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双价单域抗体通过M1R抗原表现出强大的猴痘病毒中和作用。

Bivalent single-domain antibodies show potent mpox virus neutralization through M1R antigen.

作者信息

Akazawa Daisuke, Shimojima Masayuki, Park Eun-Sil, Okutani Akiko, Virhuez-Mendoza Milagros, Inoue Yusuke, Hishiki Takayuki, Maeda Ken, Ebihara Hideki, Takahashi Yoshimasa, Watashi Koichi

机构信息

Department of Drug Development, National Institute of Infectious Diseases, Japan Institute for Health Security, Tokyo, Japan.

Department of Virology I, National Institute of Infectious Diseases, Japan Institute for Health Security, Tokyo, Japan.

出版信息

Commun Biol. 2025 Jul 18;8(1):1073. doi: 10.1038/s42003-025-08494-x.

Abstract

Despite the recent mpox outbreak raising global concerns, no fully validated antiviral treatment exists, highlighting the urgent need for effective therapeutics. Here, by taking advantage of the preparation technology for single-domain (VHH) antibodies, we generated VHHs targeting the six major mpox virus (MPXV) surface antigens. Although neutralization activity of these monoclonal VHH monomers was negligible, bivalent VHHs against MPXV-M1R (bi-M1A8 and bi-M1C2) improved the antigen binding affinity by up to over 400-fold compared with the monomer VHH and thus produced neutralizing activity against MPXV. Epitope analysis by SPR revealed that the two neutralizing bivalent VHHs recognized different epitopes within M1R antigen. Importantly, these bivalent VHHs were active to multiple MPXV clades and related cowpox virus. We also showed the effect of bi-M1A8 on reducing the MPXV DNA and infectious titer in an MPXV infection mouse model. These VHH modification approaches provide a new strategy for anti-MPXV drug development.

摘要

尽管最近猴痘疫情引发了全球关注,但目前尚无经过充分验证的抗病毒治疗方法,这凸显了对有效治疗药物的迫切需求。在此,我们利用单域(VHH)抗体的制备技术,生成了针对六种主要猴痘病毒(MPXV)表面抗原的VHH。尽管这些单克隆VHH单体的中和活性可忽略不计,但针对MPXV-M1R的二价VHH(bi-M1A8和bi-M1C2)与单体VHH相比,抗原结合亲和力提高了400多倍,从而产生了针对MPXV的中和活性。通过表面等离子体共振(SPR)进行的表位分析表明,这两种具有中和作用的二价VHH识别M1R抗原内不同的表位。重要的是,这些二价VHH对多个MPXV分支和相关的牛痘病毒具有活性。我们还在MPXV感染小鼠模型中展示了bi-M1A8对降低MPXV DNA和感染滴度的作用。这些VHH修饰方法为抗MPXV药物开发提供了新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0a5/12274552/eb07d65c6a1e/42003_2025_8494_Fig1_HTML.jpg

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