马尔堡病毒
埃博拉病毒
丝虫科
病毒
离体
病毒学
发病机制
糖蛋白
病毒性出血热
病毒进入
生物
体内
炎症
免疫学
病毒病机
VP40型
传染性
血管通透性
毒力
肿瘤坏死因子α
内皮干细胞
医学
病毒释放
登革热病毒
细胞
效应器
内皮
病毒复制
病毒包膜
埃博拉出血热
作者
Ting Yao,Hang Liu,Yanfeng Yao,Wei Deng,Jiawen Sun,Zhenyu Kang,Ashaq Ali,Chao Shan,Zhiming Yuan,Fei Deng,Hualin Wang,Yun‐Jia Ning
标识
DOI:10.1002/advs.202511575
摘要
Marburg virus (MARV) causes Marburg virus disease (MVD), a severe hemorrhagic fever associated with high morbidity and mortality. No specific antiviral therapies are currently approved for MVD, and viral pathogenesis, particularly the viral pathogenic factor(s) involved, remains poorly defined. Here, we demonstrated that MARV glycoprotein (GP) can induce rounding and detachment of adherent cells, likely by shielding and downregulating cell surface molecules, mainly via its mucin-like domain (MLD), disrupting monolayer barrier function. In an ex vivo rat vascular model, GP expression caused significant endothelial cell damage and increased vascular permeability. In vivo, MARV GP increases vascular permeability and exacerbates inflammation and tissue injury in mouse muscle and liver transduction models, validating its pathogenic activity. Deletion of the MLD largely abolished these pathogenic effects, indicating its significant role in MARV GP pathogenicity. In addition, using the ex vivo vascular model, we demonstrated the infectivity and pathogenicity of the authentic Ebola virus in vessels and validated the utility of this model as a tool for intervention research against filovirus infection and GP pathogenicity. This study uncovered the remarkable role of MARV GP as a hemorrhage-related pathogenic factor through multimodal analyses, which may help advance our understanding of viral pathogenesis and lay a foundation for future therapeutic strategies.
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