淘选
CD19
噬菌体展示
计算生物学
单克隆抗体
生物信息学
表位
肽库
分子生物学
生物
抗原
表位定位
平移(音频)
抗体
流式细胞术
遗传学
基因
肽序列
古生物学
缩放
镜头(地质)
作者
Mahmoud Ganji,Pooria Safarzadeh Kozani,Fatemeh Rahbarizadeh
标识
DOI:10.1186/s12967-023-04524-6
摘要
Abstract Background Monoclonal antibody (mAb)-based immunotherapies have achieved promising outcomes in the treatment of immunological and oncological indications. CD19 is considered one of the most qualified antigens in the treatment of B-cell neoplasms. VHHs (nanobodies) are known for their physicochemical advantages over conventional mAbs rendering them suitable therapeutics and diagnostic tools. Herein, we aimed to isolate CD19-specific VHHs from a novel immune library using phage display. Methods An immune VHH gene library was constructed. Using phage display and after five biopanning rounds, two monoclonal CD19-specific VHHs were isolated. The selected VHHs were expressed, purified, and characterized in terms of their affinity, specificity, sensitivity, and ability to target CD19-positive cell lines. Moreover, in silico analyses were employed for further characterization. Results A VHH library was developed, and because the outputs of the 4 th biopanning round exhibited the most favorable characteristics, a panel of random VHHs was selected from them. Ultimately, two of the most favorable VHHs were selected and DNA sequenced (designated as GR37 and GR41). Precise experiments indicated that GR37 and GR41 exhibited considerable specificity, sensitivity, and affinity (1.15 × 10 7 M −1 and 2.08 × 10 7 M −1 , respectively) to CD19. Flow cytometric analyses revealed that GR37 and GR41 could bind CD19 on the surface of cell lines expressing the antigen. Moreover, in silico experiments predicted that both VHHs target epitopes that are distinct from that targeted by the CD19-specific single-chain variable fragment (scFv) FMC63. Conclusion The selected VHHs can be used as potential targeting tools for the development of CD19-based immunotherapeutics.
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