Dravet综合征
癫痫
小胶质细胞
免疫系统
神经科学
医学
免疫学
转录组
生物
信号转导
神经免疫学
干扰素
运动前神经元活动
干扰素基因刺激剂
癫痫综合征
疾病
炎症
干扰素γ
癌症研究
作者
Yige Huang,Li Fan,Man Ying Wong,Zhuofan Lei,Balaji Krishnamachary,Daphne Zhu,Mika P. Cadiz,Nagiri Ravi Kumar,Pearly Ye,Kendra Norman,Maitreyee Bhagwat,Y. H. D. Lee,Hui Li,Jingjie Zhu,Sadaf Amin,Kelli Lauderdale,Hao Chen,Wenjie Luo,Shiaoching Gong,Benjamin Liechty
标识
DOI:10.1038/s41593-026-02384-z
摘要
Epilepsy is a prevalent neurological disease, with one-third of individuals becoming nonresponsive to antiepileptic drugs and developing drug-refractory epilepsy (DRE). Here we identify activation of cyclic GMP–AMP synthase (cGAS), a double-stranded DNA sensor that induces type I interferon (IFN) signaling, in human DRE brain tissue. Microglia from individuals with DRE exhibit a robust type I IFN signature and the activation of upstream cGAS–STING signaling. Further, in mouse models of Dravet syndrome, a genetic form of DRE, we similarly detect activation of the cGAS pathway. We show that microglial cGAS can be activated by DNA released from hyperexcitable neurons. Genetic reduction and pharmacological inhibition of cGAS attenuates seizure phenotypes, reduces glial inflammatory signatures and normalizes neuronal transcriptomic changes in mice with Dravet syndrome. Together, these findings identify cGAS-mediated neuroimmune signaling as a contributor to seizure pathology in Dravet syndrome and highlight this pathway as a potential therapeutic target. Huang et al. found that stressed neurons release DNA that activates the immune sensor cGAS, driving inflammatory responses that worsen seizures and mortality in Dravet syndrome. Blocking cGAS interrupts this pathogenic immune cascade, reducing inflammation, seizures and death risk.
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