Semaphorin3C identified as mediator of neuroinflammation and microglia polarization after spinal cord injury

Semaphorin3C 被确定为脊髓损伤后神经炎症和小胶质细胞极化的介质

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作者:Junjie Shen, Liangzhi Gong, Yi Sun, Junqing Lin, Wencheng Hu, Jiabao Wei, Xin Miao, Tao Gao, Jinlong Suo, Jia Xu, Yimin Chai, Bingbo Bao, Yun Qian, Xianyou Zheng

Abstract

Excessive neuroinflammation after spinal cord injury (SCI) is a major hurdle during nerve repair. Although proinflammatory macrophage/microglia-mediated neuroinflammation plays important roles, the underlying mechanism that triggers neuroinflammation and aggravating factors remain unclear. The present study identified a proinflammatory role of semaphorin3C (SEMA3C) in immunoregulation after SCI. SEMA3C expression level peaked 7 days post-injury (dpi) and decreased by 14 dpi. In vivo and in vitro studies revealed that macrophages/microglia expressed SEMA3C in the local microenvironment, which induced neuroinflammation and conversion of proinflammatory macrophage/microglia. Mechanistic experiments revealed that RAGE/NF-κB was downstream target of SEMA3C. Inhibiting SEMA3C-mediated RAGE signaling considerably suppressed proinflammatory cytokine production, reversed polarization of macrophages/microglia shortly after SCI. In addition, inhibition of SEMA3C-mediated RAGE signaling suggested that the SEMA3C/RAGE axis is a feasible target to preserve axons from neuroinflammation. Taken together, our study provides the first experimental evidence of an immunoregulatory role for SEMA3C in SCI via an autocrine mechanism.

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