脑脊液
抗体
单克隆抗体
信号转导
免疫学
自身抗体
自身免疫性脑炎
生物
脑炎
谷氨酸受体
炎症
受体
前脑
转录组
NMDA受体
神经免疫学
细胞生物学
抗NMDA受体脑炎
分子模拟
自身免疫
神经科学
医学
发病机制
表位
生物途径
细胞因子
趋化因子
细胞信号
自身免疫性疾病
免疫球蛋白G
转导(生物物理学)
神经炎症
白细胞介素
作者
Zhenhong Xu,Hongye Yan,B Y Wang,Juan Wan,Huimin Wang,Ye Xia,Yong Liu,Xuejing Wang,Heng Wu,Jiamei Jiang,Lin Zeng,Bing Tang,Qingtuan Meng
标识
DOI:10.1038/s41380-025-03434-x
摘要
Anti-N-methyl-D-aspartate receptor (NMDAR) encephalitis (NMDARE) is a devastating autoimmune disease associated with the presence of autoantibodies targeting NMDAR1 in the cerebrospinal fluid (CSF) and serum of patients. Besides the critical roles of anti-NMDAR1 autoantibodies, studies have implicated other factors such as brain inflammation in NMDARE. To comprehensively uncover the molecular mechanisms underlying NMDARE, here we performed multi-omics analyses based on human forebrain organoids (hFOs). The transcriptomic and metabolomic analyses showed that hFOs exposed to either monoclonal anti-NMDAR1 IgG antibodies or purified patient CSF-derived IgG antibodies alone led to NMDAR hypofunction that caused a reduction of glutamate content and neuroactivities. Interestingly, hFOs exposed to either patient CSF or IgG-depleted patient CSF led to neuronal hyperexcitability rather than hypo neuroactivities. The following proteomic analysis and electrophysiological assays identified that the activated interleukin (IL)-17 signaling pathway in patient CSF accounted for the neuronal hyperexcitability. Neutralizing IL-17 alleviated the neuronal hyperexcitability in hFOs and seizure-like behaviors in mice exposed to CSF from NMDARE patients. Together, this study indicated that the anti-NMDAR1 antibodies and IL-17 signaling pathway shape NMDARE. Inactivating the IL-17 signaling pathway could be a potential therapeutic strategy for NMDARE treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI