小胶质细胞
神经保护
CX3CR1型
神经炎症
炎症
炎症体
星形胶质增生
脊髓损伤
条件基因敲除
神经科学
医学
脊髓
药理学
趋化因子
细胞生物学
免疫学
化学
中枢神经系统
生物
表型
趋化因子受体
生物化学
基因
作者
Wei Song,Runhan Fu,Zhongze Yuan,Yanchun Liu,Yanbing Kao,Renjie Zhang,Guangjin Gu,Hanming Zhu,Haoyun Liu,Zhihao Zhang,Xiaohong Kong,Shiqing Feng
标识
DOI:10.1016/j.bbi.2025.07.015
摘要
• RelA binds to Nlrp3 promoter and upregulates its expression in activated microglia. • Nlrp3 cKO in microglia reduces inflammatory factors (e.g., CCL3) expression. • Nlrp3 cKO in microglia improves functional recovery after spinal cord injury. • PDTC treatment mimics the protective effects of microglia Nlrp3 cKO. • CCL3 reverses the benefits of Nlrp3 cKO and PDTC treatment in SCI. Spinal cord injury (SCI) leads to loss of motor and sensory function below the lesion site, presenting a lifelong burden of disability. During the acute phase of SCI, microglia develop an inflammatory phenotype, characterized by the NLR family pyrin domain containing 3 (NLRP3) inflammasome signaling activation, exacerbating tissue damage and impeding trauma recovery. However, the molecular mechanisms underlying this process remain unclear. Here we show that conditional knockout of Nlrp3 in microglia using Nlrp3 fl/fl ; Cx3cr1 -CreERT; Rosa26 -tdTomato mice ( Nlrp 3ΔMG) confers neuroprotection by preserving neuron survival and mitigating tissue damage during the acute phase of SCI. Mechanistically, Nlrp3 ablation in microglia attenuates the activation of pyroptosis-related signaling pathways in microglia and suppresses the production of inflammatory cytokines (IL-1β, IL-18, CCL3, and CCL5). Furthermore, we identify RelA as a transcriptional regulator of Nlrp3 , binding to its promoter and upregulating its expression in activated microglia. Inhibition of RelA using pyrrolidine dithiocarbamate ammonium (PDTC), a blood–brain barrier permeable drug, effectively downregulates NLRP3 expression and suppresses spinal cord inflammation, thereby contributing to neuroprotection. Our findings demonstrate the crucial role of RelA/NLRP3/CCL3 axis in modulating microglial inflammation and highlight its potential as a therapeutic target to promote recovery post SCI.
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