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Viral protease-initiated lytic cell death as a universal antiviral mRNA therapy

Cell. 2026-07; 
Lin Li, Xiu-Li Yan, Hao-Yang Wang, Hang-Yu Zhou, Yu-Yan Li, Wenlong Ma, Jian Li, Rong-Rong Zhang, Lu Lv, Xing-Yao Huang, Hao Du, Tian-Shu Cao, Qing Ye, Hui Zhao, Yan Fu, Byung-Ho Kang, Qiang Ding, Aiping Wu, Yi-Jiao Huang, Cheng-Feng Qin
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Gene Synthesis Linearized plasmid templates encoding HAV 3C GenScript N/A; custom synthesized Linearized plasmid templates encoding Luciferase GenScript N/A; custom synthesized Get A Quote

摘要

While gasdermin (GSDM)-mediated pyroptosis is a potent immune effector, its antiviral potential remains largely untapped. Here, we introduce viral protease-initiated lytic cell death (VID), a universal mRNA therapeutic platform inspired by the modular architecture of GSDM and the clinical success of mRNA vaccines. By engineering gasdermin-D (GSDMD) to harbor viral protease-specific cleavage motifs, we generated VID activators (VIDAs) that selectively trigger lytic cell death in virus-infected cells. Using hepatitis A virus (HAV) as a model, lipid nanoparticle (LNP)-encapsulated VIDA mRNA abolished viral replication and shedding in vivo and mitigated liver injury through a coordinated "kill-and-alert" mechanism ... More

关键词

GSDMD; VIDA; antiviral immunity; artificial intelligence; hepatitis A virus; kill-and-alert; lytic cell death; mRNA-LNP; pyroptosis; viral protease.