Prolonged suppression of HBV in mice by a novel antibody that targets a unique epitope on hepatitis B surface antigen

表位 病毒学 乙型肝炎表面抗原 单克隆抗体 抗体 抗原 乙型肝炎病毒 免疫学 免疫系统 生物 乙型肝炎 构象表位 病毒
作者
Tianying Zhang,Quan Yuan,Jinghua Zhao,Yali Zhang,Lunzhi Yuan,Ying Lan,Yu‐Chieh Lo,Cheng‐Pu Sun,Chi-Hwa Wu,Junfang Zhang,Ying Zhang,Jiali Cao,Xueran Guo,Xuan Liu,Xiaobing Mo,Wenxin Luo,Tong Cheng,Yixin Chen,Mi‐Hua Tao,Jennifer Shih,Qinjian Zhao,Jun Zhang,Pei‐Jer Chen,Yusheng Yuan,Ningshao Xia
出处
期刊:Gut [BMJ]
卷期号:65 (4): 658-671 被引量:99
标识
DOI:10.1136/gutjnl-2014-308964
摘要

Objective

This study aimed to investigate the therapeutic potential of monoclonal antibody (mAb) against HBV as a novel treatment approach to chronic hepatitis B (CHB) in mouse models.

Methods

Therapeutic effects of mAbs against various epitopes on viral surface protein were evaluated in mice mimicking persistent HBV infection. The immunological mechanisms of mAb-mediated viral clearance were systematically investigated.

Results

Among 11 tested mAbs, a novel mAb E6F6 exhibited the most striking therapeutic effects in several HBV-persistent mice. Single-dose administration of E6F6 could profoundly suppress the levels of hepatitis B surface antigen (HBsAg) and HBV DNA for several weeks in HBV-transgenic mice. E6F6 regimen efficiently prevented initial HBV infection, and reduced viral dissemination from infected hepatocytes in human-liver-chimeric mice. E6F6-based immunotherapy facilitated the restoration of anti-HBV T-cell response in hydrodynamic injection (HDI)-based HBV carrier mice. Immunological analyses suggested that the Fcγ receptor-dependent phagocytosis plays a predominant role in E6F6-mediated viral suppression. Molecular analyses suggested that E6F6 recognises an evolutionarily conserved epitope (GPCK(R)TCT) and only forms a smaller antibody–viral particle immune complex with limited interparticle crosslinking when it binds to viral particles. This unique binding characteristic of E6F6 to HBV was possibly associated with its effective in vivo opsonophagocytosis for viral clearance.

Conclusions

These results provided new insight into understanding the therapeutic role and mechanism of antibody against persistent viral infection. The E6F6-like mAbs may provide a novel immunotherapeutic agent against human chronic HBV infection.
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