical for inflammation homeostasis. CD11b on macrophages could inhibit toll like receptor (TLR) activation induced inflammatory responses. However, the function of CD11b on microglia remains unknown. In the current study, we demonstrated that CD11b deficient microglia cells produced more inflammatory cytokines such as IL-6 and TNF-?, while less anti-inflammatory cytokines. Signal transduction assay confirmed that NF-?B activation was increased in CD11b deficient microglia cells, which was resulted from decreased activation of Src. Inhibition of Src by PP1 increased inflammation in wildtype microglia cells significantly, but not in CD11b deficient microglia cells. In vivo, CD11b deficient mice were more susceptible to CCI induced allodynia and hyperalgesia with significantly more inflammatory cytokines expression. All these results indicated that the regulatory function of CD11b-Src signal pathway on both inflammatory and anti-inflammatory cytokines in microglia cells, which is a potential target in neuropathic pain treatment.

SUBMITTER: Yang M 

PROVIDER: S-EPMC6311569 | biostudies-other | 2018 Oct

REPOSITORIES: biostudies-other

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CD11b-activated Src signal attenuates neuroinflammatory pain by orchestrating inflammatory and anti-inflammatory cytokines in microglia.

Yang Mei M   Xu Wenyun W   Wang Yiru Y   Jiang Xin X   Li Yingke Y   Yang Yajuan Y   Yuan Hongbin H  

Molecular pain 20180101


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