Daoyi Lin, Yuan Huang, Shuyan Wu, Zefu Li, Hanhao Dai, Fei Gao, Danfeng Wang, Maokai Xu, Ziqi An, Xinmu Li, Peng Ye, Yingjie Chen, Yongxin Huang, Jianhui Deng, Hongyi Wang, Zhe Li, Yue Shi, Xiaowen Liu, Weixia Li, Xiaobin Fang, Jing Zhao
Sepsis frequently induces sepsis-associated encephalopathy (SAE), which lacks targeted therapies and often results in persistent neurobehavioral deficits. Here, we developed a translational pipeline integrating target discovery, small-molecule screening, formulation engineering, targeted delivery, and in vivo mechanistic validation to establish a microglial neuroinflammation-centered SAE intervention. Integrative transcriptomic analysis of septic patient brain tissue (GSE135838), combined with weighted gene co-expression network analysis (WGCNA), identified Annexin A2 (ANXA2) as a microglia-associated candidate linked to SAE. In cecal ligation and puncture (CLP) mice, Anxa2 was markedly upregulated in the hippocampus and enriched in microglia. Mechanistically, small interfering RNA (siRNA)-mediated Anxa2 silencing in lipopolysaccharide (LPS)-stimulated BV2 and primary microglia inhibited nuclear factor kappa B (NF-κB) activation, reduced M1-like polarization and cytokine release, and alleviated neuronal apoptosis in co-culture. Screening of the Traditional Chinese Medicine Systems Pharmacology Database (TCMSP) combined with high-throughput surface plasmon resonance imaging (SPRi) identified evodiamine as a high-affinity ANXA2 binder, further supported by molecular dynamics simulations, drug-likeness assessment, and absorption, distribution, metabolism, excretion, and toxicity (ADMET) profiling. To improve efficacy, enhance blood-brain barrier (BBB) penetration, and reduce potential cardiotoxicity, we engineered an Angiopep-2/phosphatidylserine dual-modified evodiamine-loaded liposome (L-A-P@E). In SAE mice, L-A-P@E improved anxiety-like behavior and cognition, attenuated hippocampal neuroinflammation and neuronal apoptosis, and suppressed microglial ANXA2/NF-κB signaling without detectable systemic immunogenicity. Knockdown-rescue assays using a triple-mutant Anxa2 construct and AAV-mediated hippocampal Anxa2 overexpression confirmed that evodiamine's therapeutic effects depended on the ANXA2-binding pocket and ANXA2/NF-κB signaling. These findings identify microglial ANXA2/NF-κB as a druggable SAE target and support targeted nanodelivery for mechanism-based therapy.